100 Technology Research Topics for Your Next Project

Technology Research Topics

Technology research is the systematic study of emerging and existing technologies to solve problems or improve processes. This article covers different branches of technology research and all the latest developments and trends.

You’ll find comprehensive lists for cybersecurity, blockchain, artificial intelligence, and more. These technology research topics are designed to help you choose a relevant and impactful topic for your research paper. Whether you’re interested in 5G security loopholes, machine learning predictions, or ethical hacking, this guide has you covered.

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Happy researching!

Branches of Technology Research Paper Topics

The pace of modern technological advancement is unprecedented, with some remarkable statistics being reported:

  • E-commerce sales reached $5.29 trillion in 2024—a boost from $4.98 trillion in 2021.
  • Telemedicine usage surged by 700% during the COVID-19 pandemic, transforming healthcare delivery.
  • Renewable energy sources accounted for 29% of global electricity in 2022.

We chose the following sectors to focus on since they all showed a significant increase in their respective technologies:

Sector Technological Innovations
🌐 Government E-governance, digital IDs, digital voting
💰 Finance Cryptocurrencies, mobile banking, robo-advising, contactless payments
🏫 Education E-learning platforms, digital textbooks, educational games, virtual classrooms
📡 Communication Social media, video conferencing, instant messaging, email
🏥 Healthcare Electronic medical records, telemedicine, advanced imaging, robotic surgery
🚜 Agriculture Precision farming, automated machinery, drones, genetic engineering
🛒 Retail E-commerce, mobile payments, virtual fitting rooms, personalized shopping experiences
🌍 Environment Climate modeling, conservation efforts, renewable energy, pollution control
🚗 Transportation Self-driving cars, high-speed trains, electric planes, bike-sharing systems
🎬 Entertainment Streaming services, virtual reality gaming, music streaming, smart TVs
🏭 Manufacturing 3D printing, industrial robots, smart factories, IoT-enabled machinery
🏠 Smart Homes Home automation, smart appliances, security systems, energy management
🔒 Cybersecurity Threat detection, encryption technologies, AI-driven security solutions, zero trust models
🔧 Construction Building information modeling, smart construction materials, drones, 3D-printed buildings

How to Choose Technology Research Topics?

With these sectors in mind, the next step is to understand how to choose the right technology research topic.

How to Choose Technology Research Topics

  • Your Interests. Start by thinking about what areas of technology get you most excited. If you’re into cybersecurity, focus on new threat detection or encryption methods. This will keep you motivated throughout the research.
  • Current trends. Research the latest trends and developments using academic journals, industry reports, and technology news websites. For example, AI in healthcare is exploding with innovations like predictive diagnostics and personalized treatments.
  • Scope. Make sure your topic isn’t too broad or too narrow. “AI in Healthcare” is broad, but “AI for Predicting Patient Readmissions in Urban Hospitals” is specific, manageable, and can be studied in depth.
  • Relevance and Impact. Choose a topic relevant to current technological challenges. For example, researching “Blockchain for Secure Voting Systems” can address real-world election security issues.
  • Research Question. Formulate a concise research question: "How can machine learning be used to diagnose Alzheimer’s disease earlier?” This will guide your research.
  • Talk to Experts and Peers. Discuss your ideas with professors, industry experts, and peers. Their feedback will help refine your topic and might suggest a subtopic you hadn’t thought of.
  • Proposal. Draft a research proposal outlining your objectives, methodology, and expected outcomes. This will keep you focused and organized and provide a clear roadmap for your project.

If you need guidance on organizing your work, check out how to structure a table of contents in research .

By following these steps, you can select a technology research topic that is both interesting and feasible, setting the foundation for a successful research project. ​

And for inspiration, here is a list of specific technology research topics to help you get started:

topic for it research paper

Cybersecurity Technology Research Topics

Cybersecurity technology research involves protecting systems, networks, and data from cyber-attacks:

  • How Well Does Zero Trust Work in the Cloud? Approach this topic by showing how Zero Trust models reshape cloud security, with Google’s BeyondCorp as an example.
  • Can Machine Learning Predict Cyber Threats? Analyze how tools like Google's DeepMind foresee cyber threats, focusing on their accuracy.
  • What Are the Security Holes in 5G? Learn about the leading security challenges of 5G and how they’re being addressed, guided by insights from Nokia's Threat Intelligence Report.
  • How do Data Privacy Laws Vary Across Countries? This topic can be done by comparing global data privacy laws, including GDPR and Brazil’s LGPD, and how they’re applied in real life.
  • How Does AI Technology Improve Phishing Detection? See how AI systems (e.g., Google’s SAIF) improve phishing detection by looking at their methods and results.
  • How Does Blockchain Technology Enhance Cybersecurity? Explore how blockchain is used in cybersecurity, especially finance, with examples like JPMorgan’s Quorum.
  • What Are the Cybersecurity Risks of Remote Work? This topic can be explored by checking out the cybersecurity measures for remote work and the lessons from recent security incidents (think of the Zoom breach ).
  • How Reliable are Biometric Authentication Systems? Compare systems such as Apple’s Face ID and Microsoft’s Windows Hello to help you discuss their reliability and areas for improvement.
  • What’s the Role of Ethical Hacking in Proactive Cyber Defense? Look into how initiatives like Hack the Pentagon use ethical hacking to improve cybersecurity.
  • How Effective is Cybersecurity Technology in Securing the Organization? Research gamified cybersecurity training programs and their impact on employee engagement and knowledge retention.

Blockchain Technology Research Paper Topics

These topics will help you get a broad understanding of blockchain’s applications:

  • How Can Blockchain Make Supply Chain Transparent? See how giants like IBM and Walmart use blockchain to track their products from start to finish.
  • What Are the Security Benefits of Blockchain in Payments? Approach this topic by exploring how blockchain makes transactions more secure, focusing on JPMorgan's Quorum cutting down on fraud.
  • What is the Role of Blockchain Technology in Healthcare Data? Discover how blockchain secures patient data and makes it more accessible, with examples like Medicalchain.
  • How Good Is Blockchain at Enhancing Cybersecurity? Learn how blockchain’s decentralized design helps prevent cyber threats by locking down data storage.
  • What Is the Role of Blockchain Technology in DeFi? You can tackle this topic by checking out how Ethereum uses blockchain to handle transactions without traditional financial intermediaries.
  • How Can Blockchain Support Digital ID Verification? Find out how projects like uPort use blockchain to verify identities and stop identity theft.
  • What is the Environmental Impact of Blockchain? Look at the environmental impact of blockchain, especially in mining, and explore greener solutions like proof-of-stake.
  • How Is Blockchain Technology Used in Intellectual Property Protection? Dive into this topic by researching how platforms like IPwe use blockchain to lock down IP rights and prevent infringement.
  • What Are the Challenges of Implementing Blockchain in Government? See how blockchain is used in government for secure voting and public records.
  • Can Blockchain Technology Change Real Estate? Learn how platforms like Propy use blockchain to make real estate more transparent and fraud-free.

Artificial Intelligence Technology Topics

These topics cover various aspects of AI, from healthcare and ethics to automotive innovations and personalized learning:

  • How Can AI Help with Healthcare Diagnostics? This topic can be addressed by studying how AI speeds up and improves disease diagnosis like cancer through medical image analysis.
  • What Are the Ethics of AI in Decision Making? Check out the ethical challenges AI introduces in fields like finance and healthcare, focusing on potential biases and the need for ethical guidelines.
  • How Is AI Technology Changing the Automotive Industry? Investigate how AI is advancing the development of self-driving cars, making them safer and more efficient.
  • What Are the Applications of AI in Personalized Learning? Consider this topic through the lens of how AI customizes learning experiences with adaptive learning systems to meet student needs.
  • How Can AI Technology Improve Cybersecurity? Discover how AI detects and prevents cyber threats by identifying anomalies and responding to breaches.
  • What Is the Impact of AI on Job Markets? Find out how AI is changing the job market, including job displacement and creating new opportunities.
  • How Is AI Used in Natural Language Processing? Explore this topic by looking into the latest advancements in AI for NLP, including chatbots, virtual assistants, and translation tools.
  • What Are the Environmental Impacts of AI Technologies? Examine AI's environmental footprint, especially its energy consumption, and explore efforts to make AI more sustainable.
  • How Can AI Enhance Mental Health Treatment? See how AI is used in mental health care, with chatbots for therapy and mental health data analysis, and consider its effectiveness and limitations.
  • What Are the Challenges of Implementing AI in Healthcare? Look into the hurdles to integrating AI into healthcare: data privacy, regulatory issues, and the need for clinical validation.

E-learning Technology Research Topics

These topics explore how technology is enhancing learning experiences, improving accessibility, and addressing security issues:

  • How Does AI Technology Personalize E-learning? This topic can be approached by analyzing how AI learns from student data and provides custom content and instant feedback to boost engagement and grades.
  • What Are the Benefits and Drawbacks of Gamification in E-learning? Find out how adding game elements like points and leaderboards makes learning more fun while considering the potential downsides of over-rewarding.
  • How do Virtual Classrooms Compare to Traditional Classrooms? Compare virtual and in-person classrooms by student performance, engagement levels, and satisfaction through surveys and studies.
  • What Role Do Mobile Learning Apps Play in Modern Education? Examine this topic by focusing on how mobile apps increase accessibility and improve learning outcomes by making education more convenient.
  • How Can E-learning be More Accessible for Students with Disabilities? Research ways to make e-learning platforms more accessible for students with disabilities and test the effectiveness of these features.
  • What Are the Effects of E-learning on Student Collaboration? Analyze how tools like discussion forums and video conferencing impact collaboration and social interaction among students.
  • How Can Data Analytics Improve E-learning? Investigate how e-learning platforms use data analytics to track progress, identify learning patterns, and provide personalized tips.
  • What Are the Best Practices for Designing Engaging E-learning Content? Explore strategies like using multimedia, interactive quizzes, and user-friendly design to create engaging e-learning content.
  • How Does E-learning Support Lifelong Learning and Professional Development? Examine how e-learning supports ongoing education and career growth through user stories and success examples.
  • What Are the Security and Privacy Concerns in E-learning Platforms? Look into common security and privacy issues like data breaches and find best practices to keep student data safe.

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Biometrics Technology Topics

These topics provide insights into the many dimensions of biometric technology, such as its role in surveillance, healthcare, and data management:

  • How Good Are Fingerprint Recognition Systems at Enhancing Security? Look into how reliable fingerprint recognition is and compare it to old-school methods like passwords.
  • What Are the Privacy Issues with Facial Recognition Technology? Explore the ethical and privacy concerns around facial recognition and examine cases of misuse and potential regulations.
  • How Does Iris Recognition Compare to Other Biometrics? Compare iris recognition to fingerprint and facial recognition in terms of accuracy, speed, security, and applications.
  • Can Voice Recognition Technology Help People with Disabilities? Find out how voice recognition tech can help people with disabilities and look at how well it works.
  • What Are the Implications of Biometric Authentication in Smartphones? Check out the security perks and risks of smartphone fingerprint and facial recognition by analyzing user acceptance, data security, and vulnerabilities.
  • How Can Biometrics Be Added to Multi-Factor Authentication? See how integrating biometrics into multi-factor authentication, like combining fingerprint scans with passwords, makes systems more secure.
  • What Are the Challenges of Biometric Technology in Public Spaces? Investigate the technical, ethical, and privacy issues of using biometric systems in public places, considering real-world examples like airport security.
  • How Reliable Is Gait Recognition for Security Purposes? Look at how effective gait recognition is for security and where it's being used, including surveillance and criminal investigations.
  • What Are the Applications of Biometric Technology in Healthcare? Explore how biometrics are used in healthcare for patient ID and securing medical records and consider privacy and data security.
  • How Does Biometric Data Storage and Management Affect Security? Research how biometric data is stored and managed by examining methods like encryption and decentralized storage.

3D Printing Technology Research Paper Topics

These topics cover a wide range of applications and innovations in 3D printing technology:

  • How Is 3D Printing Technology Revolutionizing Healthcare? Research this topic by analyzing how 3D printing is used to create custom prosthetics, implants, and even organs to improve patient outcomes and treatment options.
  • What Are the Environmental Impacts of 3D Printing Technology? Investigate material usage, waste reduction, and energy consumption compared to traditional manufacturing methods.
  • Can 3D Printing Technology Transform the Construction Industry? See how 3D printing is being used to build houses and infrastructure, with real-world examples like 3D-printed homes and bridges.
  • How Is 3D Printing Technology Advancing Aerospace? Discover how 3D printing creates lightweight, complex parts for planes and spacecraft to make it more efficient and cost-effective.
  • What Are the Ethical Implications of 3D Printing Technology in Manufacturing? Explore ethical issues like intellectual property rights, fake products, and the potential for harmful objects.
  • How Can 3D Printing Technology Help Education and Research? Find out how 3D printing helps in schools and research by providing hands-on learning and cool projects like biology models or engineering prototypes.
  • What Are the Advancements in 3D Printing Materials? Explore the development of new materials for 3D printing, such as biocompatible polymers, metals, and ceramics.
  • How Is 3D Printing Technology Used in the Fashion Industry? Investigate the impact of 3D printing on fashion, from custom clothing to accessories and sustainable fashion solutions.
  • What Are the Challenges of Scaling Up 3D Printing for Mass Production? Understand the difficulties of using 3D printing for mass production, including speed and cost issues, and discuss possible solutions.
  • How Is 3D Printing Technology Used in the Automotive Industry? Explore the applications of 3D printing in automotive manufacturing, such as prototyping, custom parts, and lightweight components.

Interesting Technology Topics about Gaming

These topics explore various aspects of gaming technology, from virtual reality and AI to eSports and game design:

  • How Is Artificial Intelligence Technology Helping with Video Game Development? Find out how AI makes NPCs smarter, generates new content on the fly, and personalizes gaming experiences.
  • What Are the Ethical Implications of Loot Boxes and Microtransactions? Look into the ethics of loot boxes and microtransactions, including the risks of gambling addiction.
  • How Is VR Technology Changing the Gaming Landscape? Check out how VR changes gaming by offering more immersion, changing gameplay mechanics, and player interaction.
  • What Are the Pros and Cons of Cloud Gaming Technology? Research this topic by looking into cloud gaming services like Google Stadia and NVIDIA GeForce Now and how they affect accessibility and performance.
  • How Do Graphics and Physics Engines Make Games More Realistic? See how advanced graphics and physics engines create realistic game worlds, with examples of games that push the boundaries of visuals and physics.
  • What Is the Role of eSports in Modern Gaming? Investigate the rise of eSports, its impact on the gaming industry, professional gaming, and the growing spectator and economic opportunities.
  • How Can Augmented Reality Technology Be Used in Gaming? See how AR is used in games like Pokémon Go and AR-enhanced board games and explore the future of AR gaming.
  • What Are the Psychological Effects of Video Games on Players? Study the psychological effects of gaming, including improved cognitive skills and addiction and aggression, backed by research and case studies.
  • How Do Multiplayer Online Games Promote Social Interaction? Look into how multiplayer games build communities, teamwork, virtual friendships, and the role of communication tools in these interactions.
  • What Are the Security Challenges in Online Gaming? Research the security problems in online gaming, including hacking and cheating, and how developers protect players and fair play.

Medical Technology Research Questions

These research questions delve into the impact of cutting-edge medical technologies on diagnostics, treatment, and patient engagement:

  • How Can AI Technology Improve Diagnostic Accuracy in Medical Imaging? Look into how AI enhances the accuracy of MRI, CT scans, and X-rays, boosting diagnosis and identifying potential limitations.
  • What Are the Ethical Implications of Genetic Editing Technologies like CRISPR? Explore the ethical concerns around CRISPR and other genetic editing tools, discussing potential uses, risks, and regulatory challenges.
  • How Effective Are Wearable Health Devices in Managing Chronic Conditions? Check out how wearables like smartwatches help manage chronic diseases such as diabetes and hypertension.
  • What Is the Impact of Telemedicine on Patient Care? Study how telemedicine affects accessibility, care quality, and patient satisfaction, and how it’s integrated into traditional healthcare systems.
  • How Can Robotics Enhance Surgical Procedures? Analyze the precision and outcomes of surgeries performed with robotic systems using case studies.
  • What Are the Benefits and Challenges of Electronic Health Records? Investigate how EHRs are implemented in healthcare and assess their impact on patient care, data management, and efficiency.
  • How Can 3D Printing Technology Be Used in Personalized Medicine? Explore how 3D printing creates customized implants, prosthetics, and medications and its potential to revolutionize personalized healthcare.
  • What Are the Security and Privacy Concerns in Health Information Technology? Study the challenges of patient data in digital health and how to enhance cybersecurity and confidentiality.
  • How Are Mobile Health Apps Changing Patient Engagement? Research this subject by examining how mobile health apps engage patients and self-management and how effectively they improve health outcomes.
  • What Is the Potential of Virtual Reality in Medical Training and Therapy? Investigate the use of VR for medical education and patient therapy, assessing its effectiveness in treating conditions like PTSD and phobias.

Computer Science Technology Topics to Write About

These research topics highlight the key areas of interest within the field, offering a starting point for exploring innovative solutions and emerging trends:

  • How Is Quantum Computing Technology Transforming Data Processing? See how quantum computing is revolutionizing data processing, making things like cryptography way faster than before.
  • What Are the Ethical Implications of Artificial Intelligence? Dive into the ethical concerns of AI, like bias, job loss, and privacy issues, and why we need solid ethical guidelines.
  • How Can Machine Learning Technology Improve Predictive Analytics? Look at how machine learning is making predictive analytics better in areas like finance and healthcare.
  • What Are the Security Challenges in Internet of Things Devices? Check out the security issues with IoT devices, like smart home hacks and network vulnerabilities.
  • How Are Blockchain Technologies Revolutionizing Data Security? Explore how blockchain ensures secure financial transactions in Bitcoin, tracks supply chains for authenticity, and keeps patient records safe in healthcare.
  • What Is the Impact of Edge Computing Technology on Data Processing? See how edge computing reduces latency in smart cities by processing data locally and speeding up response times in autonomous vehicles.
  • How Can Augmented Reality and Virtual Reality Transform Education? Find out how AR is used in classrooms to create interactive history lessons and how VR trains medical students with simulated surgeries.
  • What Are the Advancements in Natural Language Processing? Look into the latest in NLP, like chatbots that provide customer service on websites, virtual assistants like Alexa, and real-time translation tools.
  • How Does Cybersecurity Technology Evolve with Emerging Threats? Discover the latest threats like ransomware and phishing attacks and new defense strategies.
  • What Are the Benefits and Challenges of Cloud Computing Technology? Explore the pros and cons of cloud computing for businesses, including cost savings and scalability in Netflix's streaming service.

The technology research topics we’ve covered represent the forefront of innovation and industry transformation. Understanding areas like AI personalization, ethical issues in facial recognition, the impact of 3D printing in healthcare, and advances in cybersecurity helps us grasp the future of technology and its societal implications.

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  • Global ecommerce sales. (n.d.). Shopify. https://www.shopify.com/ca/blog/global-ecommerce-sales
  • Telemedicine usage surge during COVID-19 pandemic. (2022). National Center for Biotechnology Information. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058875/
  • Electricity market report 2023. (2023). International Energy Agency. https://iea.blob.core.windows.net/assets/255e9cba-da84-4681-8c1f-458ca1a3d9ca/ElectricityMarketReport2023.pdf

topic for it research paper

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Top 400 Information Technology Research Topics – Full Guide!

The field of IT is progressive and ever-changing due to the rapid development of hardware, software, and networking technologies. The demand for innovative research in IT has also continued to rise as businesses and organizations embrace digital systems and data-driven solutions. 

Understanding the salient areas of study in IT will help professionals keep up with changes that arise and enable organizations to leverage emerging technologies effectively. 

Cybersecurity, artificial intelligence, cloud computing , and big data analytics have emerged through IT research. These fundamental factors shape the modern technology landscape, giving rise to immense possibilities for boosting productivity, raising efficiency, and improving competitiveness across sectors. 

However, companies wanting to navigate the complexities of today’s digital age and exploit new technological advances must examine some of the latest IT research topics.

Understanding Information Technology Research

Table of Contents

In the world of technology, research is a compass that helps us navigate its convoluted evolutions. For instance, Information Technology (IT) research has been conducted in computer science, software engineering, data analytics, and cybersecurity.

IT research involves systematic inquiry to advance knowledge, problem-solving, and innovation. This includes conducting rigorous experiments and analyzing results to unveil new theories or approaches that improve technologies or bring breakthroughs.

Therefore, interdisciplinarity is at the core of IT research, with collaboration cutting across various disciplines. Whether using AI to reinforce cyber security or big data analytics in healthcare, collaboration leads to solutions to complex problems.

This is because IT research is changing rapidly due to technological advances. Thus, researchers need to be up-to-date to make meaningful contributions.

Ethics are involved so that technology can be responsibly deployed. The researchers grapple with privacy, security, bias, and equity issues to ensure technology benefits society.

As a result of this publication and conferences, which enable dissemination of findings, leading to further innovations, collaboration has supported progress, hence speeding it up.

Understanding IT research is vital for leveraging technology to address societal challenges and foster positive change.

Recommended Readings: “ Top 109+ Media Bias Research Topics | Full Guide! “.

Picking the Right Topic to Research: The Key to Finding New Things 

In the always-changing world of information technology, choosing the proper topic to research is like starting a smart path. It’s a big decision that sets where your hard work will go and how much your findings could mean.

Fitting with Industry Moves and Issues

Finding a research topic that fits current industry moves and big issues is important. By staying informed on the latest happenings and problems in the technology field, you can ensure your research stays useful and helps solve real-world troubles.

Growing Fresh Ideas and Practical Uses

Choosing a research topic that generates fresh ideas and practical applications is crucial. Your findings should not just add to school talks but also lead to real solutions that can be used in real situations, pushing technology forward and making work smoother.

Sparking Mind Curiosity and Excitement

Selecting a research topic that sparks your curiosity and excitement is essential. When you dive into an area that truly fascinates you, the research journey becomes more engaging, and your drive to uncover big insights is stronger.

Finding Gaps and Unexplored Areas

Finding gaps in existing knowledge or unexplored areas in the technology landscape can lead to big discoveries. Entering uncharted spaces can uncover fresh insights and meaningfully advance the field.

Considering Potential Wide Effect and Growth

Considering your research topic’s potential wide effect and growth is crucial. Will your findings have far-reaching effects across industries? Can your solutions grow and shift to address changing challenges? Evaluating these things can help you prioritize research areas with the greatest potential for big impact.

By carefully choosing the right research topic, you can open the door to discoveries, push technology forward, and contribute to the constant evolution of the technology information landscape.

Top 400 Information Technology Research Topics

The list of the top 400 information technology research topics is organized into different categories. Let’s examine it. 

Artificial Intelligence (AI) and Machine Learning (ML)

  • Easy AI: Explaining and Using
  • Group Learning: Getting Better Together
  • AI in Health: Diagnosing and Helping
  • Robots Learning on Their Own
  • Being Fair with Computers
  • Talking to Computers in Normal Language
  • AI Fighting Bad Guys on the Internet
  • AI Driving Cars: How Safe Is It?
  • Sharing What We’ve Learned with Other Machines
  • AI in Schools: Computers Learning About You

Cybersecurity and Encryption

  • Trusting Computers: How to Stay Safe
  • Keeping Secrets Safe with Fancy Math
  • Secret Codes Computers Use: Safe or Not?
  • Spy Games: Watching Out for Bad Stuff
  • Keeping Secrets, Even from Friends
  • Your Body as Your Password: Is It Safe?
  • Fighting Against Computer Ransomers
  • Keeping Your Secrets Secret, Even When Sharing
  • Making Sure Your Smart Stuff Isn’t Spying on You
  • Insuring Against Computer Bad Luck

Data Science and Big Data

  • Sharing Secrets: How to Be Safe
  • Watching the World in Real-Time
  • Big Data: Big Computers Handling Big Jobs
  • Making Data Pretty to Look At
  • Cleaning Up Messy Data
  • Predicting the Future with Numbers
  • Finding Patterns in Connected Dots
  • Keeping Your Secrets Safe in Big Data
  • Sharing Our Secrets Without Telling Anyone
  • Helping the Planet with Numbers

Cloud Computing

  • Computers Without a Home: Where Do They Live?
  • Keeping Computers Close to Home
  • Moving Our Stuff to New Homes
  • Juggling Many Clouds at Once
  • Making Computers That Live in the Cloud
  • Keeping Clouds Safe from Bad Guys
  • Keeping Clouds Safe from Sneaky Spies
  • Making Sure Clouds Do What They’re Supposed To
  • Computers Need Energy Too!
  • Making the Internet of Things Even Smarter

Internet of Things (IoT)

  • Smart Stuff Everywhere: How Does It Work?
  • Watching Out for Bad Stuff in Smart Things
  • Smart Stuff: Is It Safe?
  • Taking Care of Smart Toys
  • Making Smart Things That Don’t Need Batteries
  • Making Smart Factories Even Smarter
  • Smart Cities: Making Cities Better Places to Live
  • Your Clothes Can Be Smart, Too!
  • Helping Farmers with Smart Farming
  • Keeping Secrets Safe in Smart Stuff

Human-Computer Interaction (HCI)

  • Magic Glasses: How Do They Work?
  • Making Computers Easy to Use
  • Making Computers for Everyone
  • Talking to Computers with Your Hands
  • Making Sure Computers Are Nice to People
  • Talking to Computers with Your Voice
  • Playing with Computers, You Can Touch
  • Trusting Computers to Drive for Us
  • Computers That Understand Different People
  • Making Computers That Read Our Minds

Software Engineering

  • Making Computers Work Together Smoothly
  • Building Computers from Tiny Pieces
  • Playing Games to Make Computers Better
  • Making Sure Computers Work Right
  • Making Old Computers New Again
  • Making Computers Like to Exercise
  • Making Computers Easier to Understand
  • Building Computers with Blueprints
  • Making Sure Computers Don’t Get Sick
  • Sharing Computer Secrets with Everyone

Mobile Computing

  • Keeping Phones Safe from Bad Guys
  • Making Apps for Every Kind of Phone
  • Keeping Phones Safe in the Cloud
  • Finding Your Way with Your Phone
  • Paying with Your Phone: Safe or Not?
  • Checking Your Health with Your Phone
  • Seeing the World Through Your Phone
  • Wearing Your Phone on Your Wrist
  • Learning on the Go with Your Phone
  • Making Phones Even Smarter with Clouds

Networking and Communications

  • Making Sure Computers Can Talk to Each Other
  • Making Computers Work Together Without Wires
  • Making the Internet Faster for Everyone
  • Getting More Internet Addresses for More Computers
  • Cutting the Internet into Pieces
  • Making the Internet Even More Invisible
  • Talking to Computers with Light
  • Making Sure Tiny Computers Talk to Each Other
  • Sending Messages Even When It’s Hard
  • Making the Radio Smarter for Computers

Bioinformatics and Computational Biology

  • Reading Your DNA with Computers
  • Making Medicine Just for You
  • Meeting the Microscopic World with Computers
  • Building Computer Models of Living Things
  • Finding New Medicine with Computers
  • Building Computer Models of Tiny Machines
  • Making Family Trees for Living Things
  • Counting Germs with Computers
  • Making Big Lists of Living Things
  • Making Computers Think Like Brains

Quantum Computing

  • Making Computers Better at Some Math Problems
  • Keeping Computers Safe from Small Mistakes
  • Making Computers Even Harder to Spy On
  • Making Computers Learn Faster with Quantum Tricks
  • Making Fake Worlds for Computers to Explore
  • Building Computers from Super-Cold Stuff
  • Making Computers Cold to Think Better
  • Making Computers Think Like Chemists
  • Making the Internet Even Safer with Computers
  • Showing Off What Computers Can Do Best

Green Computing

  • Saving Energy with Computers
  • Using Wind and Sun to Power Computers
  • Making Phones Last Longer Without Plugging In
  • Making Computers Kinder to the Planet
  • Recycling Old Computers to Save the Earth
  • Computers That Care About Their Trash
  • Saving Energy in Big Rooms Full of Computers
  • Making Computers Save Energy and Work Faster
  • Counting the Trash from Computers
  • Making Computers Kinder to the Planet’s Air

Information Systems

  • Making Computers Work Together in Big Companies
  • Making Computers Remember Their Friends
  • Making Computers Share What They Know
  • Making Computers Smart About Money
  • Making Computers Send Presents to Their Friends
  • Helping Computers Make Big Decisions
  • Making Government Computers Talk to Each Other
  • Making Computers Count Likes and Shares
  • Assisting computers to Find What You Asked For
  • Assisting companies to Keep Their Friends Happy

Semantic Web and Linked Data

  • Making Computers Understand Each Other Better
  • Making Computers Talk About Themselves
  • Making the Internet More Friendly for Computers
  • Helping Computers Find What They Need
  • Making Computers Smarter by Talking to Each Other
  • Making Computers Friends with Different Languages
  • Making Computers Understand Different Ideas
  • Making Computers Think Like Us
  • Making Computers Smarter About Old Stuff
  • Making Computers Share Their Secrets Safely

Social Computing and Online Communities

  • Making Friends on the Internet
  • Getting Good Suggestions from the Internet
  • Making Computers Work Together to Solve Problems
  • Learning from Your Friends on the Internet
  • Stopping Fake News on the Internet
  • Knowing How People Feel on the Internet
  • Helping Each Other on the Internet During Emergencies
  • Making Sure Computers Are Nice to Everyone
  • Keeping Secrets on the Internet
  • Making the Internet a Better Place for Everyone

Game Development and Virtual Worlds

  • Making Games That Play Fair
  • Letting Computers Make Their Fun
  • Making Fake Worlds for Fun
  • Learning with Games
  • Making the Rules for Fun
  • Watching How People Play Together
  • Seeing Things That Aren’t There
  • Letting Lots of People Play Together
  • Making the Engines for Fun
  • Playing Games to Learn

E-Learning and Educational Technology

  • Making Learning Easy for Everyone
  • Taking Classes on the Internet
  • Learning from Your Computer’s Teacher
  • Learning from What Computers Know
  • Learning Anywhere with Your Computer
  • Making Learning Fun with Games
  • Learning Without a Real Lab
  • Learning with Free Stuff on the Internet
  • Mixing School with Your Computer
  • Making School More Fun with Your Computer

Digital Forensics and Incident Response

  • Solving Computer Mysteries
  • Looking for Clues in Computers
  • Finding Bad Guys on the Internet
  • Looking for Clues on Phones and Tablets
  • Hiding Clues on Computers
  • Helping When Computers Get Sick
  • Solving Mysteries While the Computer Is On
  • Finding Clues on Your Smart Watch
  • Finding Tools for Finding Clues
  • Following the Rules When Solving Mysteries

Wearable Technology and Smart Devices

  • Keeping Healthy with Smart Watches
  • Making Clothes That Talk to Computers
  • Listening to the Earth with Your Shirt
  • Wearing Glasses That Show Cool Stuff
  • Making Your Home Smarter with Your Phone
  • Using Your Body to Unlock Your Phone
  • Helping People Move with Special Shoes
  • Assisting people to See with Special Glasses
  • Making Your Clothes Do More Than Keep You Warm
  • Keeping Secrets Safe on Your Smart Stuff

Robotics and Automation

  • Making Friends with Robots
  • Letting Robots Do the Hard Work
  • Robots That Work Together Like Ants
  • Learning Tricks from People
  • Robots That Feel Like Jelly
  • Helping Doctors and Nurses with Robots
  • Robots That Help Farmers Grow Food
  • Making Cars Without People
  • Teaching Robots to Recognize Things
  • Robots That Learn from Animals

Health Informatics

  • Computers That Help Doctors Keep Track of Patients
  • Sharing Secrets About Your Health with Other Computers
  • Seeing the Doctor on Your Computer
  • Keeping Track of Your Health with Your Phone
  • Making Medicine Better with Computers
  • Keeping Your Health Secrets Safe with Computers
  • Learning About Health with Computers
  • Keeping Health Secrets Safe on the Internet
  • Watching Out for Germs with Computers
  • Making Sure the Doctor’s Computer Plays Nice

Geographic Information Systems (GIS)

  • Watching the World Change with Computers
  • Making Maps on the Internet
  • Seeing the World from Very Far Away
  • Finding Hidden Patterns with Computers
  • Making Cities Better with Computers
  • Keeping Track of the Earth with Computers
  • Keeping Track of Wild Animals with Computers
  • Making Maps with Everyone’s Help
  • Seeing the World in 3D
  • Finding Things on the Map with Your Phone

Knowledge Management

  • Helping Computers Remember Things
  • Making Computers Talk About What They Know
  • Finding Secrets in Big Piles of Data
  • Helping Companies Remember What They Know
  • Sharing Secrets with Computers at Work
  • Making Computers Learn from Each Other
  • Making Computers Talk About Their Friends
  • Making Companies Remember Their Secrets
  • Keeping Track of What Companies Know

Computational Linguistics and Natural Language Processing (NLP)

  • Finding Out How People Feel on the Internet
  • Finding Names and Places in Stories
  • Making Computers Talk to Each Other
  • Making Computers Answer Questions
  • Making Summaries for Busy People
  • Making Computers Understand Stories
  • Making Computers Understand Pictures and Sounds
  • Making Computers Learn New Words
  • Making Computers Remember What They Read
  • Making Sure Computers Aren’t Mean to Anyone

Information Retrieval and Search Engines

  • Finding Stuff on the Internet
  • Getting Suggestions from the Internet
  • Finding Stuff at Work
  • Helping Computers Find Stuff Faster
  • Making Computers Understand What You Want
  • Finding Stuff on Your Phone
  • Finding Stuff When You’re Moving
  • Finding Stuff Near Where You Are
  • Making Sure Computers Look Everywhere for What You Want

Computer Vision

  • Finding Stuff in Pictures
  • Cutting Up Pictures
  • Watching Videos for Fun
  • Learning from Lots of Pictures
  • Making Pictures with Computers
  • Finding Stuff That Looks Like Other Stuff
  • Finding Secrets in Medical Pictures
  • Finding Out If Pictures Are Real
  • Looking at People’s Faces to Know Them

Quantum Information Science

  • Making Computers Learn Faster with Tricks

Social Robotics

  • Robots That Help People Who Have Trouble Talking
  • Robots That Teach People New Things
  • Making Robots Work with People
  • Helping Kids Learn with Robots
  • Making Sure Robots Aren’t Mean to Anyone
  • Making Robots Understand How People Feel
  • Making Friends with Robots from Different Places
  • Making Sure Robots Respect Different Cultures
  • Helping Robots Learn How to Be Nice

Cloud Robotics

  • Making Robots Work Together from Far Away
  • Making Robots Share Their Toys
  • Making Robots Do Hard Jobs in Different Places
  • Making Robots Save Energy
  • Making Robots Play Together Nicely
  • Making Robots Practice Being Together
  • Making Sure Robots Play Fair
  • Making Robots Follow the Rules

Cyber-Physical Systems (CPS)

  • Making Robots Work Together with Other Things
  • Keeping Robots Safe from Small Mistakes
  • Keeping Factories Safe from Bad Guys
  • Making Sure Robots Respect Different People
  • Making Sure Robots Work Well with People
  • Keeping Robots Safe from Bad Guys
  • Making Sure Robots Follow the Rules

Biomedical Imaging

  • Taking Pictures of Inside You with Computers
  • Seeing Inside You with Computers
  • Cutting Up Pictures of Inside You
  • Finding Problems Inside You with Computers
  • Cutting Up Pictures and Putting Them Together
  • Counting Inside You with Pictures
  • Making Pictures to Help Doctors
  • Making Lists from Pictures Inside You
  • Making Sure Pictures of You Are Safe

Remote Sensing

  • Watching Earth from Far Away with Computers
  • Making Pictures of Earth Change
  • Taking Pictures from Very High Up
  • Watching Crops Grow with Computers
  • Watching Cities Grow with Computers
  • Watching Earth Change with Computers
  • Watching Earth from Far Away During Emergencies
  • Making Computers Work Together to See Earth
  • Putting Pictures of Earth Together
  • Making Sure Pictures of Earth Are Safe

Cloud Gaming

  • Playing Games from Far Away
  • Making Games Work Faster from Far Away
  • Keeping Games Safe from Bad Guys
  • Making Sure Everyone Can Play Together
  • Making Games Faster from Far Away
  • Watching People Play Games from Far Away
  • Making Sure Games Look Good from Far Away
  • Watching Games Get More Popular

Augmented Reality (AR)

  • Making Glasses That Show Cool Stuff
  • Making Cool Stuff for Glasses to Show
  • Watching Glasses Follow You
  • Watching Phones Show Cool Stuff
  • Making Cool Stuff to Show with Phones
  • Making Places Even Better with Phones
  • Making Factories Even Better with Glasses
  • Making Places Even Better with Glasses
  • Making Sure Glasses Don’t Scare Anyone

Virtual Reality (VR)

  • Making Glasses That Show Different Worlds
  • Making Glasses That Follow Your Hands
  • Making Therapy Fun with Glasses
  • Making Learning Fun with Glasses
  • Making Glasses That Make Jobs Safer
  • Making Glasses That Show Your Friends
  • Making Sure Glasses Are Friendly
  • Making Glasses That Make Buildings Better
  • Making Sure Glasses Aren’t Scary

Digital Twins

  • Making Computers That Copy the Real World
  • Making People Better with Computers
  • Making Flying Safer with Computers
  • Making Cars Safer with Computers
  • Making Energy Better with Computers
  • Making Buildings Better with Computers
  • Making Cities Safer with Computers
  • Making Sure Computers Copy the Real World Safely
  • Making Computers Follow the Rules

Edge Computing

  • Making Computers Work Faster Near You
  • Keeping Computers Safe Near You
  • Making Computers Work with Far-Away Computers
  • Making Computers Work Fast with You
  • Making Computers Work Together Near You
  • Making Phones Work Faster Near You
  • Making Computers Work Near You
  • Making Computers Work in Busy Places

Explainable AI (XAI)

  • Making Computers Explain What They Do
  • Making Medicine Safer with Computers
  • Making Money Safer with Computers
  • Making Computers Safe to Drive Cars
  • Making Computers Fair to Everyone
  • Making Computers Explain What They Think
  • Making Computers Easy to Understand

Blockchain and Distributed Ledger Technology (DLT)

  • Making Secret Codes Computers Use
  • Making Contracts Computers Can Understand
  • Making Computers Share Secrets Safely
  • Making Money Safe with Computers
  • Making Computers Work Together Nicely
  • Making Computers Keep Secrets Safe
  • Making Computers Work Together Fairly
  • Making Stuff Move Safely with Computers

Quantum Communication

  • Making Computers Talk to Each Other Safely
  • Making Computers Talk to Each Other from Far Away
  • Making Computers Talk to Each Other in Secret
  • Making Money Move Safely with Computers

This list covers a broad spectrum of topics within Information Technology, ranging from foundational concepts to cutting-edge research areas. Feel free to choose any topic that aligns with your interests and expertise for further exploration and study!

Emerging Trends in Information Technology Research

In the rapidly changing world of Computer Studies, keeping up with the latest trends is indispensable. Technology keeps changing, and so does research in computer studies. From awesome things like clever robots to how we can safeguard our online information, computer studies research is always discovering new ways to improve our lives. Therefore, let us delve into some of the most exciting new trends shaping computer studies’ future.

  • Smart Computers:

Right now, smart computers are a hot item. They can learn from experience, recognize patterns, and even understand language like humans do. This helps in many areas, such as healthcare or finance. So researchers are working on making smart computers smarter yet so that they can make decisions alone and be fair to everyone.

  • Fast Computing:

As more devices connect to the Internet, we need ways to process information quickly. Fast computing helps bring processing power closer to where the information comes from, making things quicker and more efficient. Thus, researchers have been figuring out how to improve fast computing, especially for analyzing real-time data.

  • Keeping Things Safe:

With all the cool tech around, keeping our information safe from bad guys is important. We must develop methods to safeguard our data and networks from cyber attackers. In addition, they have also been considering how to ensure the privacy of our personal information so that only authorized individuals can access it.

  • Fancy Computers:

The next big thing in computing is quantum computers. They can do calculations at a high speed that ordinary ones cannot. Researchers are working hard to achieve quantum computing because it could be useful in cracking codes and creating new drugs.

  • New Ways of Doing Things Together:

Blockchain is an exciting technology that allows us to collaborate without a central authority. Its use in cryptocurrencies is quite popular but it has other applications too. Blockchain can be applied for purposes such as helping us discover where products come from, proving who we are on the internet, and making contracts that cannot be changed later on.

  • Virtual Reality Adventures:

Entering a completely different world is what Virtual Reality (VR) and Augmented Reality (AR) do. The feeling of being in reality is what these two technologies create, which is not real. These researchers are working hard on making VRs and ARs better so that they can be used for learning, training, and amusement in more innovative ways.

In summary, computer studies research keeps changing with new trends such as smart computers, rapid computing, cybersecurity issues, high-end computers, collaboration platforms and immersive games or virtual reality escapades. 

By exploring these trends and developing new ideas, researchers ensure that technology keeps improving and making our lives easier and more exciting.

How can I brainstorm research topics in information technology?

Start by identifying your areas of interest and exploring recent advancements in the field. Consider consulting with mentors or peers for suggestions and feedback.

What are some ethical considerations in AI research?

Ethical considerations in AI research include fairness, transparency, accountability, and privacy. Researchers should ensure their algorithms and models do not perpetuate bias or harm individuals.

How can I stay updated on emerging trends in IT research?

Follow reputable journals, conferences, and online forums dedicated to information technology. Engage with the academic community through discussions and networking events.

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113 Great Research Paper Topics

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General Education

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One of the hardest parts of writing a research paper can be just finding a good topic to write about. Fortunately we've done the hard work for you and have compiled a list of 113 interesting research paper topics. They've been organized into ten categories and cover a wide range of subjects so you can easily find the best topic for you.

In addition to the list of good research topics, we've included advice on what makes a good research paper topic and how you can use your topic to start writing a great paper.

What Makes a Good Research Paper Topic?

Not all research paper topics are created equal, and you want to make sure you choose a great topic before you start writing. Below are the three most important factors to consider to make sure you choose the best research paper topics.

#1: It's Something You're Interested In

A paper is always easier to write if you're interested in the topic, and you'll be more motivated to do in-depth research and write a paper that really covers the entire subject. Even if a certain research paper topic is getting a lot of buzz right now or other people seem interested in writing about it, don't feel tempted to make it your topic unless you genuinely have some sort of interest in it as well.

#2: There's Enough Information to Write a Paper

Even if you come up with the absolute best research paper topic and you're so excited to write about it, you won't be able to produce a good paper if there isn't enough research about the topic. This can happen for very specific or specialized topics, as well as topics that are too new to have enough research done on them at the moment. Easy research paper topics will always be topics with enough information to write a full-length paper.

Trying to write a research paper on a topic that doesn't have much research on it is incredibly hard, so before you decide on a topic, do a bit of preliminary searching and make sure you'll have all the information you need to write your paper.

#3: It Fits Your Teacher's Guidelines

Don't get so carried away looking at lists of research paper topics that you forget any requirements or restrictions your teacher may have put on research topic ideas. If you're writing a research paper on a health-related topic, deciding to write about the impact of rap on the music scene probably won't be allowed, but there may be some sort of leeway. For example, if you're really interested in current events but your teacher wants you to write a research paper on a history topic, you may be able to choose a topic that fits both categories, like exploring the relationship between the US and North Korea. No matter what, always get your research paper topic approved by your teacher first before you begin writing.

113 Good Research Paper Topics

Below are 113 good research topics to help you get you started on your paper. We've organized them into ten categories to make it easier to find the type of research paper topics you're looking for.

Arts/Culture

  • Discuss the main differences in art from the Italian Renaissance and the Northern Renaissance .
  • Analyze the impact a famous artist had on the world.
  • How is sexism portrayed in different types of media (music, film, video games, etc.)? Has the amount/type of sexism changed over the years?
  • How has the music of slaves brought over from Africa shaped modern American music?
  • How has rap music evolved in the past decade?
  • How has the portrayal of minorities in the media changed?

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Current Events

  • What have been the impacts of China's one child policy?
  • How have the goals of feminists changed over the decades?
  • How has the Trump presidency changed international relations?
  • Analyze the history of the relationship between the United States and North Korea.
  • What factors contributed to the current decline in the rate of unemployment?
  • What have been the impacts of states which have increased their minimum wage?
  • How do US immigration laws compare to immigration laws of other countries?
  • How have the US's immigration laws changed in the past few years/decades?
  • How has the Black Lives Matter movement affected discussions and view about racism in the US?
  • What impact has the Affordable Care Act had on healthcare in the US?
  • What factors contributed to the UK deciding to leave the EU (Brexit)?
  • What factors contributed to China becoming an economic power?
  • Discuss the history of Bitcoin or other cryptocurrencies  (some of which tokenize the S&P 500 Index on the blockchain) .
  • Do students in schools that eliminate grades do better in college and their careers?
  • Do students from wealthier backgrounds score higher on standardized tests?
  • Do students who receive free meals at school get higher grades compared to when they weren't receiving a free meal?
  • Do students who attend charter schools score higher on standardized tests than students in public schools?
  • Do students learn better in same-sex classrooms?
  • How does giving each student access to an iPad or laptop affect their studies?
  • What are the benefits and drawbacks of the Montessori Method ?
  • Do children who attend preschool do better in school later on?
  • What was the impact of the No Child Left Behind act?
  • How does the US education system compare to education systems in other countries?
  • What impact does mandatory physical education classes have on students' health?
  • Which methods are most effective at reducing bullying in schools?
  • Do homeschoolers who attend college do as well as students who attended traditional schools?
  • Does offering tenure increase or decrease quality of teaching?
  • How does college debt affect future life choices of students?
  • Should graduate students be able to form unions?

body_highschoolsc

  • What are different ways to lower gun-related deaths in the US?
  • How and why have divorce rates changed over time?
  • Is affirmative action still necessary in education and/or the workplace?
  • Should physician-assisted suicide be legal?
  • How has stem cell research impacted the medical field?
  • How can human trafficking be reduced in the United States/world?
  • Should people be able to donate organs in exchange for money?
  • Which types of juvenile punishment have proven most effective at preventing future crimes?
  • Has the increase in US airport security made passengers safer?
  • Analyze the immigration policies of certain countries and how they are similar and different from one another.
  • Several states have legalized recreational marijuana. What positive and negative impacts have they experienced as a result?
  • Do tariffs increase the number of domestic jobs?
  • Which prison reforms have proven most effective?
  • Should governments be able to censor certain information on the internet?
  • Which methods/programs have been most effective at reducing teen pregnancy?
  • What are the benefits and drawbacks of the Keto diet?
  • How effective are different exercise regimes for losing weight and maintaining weight loss?
  • How do the healthcare plans of various countries differ from each other?
  • What are the most effective ways to treat depression ?
  • What are the pros and cons of genetically modified foods?
  • Which methods are most effective for improving memory?
  • What can be done to lower healthcare costs in the US?
  • What factors contributed to the current opioid crisis?
  • Analyze the history and impact of the HIV/AIDS epidemic .
  • Are low-carbohydrate or low-fat diets more effective for weight loss?
  • How much exercise should the average adult be getting each week?
  • Which methods are most effective to get parents to vaccinate their children?
  • What are the pros and cons of clean needle programs?
  • How does stress affect the body?
  • Discuss the history of the conflict between Israel and the Palestinians.
  • What were the causes and effects of the Salem Witch Trials?
  • Who was responsible for the Iran-Contra situation?
  • How has New Orleans and the government's response to natural disasters changed since Hurricane Katrina?
  • What events led to the fall of the Roman Empire?
  • What were the impacts of British rule in India ?
  • Was the atomic bombing of Hiroshima and Nagasaki necessary?
  • What were the successes and failures of the women's suffrage movement in the United States?
  • What were the causes of the Civil War?
  • How did Abraham Lincoln's assassination impact the country and reconstruction after the Civil War?
  • Which factors contributed to the colonies winning the American Revolution?
  • What caused Hitler's rise to power?
  • Discuss how a specific invention impacted history.
  • What led to Cleopatra's fall as ruler of Egypt?
  • How has Japan changed and evolved over the centuries?
  • What were the causes of the Rwandan genocide ?

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  • Why did Martin Luther decide to split with the Catholic Church?
  • Analyze the history and impact of a well-known cult (Jonestown, Manson family, etc.)
  • How did the sexual abuse scandal impact how people view the Catholic Church?
  • How has the Catholic church's power changed over the past decades/centuries?
  • What are the causes behind the rise in atheism/ agnosticism in the United States?
  • What were the influences in Siddhartha's life resulted in him becoming the Buddha?
  • How has media portrayal of Islam/Muslims changed since September 11th?

Science/Environment

  • How has the earth's climate changed in the past few decades?
  • How has the use and elimination of DDT affected bird populations in the US?
  • Analyze how the number and severity of natural disasters have increased in the past few decades.
  • Analyze deforestation rates in a certain area or globally over a period of time.
  • How have past oil spills changed regulations and cleanup methods?
  • How has the Flint water crisis changed water regulation safety?
  • What are the pros and cons of fracking?
  • What impact has the Paris Climate Agreement had so far?
  • What have NASA's biggest successes and failures been?
  • How can we improve access to clean water around the world?
  • Does ecotourism actually have a positive impact on the environment?
  • Should the US rely on nuclear energy more?
  • What can be done to save amphibian species currently at risk of extinction?
  • What impact has climate change had on coral reefs?
  • How are black holes created?
  • Are teens who spend more time on social media more likely to suffer anxiety and/or depression?
  • How will the loss of net neutrality affect internet users?
  • Analyze the history and progress of self-driving vehicles.
  • How has the use of drones changed surveillance and warfare methods?
  • Has social media made people more or less connected?
  • What progress has currently been made with artificial intelligence ?
  • Do smartphones increase or decrease workplace productivity?
  • What are the most effective ways to use technology in the classroom?
  • How is Google search affecting our intelligence?
  • When is the best age for a child to begin owning a smartphone?
  • Has frequent texting reduced teen literacy rates?

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How to Write a Great Research Paper

Even great research paper topics won't give you a great research paper if you don't hone your topic before and during the writing process. Follow these three tips to turn good research paper topics into great papers.

#1: Figure Out Your Thesis Early

Before you start writing a single word of your paper, you first need to know what your thesis will be. Your thesis is a statement that explains what you intend to prove/show in your paper. Every sentence in your research paper will relate back to your thesis, so you don't want to start writing without it!

As some examples, if you're writing a research paper on if students learn better in same-sex classrooms, your thesis might be "Research has shown that elementary-age students in same-sex classrooms score higher on standardized tests and report feeling more comfortable in the classroom."

If you're writing a paper on the causes of the Civil War, your thesis might be "While the dispute between the North and South over slavery is the most well-known cause of the Civil War, other key causes include differences in the economies of the North and South, states' rights, and territorial expansion."

#2: Back Every Statement Up With Research

Remember, this is a research paper you're writing, so you'll need to use lots of research to make your points. Every statement you give must be backed up with research, properly cited the way your teacher requested. You're allowed to include opinions of your own, but they must also be supported by the research you give.

#3: Do Your Research Before You Begin Writing

You don't want to start writing your research paper and then learn that there isn't enough research to back up the points you're making, or, even worse, that the research contradicts the points you're trying to make!

Get most of your research on your good research topics done before you begin writing. Then use the research you've collected to create a rough outline of what your paper will cover and the key points you're going to make. This will help keep your paper clear and organized, and it'll ensure you have enough research to produce a strong paper.

What's Next?

Are you also learning about dynamic equilibrium in your science class? We break this sometimes tricky concept down so it's easy to understand in our complete guide to dynamic equilibrium .

Thinking about becoming a nurse practitioner? Nurse practitioners have one of the fastest growing careers in the country, and we have all the information you need to know about what to expect from nurse practitioner school .

Want to know the fastest and easiest ways to convert between Fahrenheit and Celsius? We've got you covered! Check out our guide to the best ways to convert Celsius to Fahrenheit (or vice versa).

These recommendations are based solely on our knowledge and experience. If you purchase an item through one of our links, PrepScholar may receive a commission.

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Christine graduated from Michigan State University with degrees in Environmental Biology and Geography and received her Master's from Duke University. In high school she scored in the 99th percentile on the SAT and was named a National Merit Finalist. She has taught English and biology in several countries.

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60 Most Interesting Technology Research Topics for 2024

August 22, 2024

Scrambling to find technology research topics for the assignment that’s due sooner than you thought? Take a scroll through these 60 interesting technology essay topics in 10 different categories, including controversial technology topics, and some example research questions for each.

Social Technology Research Topics

Whether you have active profiles on every social media platform, you’ve taken a social media break, or you generally try to limit your engagement as much as possible, you probably understand how pervasive social technologies have become in today’s culture. Social technology will especially appeal to those looking for widely discussed, mainstream technology essay topics.

  • How do viewers respond to virtual influencers vs. human influencers? Is one more effective or ethical over the other?
  • Across social media platforms, when and where is mob mentality most prevalent? How do the nuances of mob mentality shift depending on the platform or topic?
  • Portable devices like cell phones, laptops, and tablets have certainly made daily life easier in some ways. But how have they made daily life more difficult?
  • How does access to social media affect developing brains? And what about mature brains?
  • Can dating apps alter how users perceive and interact with people in real life?
  • Studies have proven “doomscrolling” to negatively impact mental health—could there ever be any positive impacts?
  • How much can bots truly shape or manipulate opinions on social media? Is their influence positive or negative?
  • Social media algorithms can contribute to the spread of sensationalized or controversial stories. Should social media companies be held accountable for misinformation on their platforms?

Cryptocurrency and Blockchain Technology Research Topics

Following cryptocurrency and blockchain technology has been a rollercoaster over the last few years. Since Bitcoin’s conception in 2009, cryptocurrency has consistently showed up on many lists of controversial technology topics, and continues to undergo massive shifts in popularity as well as value.

  • Is it ethical for celebrities or influential people to promote cryptocurrencies or cryptographic assets like NFTs ?
  • What are the environmental impacts of mining cryptocurrencies? Could those impacts ever change?
  • How does cryptocurrency impact financial security and financial health?
  • Could the privacy cryptocurrency offers ever be worth the added security risks?
  • How might cryptocurrency regulations and impacts continue to evolve?
  • Created to enable cryptocurrency, blockchain has since proven useful in several other industries. What new uses could blockchain have?

Artificial Intelligence Technology Research Topics

ChatGPT , voice cloning , and deepfakes continue to be a major source of conversation (and contention). While people have discussed artificial intelligence for ages, recent advances have pushed this topic to the front of our minds. Those searching for controversial technology topics should pay close attention to this section.

  • OpenAI –the company behind ChatGPT–has shown commitment to safe, moderated AI tools that they hope will provide positive benefits to society. Sam Altman, their CEO, recently testified before a US Senate committee. He described what AI makes possible and called for more regulation in the industry. But even with companies like OpenAI displaying efforts to produce safe AI and advocating for regulations, can AI ever have a purely positive impact? Are certain pitfalls unavoidable?
  • In a similar vein, can AI ever actually be ethically or safely produced? Will there always be certain risks?
  • How might AI tools impact society across future generations?
  • Countless movies and television shows explore the idea of AI going wrong, going back all the way to 1927’s Metropolis . What has a greater impact on public perception—representations in media or industry developments? And can public perception impact industry developments and their effectiveness?
  • Is it ever okay to use voice cloning or deepfakes without the person’s knowledge or consent?

Beauty and Anti-Aging Technology

Throughout human history, people in many cultures have gone to extreme lengths to capture and maintain youth. But technology has taken this pursuit to another level. For those seeking technology essay topics that are both timely and timeless, this one’s a gold mine.

  • With augmented reality technology, companies like Perfect allow app users to virtually try on makeup, hair color, hair accessories, and hand or wrist accessories. Could virtual try-ons lead to a somewhat less wasteful beauty industry? What downsides should we consider?
  • Users of the Perfect app can also receive virtual diagnoses for skin care issues and virtually “beautify” themselves with smoothed skin, erased blemishes, whitened teeth, brightened under-eye circles, and reshaped facial structures. How could advancements in beauty and anti-aging technology affect self-perception and mental health?
  • What are the best alternatives to animal testing within the beauty and anti-aging industry?
  • Is anti-aging purely a cosmetic pursuit? Could anti-aging technology provide other benefits?
  • Could people actually find a “cure” to aging? And could a cure to aging lead to longer lifespans?
  • How might longer human lifespans affect the Earth?
  • Should social media influencers be expected to disclose when they are using augmented reality, filters, or Photoshop on their photos?

Geoengineering Technology Research Topics

An umbrella term, geoengineering refers to large-scale technologies that can alter the earth and its climate. Typically, these types of technologies aim to combat climate change. Those searching for controversial technology topics should consider looking into this one.

  • What benefits can solar geoengineering provide? Can they outweigh the severe risks?
  • Compare solar geoengineering methods like mirrors in space, stratospheric aerosol injection, marine cloud brightening, and other proposed methods. How have these methods evolved? How might they continue to evolve?
  • Which direct air capture methods are most sustainable?
  • How can technology contribute to reforestation efforts?
  • What are the best uses for biochar? And how can biochar help or harm the earth?
  • Out of all the carbon geoengineering methods that exist or have been proposed, which should we focus on the most?
  • Given the potential unintended consequences, is geoengineering ethical?

Creative and Performing Arts Technology Topics

While tensions often arise between artists and technology, they’ve also maintained a symbiotic relationship in many ways. It’s complicated. But of course, that’s what makes it interesting. Here’s another option for those searching for hot-button technology essay topics.

  • How has the relationship between art and technology evolved over time?
  • How has technology impacted the ways people create art? And how has technology impacted the ways people engage with art?
  • Technology has made creating and viewing art widely accessible. Does this increased accessibility change the value of art? And do we value physical art more than digital art?
  • Does technology complement storytelling in the performing arts? Or does technology hinder storytelling in the performing arts?
  • Which current issues in the creative or performing arts could potentially be solved with technology?
  • Should digital or AI-generated art be valued in the same way as more traditional art forms, like drawing, painting, or sculpting?

Cellular Agriculture Technology Research Topics

And another route for those drawn to controversial technology topics: cellular agriculture. You’ve probably heard about popular plant-based meat options from brands like Impossible and Beyond Meat . While products made with cellular agriculture also don’t require the raising and slaughtering of livestock, they are not plant-based. Cellular agriculture allows for the production of animal-sourced foods and materials made from cultured animal cells.

  • Many consumers have a proven bias against plant-based meats. Will that same bias extend to cultured meat, despite cultured meat coming from actual animal cells?
  • Which issues can arise from patenting genes?
  • Does the animal agriculture industry provide any benefits that cellular agriculture may have trouble replicating?
  • How might products made with cellular agriculture become more affordable?
  • Could cellular agriculture conflict with the notion of a “ circular bioeconomy ?” And should we strive for a circular bioeconomy? Can we create a sustainable relationship between technology, capitalism, and the environment, with or without cellular agriculture?

Transportation Technology Research Topics

For decades, we’ve expected flying cars to carry us into a techno-utopia, where everything’s shiny, digital, and easy. We’ve heard promises of super fast trains that can zap us across the country or even across the world. We’ve imagined spring breaks on the moon, jet packs, and teleportation. Who wouldn’t love the option to go anywhere, anytime, super quickly? Transportation technology is another great option for those seeking widely discussed, mainstream technology essay topics.

  • Once upon a time, Lady Gaga was set to perform in space as a promotion for Virgin Galactic . While Virgin Galactic never actually launched the iconic musician/actor, they launched their first commercial flight full of civilians–who paid $450,000 a pop–on a 90-minute trip into the stars in 2023. And if you think that’s pricey, SpaceX launched three businessmen into space for $55 million in April 2022 (though with meals included, this is actually a total steal). So should we be launching people into space just for fun? What are the impacts of space tourism?
  • Could technology improve the way hazardous materials get transported?
  • How can the 5.9 GHz Safety Band affect drivers?
  • Which might be safer: self-driving cars or self-flying airplanes?
  • Compare hyperloop and maglev.  Which is better and why?
  • Can technology improve safety for cyclists?

Gaming Technology Topics

A recent study involving over 2,000 children found links between video game play and enhanced cognitive abilities. While many different studies have found the impacts of video games to be positive or neutral, we still don’t fully understand the impact of every type of video game on every type of brain. Regardless, most people have opinions on video gaming. So this one’s for those seeking widely discussed, mainstream, and controversial technology topics.

  • Are different types or genres of video games more cognitively beneficial than others? Or are certain gaming consoles more cognitively beneficial than others?
  • How do the impacts of video games differ from other types of games, such as board games or puzzles?
  • What ethical challenges and safety risks come with virtual reality gaming?
  • How does a player perceive reality during a virtual reality game compared to other types of video games?
  • Can neurodivergent brains benefit from video games in different ways than neurotypical brains?

Medical Technology

Advancements in healthcare have the power to change and save lives. In the last ten years, countless new medical technologies have been developed, and in the next ten years, countless more will likely emerge. Always relevant and often controversial, this final technology research topic could interest anyone.

  • Which ethical issues might arise from editing genes using CRISPR-Cas9 technology? And should this technology continue to be illegal in the United States?
  • How has telemedicine impacted patients and the healthcare they receive?
  • Can neurotechnology devices potentially affect a user’s agency, identity, privacy, and/or cognitive liberty?
  • How could the use of medical 3-D printing continue to evolve?
  • Are patients more likely to skip digital therapeutics than in-person therapeutic methods? And can the increased screen time required by digital therapeutics impact mental health?

Now that you’ve picked from this list of technology essay topics, do a deep dive and immerse yourself in new ideas, new information, and new perspectives. And of course, now that these topics have motivated you to change the world, look into the best computer science schools , the top feeders to tech and Silicon Valley , the best summer programs for STEM students , and the best biomedical engineering schools .

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Mariya holds a BFA in Creative Writing from the Pratt Institute and is currently pursuing an MFA in writing at the University of California Davis. Mariya serves as a teaching assistant in the English department at UC Davis. She previously served as an associate editor at Carve Magazine for two years, where she managed 60 fiction writers. She is the winner of the 2015 Stony Brook Fiction Prize, and her short stories have been published in Mid-American Review , Cutbank , Sonora Review , New Orleans Review , and The Collagist , among other magazines.

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Home » 500+ Computer Science Research Topics

500+ Computer Science Research Topics

Computer Science Research Topics

Computer Science is a constantly evolving field that has transformed the world we live in today. With new technologies emerging every day, there are countless research opportunities in this field. Whether you are interested in artificial intelligence, machine learning, cybersecurity, data analytics, or computer networks, there are endless possibilities to explore. In this post, we will delve into some of the most interesting and important research topics in Computer Science. From the latest advancements in programming languages to the development of cutting-edge algorithms, we will explore the latest trends and innovations that are shaping the future of Computer Science. So, whether you are a student or a professional, read on to discover some of the most exciting research topics in this dynamic and rapidly expanding field.

Computer Science Research Topics

Computer Science Research Topics are as follows:

  • Using machine learning to detect and prevent cyber attacks
  • Developing algorithms for optimized resource allocation in cloud computing
  • Investigating the use of blockchain technology for secure and decentralized data storage
  • Developing intelligent chatbots for customer service
  • Investigating the effectiveness of deep learning for natural language processing
  • Developing algorithms for detecting and removing fake news from social media
  • Investigating the impact of social media on mental health
  • Developing algorithms for efficient image and video compression
  • Investigating the use of big data analytics for predictive maintenance in manufacturing
  • Developing algorithms for identifying and mitigating bias in machine learning models
  • Investigating the ethical implications of autonomous vehicles
  • Developing algorithms for detecting and preventing cyberbullying
  • Investigating the use of machine learning for personalized medicine
  • Developing algorithms for efficient and accurate speech recognition
  • Investigating the impact of social media on political polarization
  • Developing algorithms for sentiment analysis in social media data
  • Investigating the use of virtual reality in education
  • Developing algorithms for efficient data encryption and decryption
  • Investigating the impact of technology on workplace productivity
  • Developing algorithms for detecting and mitigating deepfakes
  • Investigating the use of artificial intelligence in financial trading
  • Developing algorithms for efficient database management
  • Investigating the effectiveness of online learning platforms
  • Developing algorithms for efficient and accurate facial recognition
  • Investigating the use of machine learning for predicting weather patterns
  • Developing algorithms for efficient and secure data transfer
  • Investigating the impact of technology on social skills and communication
  • Developing algorithms for efficient and accurate object recognition
  • Investigating the use of machine learning for fraud detection in finance
  • Developing algorithms for efficient and secure authentication systems
  • Investigating the impact of technology on privacy and surveillance
  • Developing algorithms for efficient and accurate handwriting recognition
  • Investigating the use of machine learning for predicting stock prices
  • Developing algorithms for efficient and secure biometric identification
  • Investigating the impact of technology on mental health and well-being
  • Developing algorithms for efficient and accurate language translation
  • Investigating the use of machine learning for personalized advertising
  • Developing algorithms for efficient and secure payment systems
  • Investigating the impact of technology on the job market and automation
  • Developing algorithms for efficient and accurate object tracking
  • Investigating the use of machine learning for predicting disease outbreaks
  • Developing algorithms for efficient and secure access control
  • Investigating the impact of technology on human behavior and decision making
  • Developing algorithms for efficient and accurate sound recognition
  • Investigating the use of machine learning for predicting customer behavior
  • Developing algorithms for efficient and secure data backup and recovery
  • Investigating the impact of technology on education and learning outcomes
  • Developing algorithms for efficient and accurate emotion recognition
  • Investigating the use of machine learning for improving healthcare outcomes
  • Developing algorithms for efficient and secure supply chain management
  • Investigating the impact of technology on cultural and societal norms
  • Developing algorithms for efficient and accurate gesture recognition
  • Investigating the use of machine learning for predicting consumer demand
  • Developing algorithms for efficient and secure cloud storage
  • Investigating the impact of technology on environmental sustainability
  • Developing algorithms for efficient and accurate voice recognition
  • Investigating the use of machine learning for improving transportation systems
  • Developing algorithms for efficient and secure mobile device management
  • Investigating the impact of technology on social inequality and access to resources
  • Machine learning for healthcare diagnosis and treatment
  • Machine Learning for Cybersecurity
  • Machine learning for personalized medicine
  • Cybersecurity threats and defense strategies
  • Big data analytics for business intelligence
  • Blockchain technology and its applications
  • Human-computer interaction in virtual reality environments
  • Artificial intelligence for autonomous vehicles
  • Natural language processing for chatbots
  • Cloud computing and its impact on the IT industry
  • Internet of Things (IoT) and smart homes
  • Robotics and automation in manufacturing
  • Augmented reality and its potential in education
  • Data mining techniques for customer relationship management
  • Computer vision for object recognition and tracking
  • Quantum computing and its applications in cryptography
  • Social media analytics and sentiment analysis
  • Recommender systems for personalized content delivery
  • Mobile computing and its impact on society
  • Bioinformatics and genomic data analysis
  • Deep learning for image and speech recognition
  • Digital signal processing and audio processing algorithms
  • Cloud storage and data security in the cloud
  • Wearable technology and its impact on healthcare
  • Computational linguistics for natural language understanding
  • Cognitive computing for decision support systems
  • Cyber-physical systems and their applications
  • Edge computing and its impact on IoT
  • Machine learning for fraud detection
  • Cryptography and its role in secure communication
  • Cybersecurity risks in the era of the Internet of Things
  • Natural language generation for automated report writing
  • 3D printing and its impact on manufacturing
  • Virtual assistants and their applications in daily life
  • Cloud-based gaming and its impact on the gaming industry
  • Computer networks and their security issues
  • Cyber forensics and its role in criminal investigations
  • Machine learning for predictive maintenance in industrial settings
  • Augmented reality for cultural heritage preservation
  • Human-robot interaction and its applications
  • Data visualization and its impact on decision-making
  • Cybersecurity in financial systems and blockchain
  • Computer graphics and animation techniques
  • Biometrics and its role in secure authentication
  • Cloud-based e-learning platforms and their impact on education
  • Natural language processing for machine translation
  • Machine learning for predictive maintenance in healthcare
  • Cybersecurity and privacy issues in social media
  • Computer vision for medical image analysis
  • Natural language generation for content creation
  • Cybersecurity challenges in cloud computing
  • Human-robot collaboration in manufacturing
  • Data mining for predicting customer churn
  • Artificial intelligence for autonomous drones
  • Cybersecurity risks in the healthcare industry
  • Machine learning for speech synthesis
  • Edge computing for low-latency applications
  • Virtual reality for mental health therapy
  • Quantum computing and its applications in finance
  • Biomedical engineering and its applications
  • Cybersecurity in autonomous systems
  • Machine learning for predictive maintenance in transportation
  • Computer vision for object detection in autonomous driving
  • Augmented reality for industrial training and simulations
  • Cloud-based cybersecurity solutions for small businesses
  • Natural language processing for knowledge management
  • Machine learning for personalized advertising
  • Cybersecurity in the supply chain management
  • Cybersecurity risks in the energy sector
  • Computer vision for facial recognition
  • Natural language processing for social media analysis
  • Machine learning for sentiment analysis in customer reviews
  • Explainable Artificial Intelligence
  • Quantum Computing
  • Blockchain Technology
  • Human-Computer Interaction
  • Natural Language Processing
  • Cloud Computing
  • Robotics and Automation
  • Augmented Reality and Virtual Reality
  • Cyber-Physical Systems
  • Computational Neuroscience
  • Big Data Analytics
  • Computer Vision
  • Cryptography and Network Security
  • Internet of Things
  • Computer Graphics and Visualization
  • Artificial Intelligence for Game Design
  • Computational Biology
  • Social Network Analysis
  • Bioinformatics
  • Distributed Systems and Middleware
  • Information Retrieval and Data Mining
  • Computer Networks
  • Mobile Computing and Wireless Networks
  • Software Engineering
  • Database Systems
  • Parallel and Distributed Computing
  • Human-Robot Interaction
  • Intelligent Transportation Systems
  • High-Performance Computing
  • Cyber-Physical Security
  • Deep Learning
  • Sensor Networks
  • Multi-Agent Systems
  • Human-Centered Computing
  • Wearable Computing
  • Knowledge Representation and Reasoning
  • Adaptive Systems
  • Brain-Computer Interface
  • Health Informatics
  • Cognitive Computing
  • Cybersecurity and Privacy
  • Internet Security
  • Cybercrime and Digital Forensics
  • Cloud Security
  • Cryptocurrencies and Digital Payments
  • Machine Learning for Natural Language Generation
  • Cognitive Robotics
  • Neural Networks
  • Semantic Web
  • Image Processing
  • Cyber Threat Intelligence
  • Secure Mobile Computing
  • Cybersecurity Education and Training
  • Privacy Preserving Techniques
  • Cyber-Physical Systems Security
  • Virtualization and Containerization
  • Machine Learning for Computer Vision
  • Network Function Virtualization
  • Cybersecurity Risk Management
  • Information Security Governance
  • Intrusion Detection and Prevention
  • Biometric Authentication
  • Machine Learning for Predictive Maintenance
  • Security in Cloud-based Environments
  • Cybersecurity for Industrial Control Systems
  • Smart Grid Security
  • Software Defined Networking
  • Quantum Cryptography
  • Security in the Internet of Things
  • Natural language processing for sentiment analysis
  • Blockchain technology for secure data sharing
  • Developing efficient algorithms for big data analysis
  • Cybersecurity for internet of things (IoT) devices
  • Human-robot interaction for industrial automation
  • Image recognition for autonomous vehicles
  • Social media analytics for marketing strategy
  • Quantum computing for solving complex problems
  • Biometric authentication for secure access control
  • Augmented reality for education and training
  • Intelligent transportation systems for traffic management
  • Predictive modeling for financial markets
  • Cloud computing for scalable data storage and processing
  • Virtual reality for therapy and mental health treatment
  • Data visualization for business intelligence
  • Recommender systems for personalized product recommendations
  • Speech recognition for voice-controlled devices
  • Mobile computing for real-time location-based services
  • Neural networks for predicting user behavior
  • Genetic algorithms for optimization problems
  • Distributed computing for parallel processing
  • Internet of things (IoT) for smart cities
  • Wireless sensor networks for environmental monitoring
  • Cloud-based gaming for high-performance gaming
  • Social network analysis for identifying influencers
  • Autonomous systems for agriculture
  • Robotics for disaster response
  • Data mining for customer segmentation
  • Computer graphics for visual effects in movies and video games
  • Virtual assistants for personalized customer service
  • Natural language understanding for chatbots
  • 3D printing for manufacturing prototypes
  • Artificial intelligence for stock trading
  • Machine learning for weather forecasting
  • Biomedical engineering for prosthetics and implants
  • Cybersecurity for financial institutions
  • Machine learning for energy consumption optimization
  • Computer vision for object tracking
  • Natural language processing for document summarization
  • Wearable technology for health and fitness monitoring
  • Internet of things (IoT) for home automation
  • Reinforcement learning for robotics control
  • Big data analytics for customer insights
  • Machine learning for supply chain optimization
  • Natural language processing for legal document analysis
  • Artificial intelligence for drug discovery
  • Computer vision for object recognition in robotics
  • Data mining for customer churn prediction
  • Autonomous systems for space exploration
  • Robotics for agriculture automation
  • Machine learning for predicting earthquakes
  • Natural language processing for sentiment analysis in customer reviews
  • Big data analytics for predicting natural disasters
  • Internet of things (IoT) for remote patient monitoring
  • Blockchain technology for digital identity management
  • Machine learning for predicting wildfire spread
  • Computer vision for gesture recognition
  • Natural language processing for automated translation
  • Big data analytics for fraud detection in banking
  • Internet of things (IoT) for smart homes
  • Robotics for warehouse automation
  • Machine learning for predicting air pollution
  • Natural language processing for medical record analysis
  • Augmented reality for architectural design
  • Big data analytics for predicting traffic congestion
  • Machine learning for predicting customer lifetime value
  • Developing algorithms for efficient and accurate text recognition
  • Natural Language Processing for Virtual Assistants
  • Natural Language Processing for Sentiment Analysis in Social Media
  • Explainable Artificial Intelligence (XAI) for Trust and Transparency
  • Deep Learning for Image and Video Retrieval
  • Edge Computing for Internet of Things (IoT) Applications
  • Data Science for Social Media Analytics
  • Cybersecurity for Critical Infrastructure Protection
  • Natural Language Processing for Text Classification
  • Quantum Computing for Optimization Problems
  • Machine Learning for Personalized Health Monitoring
  • Computer Vision for Autonomous Driving
  • Blockchain Technology for Supply Chain Management
  • Augmented Reality for Education and Training
  • Natural Language Processing for Sentiment Analysis
  • Machine Learning for Personalized Marketing
  • Big Data Analytics for Financial Fraud Detection
  • Cybersecurity for Cloud Security Assessment
  • Artificial Intelligence for Natural Language Understanding
  • Blockchain Technology for Decentralized Applications
  • Virtual Reality for Cultural Heritage Preservation
  • Natural Language Processing for Named Entity Recognition
  • Machine Learning for Customer Churn Prediction
  • Big Data Analytics for Social Network Analysis
  • Cybersecurity for Intrusion Detection and Prevention
  • Artificial Intelligence for Robotics and Automation
  • Blockchain Technology for Digital Identity Management
  • Virtual Reality for Rehabilitation and Therapy
  • Natural Language Processing for Text Summarization
  • Machine Learning for Credit Risk Assessment
  • Big Data Analytics for Fraud Detection in Healthcare
  • Cybersecurity for Internet Privacy Protection
  • Artificial Intelligence for Game Design and Development
  • Blockchain Technology for Decentralized Social Networks
  • Virtual Reality for Marketing and Advertising
  • Natural Language Processing for Opinion Mining
  • Machine Learning for Anomaly Detection
  • Big Data Analytics for Predictive Maintenance in Transportation
  • Cybersecurity for Network Security Management
  • Artificial Intelligence for Personalized News and Content Delivery
  • Blockchain Technology for Cryptocurrency Mining
  • Virtual Reality for Architectural Design and Visualization
  • Natural Language Processing for Machine Translation
  • Machine Learning for Automated Image Captioning
  • Big Data Analytics for Stock Market Prediction
  • Cybersecurity for Biometric Authentication Systems
  • Artificial Intelligence for Human-Robot Interaction
  • Blockchain Technology for Smart Grids
  • Virtual Reality for Sports Training and Simulation
  • Natural Language Processing for Question Answering Systems
  • Machine Learning for Sentiment Analysis in Customer Feedback
  • Big Data Analytics for Predictive Maintenance in Manufacturing
  • Cybersecurity for Cloud-Based Systems
  • Artificial Intelligence for Automated Journalism
  • Blockchain Technology for Intellectual Property Management
  • Virtual Reality for Therapy and Rehabilitation
  • Natural Language Processing for Language Generation
  • Machine Learning for Customer Lifetime Value Prediction
  • Big Data Analytics for Predictive Maintenance in Energy Systems
  • Cybersecurity for Secure Mobile Communication
  • Artificial Intelligence for Emotion Recognition
  • Blockchain Technology for Digital Asset Trading
  • Virtual Reality for Automotive Design and Visualization
  • Natural Language Processing for Semantic Web
  • Machine Learning for Fraud Detection in Financial Transactions
  • Big Data Analytics for Social Media Monitoring
  • Cybersecurity for Cloud Storage and Sharing
  • Artificial Intelligence for Personalized Education
  • Blockchain Technology for Secure Online Voting Systems
  • Virtual Reality for Cultural Tourism
  • Natural Language Processing for Chatbot Communication
  • Machine Learning for Medical Diagnosis and Treatment
  • Big Data Analytics for Environmental Monitoring and Management.
  • Cybersecurity for Cloud Computing Environments
  • Virtual Reality for Training and Simulation
  • Big Data Analytics for Sports Performance Analysis
  • Cybersecurity for Internet of Things (IoT) Devices
  • Artificial Intelligence for Traffic Management and Control
  • Blockchain Technology for Smart Contracts
  • Natural Language Processing for Document Summarization
  • Machine Learning for Image and Video Recognition
  • Blockchain Technology for Digital Asset Management
  • Virtual Reality for Entertainment and Gaming
  • Natural Language Processing for Opinion Mining in Online Reviews
  • Machine Learning for Customer Relationship Management
  • Big Data Analytics for Environmental Monitoring and Management
  • Cybersecurity for Network Traffic Analysis and Monitoring
  • Artificial Intelligence for Natural Language Generation
  • Blockchain Technology for Supply Chain Transparency and Traceability
  • Virtual Reality for Design and Visualization
  • Natural Language Processing for Speech Recognition
  • Machine Learning for Recommendation Systems
  • Big Data Analytics for Customer Segmentation and Targeting
  • Cybersecurity for Biometric Authentication
  • Artificial Intelligence for Human-Computer Interaction
  • Blockchain Technology for Decentralized Finance (DeFi)
  • Virtual Reality for Tourism and Cultural Heritage
  • Machine Learning for Cybersecurity Threat Detection and Prevention
  • Big Data Analytics for Healthcare Cost Reduction
  • Cybersecurity for Data Privacy and Protection
  • Artificial Intelligence for Autonomous Vehicles
  • Blockchain Technology for Cryptocurrency and Blockchain Security
  • Virtual Reality for Real Estate Visualization
  • Natural Language Processing for Question Answering
  • Big Data Analytics for Financial Markets Prediction
  • Cybersecurity for Cloud-Based Machine Learning Systems
  • Artificial Intelligence for Personalized Advertising
  • Blockchain Technology for Digital Identity Verification
  • Virtual Reality for Cultural and Language Learning
  • Natural Language Processing for Semantic Analysis
  • Machine Learning for Business Forecasting
  • Big Data Analytics for Social Media Marketing
  • Artificial Intelligence for Content Generation
  • Blockchain Technology for Smart Cities
  • Virtual Reality for Historical Reconstruction
  • Natural Language Processing for Knowledge Graph Construction
  • Machine Learning for Speech Synthesis
  • Big Data Analytics for Traffic Optimization
  • Artificial Intelligence for Social Robotics
  • Blockchain Technology for Healthcare Data Management
  • Virtual Reality for Disaster Preparedness and Response
  • Natural Language Processing for Multilingual Communication
  • Machine Learning for Emotion Recognition
  • Big Data Analytics for Human Resources Management
  • Cybersecurity for Mobile App Security
  • Artificial Intelligence for Financial Planning and Investment
  • Blockchain Technology for Energy Management
  • Virtual Reality for Cultural Preservation and Heritage.
  • Big Data Analytics for Healthcare Management
  • Cybersecurity in the Internet of Things (IoT)
  • Artificial Intelligence for Predictive Maintenance
  • Computational Biology for Drug Discovery
  • Virtual Reality for Mental Health Treatment
  • Machine Learning for Sentiment Analysis in Social Media
  • Human-Computer Interaction for User Experience Design
  • Cloud Computing for Disaster Recovery
  • Quantum Computing for Cryptography
  • Intelligent Transportation Systems for Smart Cities
  • Cybersecurity for Autonomous Vehicles
  • Artificial Intelligence for Fraud Detection in Financial Systems
  • Social Network Analysis for Marketing Campaigns
  • Cloud Computing for Video Game Streaming
  • Machine Learning for Speech Recognition
  • Augmented Reality for Architecture and Design
  • Natural Language Processing for Customer Service Chatbots
  • Machine Learning for Climate Change Prediction
  • Big Data Analytics for Social Sciences
  • Artificial Intelligence for Energy Management
  • Virtual Reality for Tourism and Travel
  • Cybersecurity for Smart Grids
  • Machine Learning for Image Recognition
  • Augmented Reality for Sports Training
  • Natural Language Processing for Content Creation
  • Cloud Computing for High-Performance Computing
  • Artificial Intelligence for Personalized Medicine
  • Virtual Reality for Architecture and Design
  • Augmented Reality for Product Visualization
  • Natural Language Processing for Language Translation
  • Cybersecurity for Cloud Computing
  • Artificial Intelligence for Supply Chain Optimization
  • Blockchain Technology for Digital Voting Systems
  • Virtual Reality for Job Training
  • Augmented Reality for Retail Shopping
  • Natural Language Processing for Sentiment Analysis in Customer Feedback
  • Cloud Computing for Mobile Application Development
  • Artificial Intelligence for Cybersecurity Threat Detection
  • Blockchain Technology for Intellectual Property Protection
  • Virtual Reality for Music Education
  • Machine Learning for Financial Forecasting
  • Augmented Reality for Medical Education
  • Natural Language Processing for News Summarization
  • Cybersecurity for Healthcare Data Protection
  • Artificial Intelligence for Autonomous Robots
  • Virtual Reality for Fitness and Health
  • Machine Learning for Natural Language Understanding
  • Augmented Reality for Museum Exhibits
  • Natural Language Processing for Chatbot Personality Development
  • Cloud Computing for Website Performance Optimization
  • Artificial Intelligence for E-commerce Recommendation Systems
  • Blockchain Technology for Supply Chain Traceability
  • Virtual Reality for Military Training
  • Augmented Reality for Advertising
  • Natural Language Processing for Chatbot Conversation Management
  • Cybersecurity for Cloud-Based Services
  • Artificial Intelligence for Agricultural Management
  • Blockchain Technology for Food Safety Assurance
  • Virtual Reality for Historical Reenactments
  • Machine Learning for Cybersecurity Incident Response.
  • Secure Multiparty Computation
  • Federated Learning
  • Internet of Things Security
  • Blockchain Scalability
  • Quantum Computing Algorithms
  • Explainable AI
  • Data Privacy in the Age of Big Data
  • Adversarial Machine Learning
  • Deep Reinforcement Learning
  • Online Learning and Streaming Algorithms
  • Graph Neural Networks
  • Automated Debugging and Fault Localization
  • Mobile Application Development
  • Software Engineering for Cloud Computing
  • Cryptocurrency Security
  • Edge Computing for Real-Time Applications
  • Natural Language Generation
  • Virtual and Augmented Reality
  • Computational Biology and Bioinformatics
  • Internet of Things Applications
  • Robotics and Autonomous Systems
  • Explainable Robotics
  • 3D Printing and Additive Manufacturing
  • Distributed Systems
  • Parallel Computing
  • Data Center Networking
  • Data Mining and Knowledge Discovery
  • Information Retrieval and Search Engines
  • Network Security and Privacy
  • Cloud Computing Security
  • Data Analytics for Business Intelligence
  • Neural Networks and Deep Learning
  • Reinforcement Learning for Robotics
  • Automated Planning and Scheduling
  • Evolutionary Computation and Genetic Algorithms
  • Formal Methods for Software Engineering
  • Computational Complexity Theory
  • Bio-inspired Computing
  • Computer Vision for Object Recognition
  • Automated Reasoning and Theorem Proving
  • Natural Language Understanding
  • Machine Learning for Healthcare
  • Scalable Distributed Systems
  • Sensor Networks and Internet of Things
  • Smart Grids and Energy Systems
  • Software Testing and Verification
  • Web Application Security
  • Wireless and Mobile Networks
  • Computer Architecture and Hardware Design
  • Digital Signal Processing
  • Game Theory and Mechanism Design
  • Multi-agent Systems
  • Evolutionary Robotics
  • Quantum Machine Learning
  • Computational Social Science
  • Explainable Recommender Systems.
  • Artificial Intelligence and its applications
  • Cloud computing and its benefits
  • Cybersecurity threats and solutions
  • Internet of Things and its impact on society
  • Virtual and Augmented Reality and its uses
  • Blockchain Technology and its potential in various industries
  • Web Development and Design
  • Digital Marketing and its effectiveness
  • Big Data and Analytics
  • Software Development Life Cycle
  • Gaming Development and its growth
  • Network Administration and Maintenance
  • Machine Learning and its uses
  • Data Warehousing and Mining
  • Computer Architecture and Design
  • Computer Graphics and Animation
  • Quantum Computing and its potential
  • Data Structures and Algorithms
  • Computer Vision and Image Processing
  • Robotics and its applications
  • Operating Systems and its functions
  • Information Theory and Coding
  • Compiler Design and Optimization
  • Computer Forensics and Cyber Crime Investigation
  • Distributed Computing and its significance
  • Artificial Neural Networks and Deep Learning
  • Cloud Storage and Backup
  • Programming Languages and their significance
  • Computer Simulation and Modeling
  • Computer Networks and its types
  • Information Security and its types
  • Computer-based Training and eLearning
  • Medical Imaging and its uses
  • Social Media Analysis and its applications
  • Human Resource Information Systems
  • Computer-Aided Design and Manufacturing
  • Multimedia Systems and Applications
  • Geographic Information Systems and its uses
  • Computer-Assisted Language Learning
  • Mobile Device Management and Security
  • Data Compression and its types
  • Knowledge Management Systems
  • Text Mining and its uses
  • Cyber Warfare and its consequences
  • Wireless Networks and its advantages
  • Computer Ethics and its importance
  • Computational Linguistics and its applications
  • Autonomous Systems and Robotics
  • Information Visualization and its importance
  • Geographic Information Retrieval and Mapping
  • Business Intelligence and its benefits
  • Digital Libraries and their significance
  • Artificial Life and Evolutionary Computation
  • Computer Music and its types
  • Virtual Teams and Collaboration
  • Computer Games and Learning
  • Semantic Web and its applications
  • Electronic Commerce and its advantages
  • Multimedia Databases and their significance
  • Computer Science Education and its importance
  • Computer-Assisted Translation and Interpretation
  • Ambient Intelligence and Smart Homes
  • Autonomous Agents and Multi-Agent Systems.

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Muhammad Hassan

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PS – You can also check out our free topic ideation webinar for more ideas

How To Find A Research Topic

If you’re struggling to get started, this step-by-step video tutorial will help you find the perfect research topic.

Research Topic FAQs

What (exactly) is a research topic.

A research topic is the subject of a research project or study – for example, a dissertation or thesis. A research topic typically takes the form of a problem to be solved, or a question to be answered.

A good research topic should be specific enough to allow for focused research and analysis. For example, if you are interested in studying the effects of climate change on agriculture, your research topic could focus on how rising temperatures have impacted crop yields in certain regions over time.

To learn more about the basics of developing a research topic, consider our free research topic ideation webinar.

What constitutes a good research topic?

A strong research topic comprises three important qualities : originality, value and feasibility.

  • Originality – a good topic explores an original area or takes a novel angle on an existing area of study.
  • Value – a strong research topic provides value and makes a contribution, either academically or practically.
  • Feasibility – a good research topic needs to be practical and manageable, given the resource constraints you face.

To learn more about what makes for a high-quality research topic, check out this post .

What's the difference between a research topic and research problem?

A research topic and a research problem are two distinct concepts that are often confused. A research topic is a broader label that indicates the focus of the study , while a research problem is an issue or gap in knowledge within the broader field that needs to be addressed.

To illustrate this distinction, consider a student who has chosen “teenage pregnancy in the United Kingdom” as their research topic. This research topic could encompass any number of issues related to teenage pregnancy such as causes, prevention strategies, health outcomes for mothers and babies, etc.

Within this broad category (the research topic) lies potential areas of inquiry that can be explored further – these become the research problems . For example:

  • What factors contribute to higher rates of teenage pregnancy in certain communities?
  • How do different types of parenting styles affect teen pregnancy rates?
  • What interventions have been successful in reducing teenage pregnancies?

Simply put, a key difference between a research topic and a research problem is scope ; the research topic provides an umbrella under which multiple questions can be asked, while the research problem focuses on one specific question or set of questions within that larger context.

How can I find potential research topics for my project?

There are many steps involved in the process of finding and choosing a high-quality research topic for a dissertation or thesis. We cover these steps in detail in this video (also accessible below).

How can I find quality sources for my research topic?

Finding quality sources is an essential step in the topic ideation process. To do this, you should start by researching scholarly journals, books, and other academic publications related to your topic. These sources can provide reliable information on a wide range of topics. Additionally, they may contain data or statistics that can help support your argument or conclusions.

Identifying Relevant Sources

When searching for relevant sources, it’s important to look beyond just published material; try using online databases such as Google Scholar or JSTOR to find articles from reputable journals that have been peer-reviewed by experts in the field.

You can also use search engines like Google or Bing to locate websites with useful information about your topic. However, be sure to evaluate any website before citing it as a source—look for evidence of authorship (such as an “About Us” page) and make sure the content is up-to-date and accurate before relying on it.

Evaluating Sources

Once you’ve identified potential sources for your research project, take some time to evaluate them thoroughly before deciding which ones will best serve your purpose. Consider factors such as author credibility (are they an expert in their field?), publication date (is the source current?), objectivity (does the author present both sides of an issue?) and relevance (how closely does this source relate to my specific topic?).

By researching the current literature on your topic, you can identify potential sources that will help to provide quality information. Once you’ve identified these sources, it’s time to look for a gap in the research and determine what new knowledge could be gained from further study.

How can I find a good research gap?

Finding a strong gap in the literature is an essential step when looking for potential research topics. We explain what research gaps are and how to find them in this post.

How should I evaluate potential research topics/ideas?

When evaluating potential research topics, it is important to consider the factors that make for a strong topic (we discussed these earlier). Specifically:

  • Originality
  • Feasibility

So, when you have a list of potential topics or ideas, assess each of them in terms of these three criteria. A good topic should take a unique angle, provide value (either to academia or practitioners), and be practical enough for you to pull off, given your limited resources.

Finally, you should also assess whether this project could lead to potential career opportunities such as internships or job offers down the line. Make sure that you are researching something that is relevant enough so that it can benefit your professional development in some way. Additionally, consider how each research topic aligns with your career goals and interests; researching something that you are passionate about can help keep motivation high throughout the process.

How can I assess the feasibility of a research topic?

When evaluating the feasibility and practicality of a research topic, it is important to consider several factors.

First, you should assess whether or not the research topic is within your area of competence. Of course, when you start out, you are not expected to be the world’s leading expert, but do should at least have some foundational knowledge.

Time commitment

When considering a research topic, you should think about how much time will be required for completion. Depending on your field of study, some topics may require more time than others due to their complexity or scope.

Additionally, if you plan on collaborating with other researchers or institutions in order to complete your project, additional considerations must be taken into account such as coordinating schedules and ensuring that all parties involved have adequate resources available.

Resources needed

It’s also critically important to consider what type of resources are necessary in order to conduct the research successfully. This includes physical materials such as lab equipment and chemicals but can also include intangible items like access to certain databases or software programs which may be necessary depending on the nature of your work. Additionally, if there are costs associated with obtaining these materials then this must also be factored into your evaluation process.

Potential risks

It’s important to consider the inherent potential risks for each potential research topic. These can include ethical risks (challenges getting ethical approval), data risks (not being able to access the data you’ll need), technical risks relating to the equipment you’ll use and funding risks (not securing the necessary financial back to undertake the research).

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450+ Technology Research Topics & Ideas for Your Paper

Technology Research Topics

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Technology is like a massive puzzle where each piece connects to form the big picture of our modern lives. Be it a classroom, office, or a hospital, technology has drastically changed the way we communicate and do business. But to truly understand its role, we need to explore different technology research topics.

And that's where this blog will be handy! Powered by solid experience, our professional term paper writers gathered multiple technology research paper topics in literally any direction. Whether you're a student looking for an intriguing subject for your project or just a tech enthusiast trying to broaden your understanding, we've got your back. Dive into this collection of tech topics and see how technological progress is shaping our world.

What Are Technology Topics?

Technology is the application of scientific knowledge for practical purposes. It's the smartphone in your hand, the electric car on your street, and the spacecraft exploring Mars. It might also be the code that protects your online privacy and the microscope that uncovers mysteries of the human cell.

Technology permeates our lives, revolutionizing the way we communicate, learn, work, and play. But, beyond the gadgets and gizmos, there's a world of diverse technology research topics, ideas, concepts, and challenges.

Technology topics zoom in on these ideas, peeling back the layers of the tech universe. As a researcher, you might study how AI is changing healthcare, explore the ethical implications of robotics, or investigate the latest innovations in renewable energy. Your project should probe into the 'how,' the 'why,' and the 'what next' of the technology that is reshaping our world. So, whether you're dissecting the impact of EdTech on traditional learning or predicting the future of space exploration, research topics in technology are limitless.

Branches of Technology Research Paper Topics

Undoubtedly, the reach of technology is extensive. It's woven its way into almost every corner of our lives. Before we move to technological research topics, let’s first see just where technology has left its mark. So, here are some areas where technology is really shaking things up:

  • Government services: E-governance, digital IDs, and digital voting are just a few examples of technology's application in government services.
  • Finance: Fintech innovations include cryptocurrencies, mobile banking, robo-advising, and contactless payments.
  • Education: Technology is used in a wide variety of educational contexts, from e-learning platforms and digital textbooks to educational games and virtual classrooms.
  • Communication: Social media, video conferencing, instant messaging, and email are all examples of tech's role in communication.
  • Healthcare: From electronic medical records and telemedicine to advanced imaging technology and robotic surgery, technology is surely transforming healthcare.
  • Agriculture: Technological advancements are revolutionizing agriculture through precision farming, automated machinery, drones, and genetic engineering.
  • Retail: It also influences retail through e-commerce, mobile payments, virtual fitting rooms, and personalized shopping experiences.
  • Environment: Tech is used in climate modeling, conservation efforts, renewable energy, and pollution control.

These are far from all sectors where technology can be applied. But this list shows how diverse topics in technology can be.

How to Choose a Technology Research Topic?

Before you select any idea, it’s important to understand what a good technology research topic is. In a nutshell, a decent topic should be interesting, relevant, and feasible to research within your available resources and time. Make sure it’s specific enough, but not to narrow so you can find enough credible resources. 

Your technology topic sets the course of your research. It influences the type and amount of information you'll search for, the methods you'll use to find it, and the way you'll interpret it. Ultimately, the right topic can make your research process not only more manageable but also more meaningful. But how to get started, you may ask. Don’t worry! Below we are going to share valuable tips from our thesis writers on how to choose a worthy topic about technology.

  • Make research Study the latest trends and explore relevant technology news. Your task is to come up with something unique that’s not been done before. Try to look for inspiration in existing literature, scientific articles, or in past projects.
  • Recognize your interests Start with what you are genuinely curious about in the field of technology. Passion can be a great motivator during the research process.
  • Consider the scope You want a topic that is neither too broad nor too narrow. It should provide enough material to explore without being overwhelming.
  • Check availability of resources Ensure there are sufficient trustworthy resources available for your chosen topic.
  • Evaluate the relevance Your technology research idea should be pertinent to your field of study and resonate with current trends. This can make your research more valuable and engaging for your audience.

Top List of Technology Research Topics

Are you looking for the best research topics about technology? Stop by! Here, we’ve carefully collected the topic ideas to ignite your curiosity and support your research. Each topic offers various data sources, allowing you to construct well-supported arguments. So, let's discover these fascinating subjects together!

  • AI's influence on healthcare.
  • Challenges of cybersecurity in a connected world.
  • Role of drones in modern agriculture.
  • Could renewable energy replace fossil fuels?
  • Impact of virtual reality on education.
  • Blockchain's potential beyond cryptocurrencies.
  • Ethical considerations in biotechnology.
  • Can smart cities enhance quality of life?
  • Autonomous vehicles – opportunities and threats.
  • Robotics in manufacturing.
  • Is big data changing decision-making processes?
  • E-waste : Challenges and solutions.
  • Role of IoT in smart homes.
  • Implications of 5G technology.
  • EdTech: A revolution in learning?

Good Technology Research Topics

Ready for another batch of inspiration? Get ready to discover great technology topics for a research paper across various disciplines. These ideas are designed to stimulate your creativity and provide substantial information for your research. So, let's explore these exciting themes together!

  • Impact of nanotechnology on medicine.
  • Harnessing quantum computing potential.
  • Augmented reality in tourism.
  • Can bioinformatics revolutionize disease prediction?
  • Sustainability in tech product design.
  • Darknet : A hidden side of the internet.
  • How does technology influence human behavior?
  • Assistive technology in special education.
  • Are smart textiles transforming the fashion industry?
  • Role of GIS in urban planning.
  • Space tourism: A reality or fantasy?
  • Potential of digital twins in engineering.
  • How is telemedicine shaping healthcare delivery?
  • Green IT : Addressing environmental issues.
  • Impact of machine learning on finance.

Interesting Technology Research Paper Topics

For those craving intriguing angles and fresh ideas, we present these interesting topics in technology. This collection is filled with thought-provoking subjects that cover the lesser-known areas of technology. Each topic is concise, clear, and ready to spark a fascinating research journey!

  • Cyber-physical systems in industry 4.0.
  • Social implications of deepfake technology.
  • Can gamification enhance learning outcomes?
  • Neuromorphic computing: Emulating the human brain.
  • Li-Fi : Light-based communication technology.
  • Health risks of prolonged screen time.
  • Quantum cryptography and secure communication.
  • Role of technology in sustainable agriculture.
  • Can we predict earthquakes with AI?
  • Virtual influencers: A new trend in marketing.
  • Tech solutions for wildlife conservation.
  • Role of 3D printing in organ transplantation.
  • Impact of automation on the job market.
  • Cloud gaming: A new era in the gaming industry.
  • Genomic editing: Possibilities and ethical concerns.

New Technology Research Topics

Understanding the fast-paced world of technology requires us to keep up with the latest developments. Hence, we bring you burning  technology research paper topics. These ideas reflect the most recent trends and advances in technology, offering fresh perspectives for your research. Let's take a look at these compelling subjects!

  • Potential of hyper automation in business processes.
  • How is AI changing digital marketing?
  • Brain-computer interfaces: The future of communication?
  • Quantum supremacy : Fact or fiction?
  • 5D data storage: Revolutionizing data preservation.
  • Rise of voice technology in consumer applications.
  • Using AI for mental health treatment.
  • Implications of edge computing for IoT devices.
  • Personalized learning with AI in education.
  • Role of technology in reducing food waste.
  • Digital twin technology in urban development.
  • Impact of AI on patent law.
  • Cybersecurity in the era of quantum computing.
  • Role of VR in disaster management training.
  • AI in talent recruitment: Pros and cons.

Unique Technology Research Topics

For those wanting to stand out with truly original research, we offer 100% authentic topics about technology. We understand that professors highly value unique perspectives. Below we've meticulously selected these technology paper topics to offer you something different. These are not your everyday technology subjects but rather unexpected gems ready to be explored.

  • Digital ethics in AI application.
  • Role of technology in countering climate change.
  • Is there a digital divide in developing countries?
  • Role of drones in disaster management.
  • Quantum internet: Possibilities and challenges.
  • Digital forensic techniques in cybersecurity.
  • Impact of technology on traditional art forms.
  • Biohacking: Can we really upgrade ourselves?
  • Technology and privacy: An inevitable trade-off?
  • Developing empathy through virtual reality.
  • AI and creativity: Can machines be artists?
  • Technology's impact on urban gardening.
  • Role of technology in accessible tourism.
  • Quantum biology: A frontier of science.
  • Unmanned underwater vehicles: Opportunities and threats.

Informative Research Topics in Technology

If you are seeking comprehensive information on technologies, this selection will definitely provide you with insights. As you may know, every study should be backed up by credible sources. Technology topics for research papers below are very easy to investigate, so you will surely find a bunch of academic resources.

  • Exploring  adaptive learning systems in online education.
  • Role of technology in modern archaeology.
  • Impact of immersive technology on journalism.
  • The rise of telehealth services.
  • Green data centers: A sustainable solution?
  • Cybersecurity in mobile banking.
  • 3D bioprinting : A revolution in healthcare?
  • How technology affects sleep quality.
  • AI in music production: A new era?
  • Technology's role in preserving endangered languages.
  • Smart grids for sustainable energy use.
  • The future of privacy in a digital world.
  • Can technology enhance sports performance?
  • Role of AR in interior design.
  • How technology is transforming public libraries.

Controversial Research Topics on Technology

Technological field touches upon areas where technology, ethics, and society intersect and often disagree. This has sparked debates and, sometimes, conspiracy theories, primarily because of the profound implications technologies have for our future. Take a look at these ideas, if you are up to a more controversial research topic about technology:

  • Facial recognition technology: Invasion of privacy?
  • Tech addiction: Myth or reality?
  • The ethics of AI in warfare.
  • Should social media platforms censor content?
  • Are cryptocurrencies a boon or a bane?
  • Is technology causing more harm than good to our health?
  • The bias in machine learning algorithms.
  • Genetic engineering: Playing God or advancing science?
  • Will AI replace human jobs?
  • Net neutrality: Freedom of internet or control?
  • The risk of AI superintelligence.
  • Tech companies' monopoly: Beneficial or detrimental?
  • Are we heading towards a surveillance society?
  • AI in law enforcement: Safeguard or threat?
  • Do we rely too much on technology?

Easy Technology Research Paper Topics

Who ever thought the tech field was only for the tech-savvy? Well, it's time to dispel that myth. Here in our collection of simple technology research topics, we've curated subjects that break down complex tech concepts into manageable chunks. We believe that every student should get a chance to run a tech related project without any hurdles.

  • Impact of social media on interpersonal communication.
  • Smartphones: A boon or a bane?
  • How technology improves accessibility for people with disabilities.
  • E-learning versus traditional learning.
  • Impact of technology on travel and tourism.
  • Pros and cons of online shopping.
  • How has technology changed entertainment?
  • Technology's role in boosting productivity at work.
  • Online safety: How to protect ourselves?
  • Importance of digital literacy in today's world.
  • How has technology influenced the music industry?
  • E-books vs printed books: A tech revolution?
  • Does technology promote loneliness?
  • Role of technology in shaping modern communication.
  • The impact of gaming on cognitive abilities.

Technology Research Topics Ideas for Students

As an experienced paper writing service online that helps students all the time, we understand that every learner has unique academic needs. With this in mind, the next section of our blog is designed to cater specifically to different academic levels. Whether you're a high school student just starting to explore technology or a doctoral candidate delving deep into a specialized topic, we've got different technology topics arranged by complexity.

Technology Research Topics for High School Students

High school students are expected to navigate complex topics, fostering critical thinking and promoting in-depth exploration. The proposed research paper topics on technology will help students understand how tech advancements shape various sectors of society and influence human life.

  • How have smartphones changed our communication?
  • Does virtual reality in museums enhance visitor experience?
  • Understanding privacy issues in social media.
  • How has technology changed the way we listen to music?
  • Role of technology in promoting fitness and healthy lifestyle.
  • Advantages and disadvantages of online learning.
  • Does excessive screen time affect sleep quality?
  • Do video games affect academic performance?
  • How do GPS systems work?
  • How has technology improved animation in films?
  • Pros and cons of using smart home devices.
  • Are self-driving cars safe?
  • Technology's role in modernizing local libraries.
  • Can technology help us lead more sustainable lifestyles?
  • Can technology help improve road safety for teenagers?

Technology Research Topics for College Students

Think technology research topics for college are all about rocket science? Think again! Our compilation of college-level tech research topics brings you a bunch of intriguing, conversation-stirring, and head-scratching questions. They're designed to let you sink into the world of technology while also pushing your academic boundaries. Time to dive in, explore, question, and take your own unique stance on hot-button issues.

  • Biometrics in identity verification: A privacy risk?
  • Impact of 5G on mobile gaming.
  • Are wearable fitness devices a true reflection of health?
  • Can machine learning help predict climate change effects?
  • Are digital currencies disrupting traditional finance?
  • Use of drones in search and rescue operations.
  • Impact of e-learning on academic performance.
  • Does artificial intelligence have a place in home security?
  • What are the ethical issues surrounding robotic surgery?
  • Are e-wallets a safer option for online transactions?
  • How has technology transformed news dissemination?
  • AI in language translation: How accurate can it be?
  • Personalized advertising: Boon or bane for online users?
  • Are smart classes making learning more interactive?
  • Influence of technology on homemade crafts and DIY culture.

Technology Research Topics for University Students

Are you browsing for university technology research ideas? We've got you covered. Whether you're about to dig deep into high-tech debates, or just taking your first steps, our list of technology research questions is your treasure chest.

  • Blockchain applications in ensuring academic integrity.
  • Impact of quantum computing on data security.
  • Are brain-computer interfaces a future communication tool?
  • Does digital currency pose a threat to the global economy?
  • Use of AI in predicting and managing natural disasters.
  • Can biometrics replace traditional identification systems?
  • Role of nanotechnology in waste management.
  • Machine learning's influence on climate change modeling.
  • Edge computing: Revolutionizing data processing?
  • Is virtual reality in psychological therapy a viable option?
  • Potential of synthetic biology in medical research.
  • Quantum cryptography: An uncrackable code?
  • Is space tourism achievable with current technology?
  • Ethical implications of gene editing technologies.
  • Artificial intelligence in governance.

Technology Research Paper Topics in Different Areas

In the next section, we've arranged a collection of technology research questions related to different areas like computer science, biotechnology, and medicine. Find an area you are interested in and look through subject-focused ideas and topics for a research paper on technology.

Technology Research Topics on Computer Science

Computer science is a field that has rapidly developed over the past decades. It deals with questions of technology's influence on society, as well as applications of cutting-edge technologies in various industries and sectors. Here are some computer science research topics on technology to get started:

  • Prospects of machine learning in malware detection.
  • Influence of cloud computing on business operations.
  • Quantum computing: potential impacts on cryptography.
  • Role of big data in personalized marketing.
  • Can AI models effectively simulate human decision-making?
  • Future of mobile applications: Towards augmented reality?
  • Pros and cons of open source software development.
  • Role of computer science in advancing virtual reality.
  • Natural language processing: Transforming human-computer interaction?
  • Developing secure e-commerce platforms: Challenges and solutions.
  • Green computing : solutions for reducing energy consumption.
  • Data mining in healthcare: An untapped opportunity?
  • Understanding cyber threats in the internet of things.
  • Algorithmic bias: Implications for automated decision-making.
  • Role of neural networks in image recognition.

Information Technology Research Topics

Information technology is a dynamic field that involves the use of computers and software to manage and process information. It's crucial in today's digital era, influencing a range of industries from healthcare to entertainment. Here are some captivating information technology related topics:

  • Impact of cloud technology on data management.
  • Role of information technology in disaster management.
  • Can artificial intelligence help improve data accuracy?
  • Cybersecurity measures for protecting personal information.
  • Evolving role of IT in healthcare administration.
  • Adaptive learning systems: A revolution in education?
  • E-governance : Impact on public administration.
  • Role of IT in modern supply chain management.
  • Bioinformatics and its role in personalized medicine.
  • Is data mining an invasion of privacy?
  • Can virtual reality enhance training and development programs?
  • Role of IT in facilitating remote work.
  • Smart devices and data security: A potential risk?
  • Harnessing IT for sustainable business practices.
  • How can big data support decision-making processes?

Technology Research Topics on Artificial Intelligence

Artificial Intelligence, or AI as we fondly call it, is all about creating machines that mimic human intelligence. It's shaping everything from how we drive our cars to how we manage our calendars. Want to understand the mind of a machine? Choose a topic about technology for a research paper from the list below:

  • AI's role in detecting fake news.
  • Chatbots in customer service: Are humans still needed?
  • Algorithmic trading: AI's impact on financial markets.
  • AI in agriculture: a step towards sustainable farming?
  • Facial recognition systems: an AI revolution or privacy threat?
  • Can AI outperform humans in creative tasks?
  • Sentiment analysis in social media: how effective is AI?
  • Siri, Alexa, and the future of AI.
  • AI in autonomous vehicles: safety concern or necessity?
  • How AI algorithms are transforming video games.
  • AI's potential in predicting and mitigating natural disasters.
  • Role of AI in combating cyber threats.
  • Influence of AI on job recruitment and HR processes.
  • Can AI help in advancing climate change research?
  • Can machines make accurate diagnoses?

Technology Research Topics in Cybersecurity Command

Cybersecurity Command focuses on strengthening digital protection. Its goal is to identify vulnerabilities, and outsmart cyber threats. Ready to crack the code of the cybersecurity command? Check out these technology topics for research designed to take you through the tunnels of cyberspace:

  • Cybersecurity strategies for a post-quantum world.
  • Role of AI in identifying cyber threats.
  • Is cybersecurity command in healthcare a matter of life and death?
  • Is there any connection between cryptocurrency and cybercrime?
  • Cyber warfare : The invisible battleground.
  • Mitigating insider threats in cybersecurity command.
  • Future of biometric authentication in cybersecurity.
  • IoT security: command challenges and solutions.
  • Cybersecurity and cloud technology: A secure match?
  • Influence of blockchain on cybersecurity command.
  • Machine learning's role in malware detection.
  • Cybersecurity protocols for mobile devices.
  • Ethics in cybersecurity: Hacking back and other dilemmas.
  • What are some steps to recovery after a breach?
  • Social engineering: Human factor in cybersecurity.

Technology Research Topics on Biotechnology

Biotechnology is an interdisciplinary field that has been gaining a lot of traction in the past few decades. It involves the application of biological principles to understand and solve various problems. The following research topic ideas for technology explore biotechnology's impact on medicine, environment, agriculture, and other sectors:

  • Can GMOs solve global hunger issues?
  • Understanding biotech's role in developing personalized medicine.
  • Using biotech to fight antibiotic resistance.
  • Pros and cons of genetically modified animals.
  • Biofuels – are they really a sustainable energy solution?
  • Ethical challenges in gene editing.
  • Role of biotech in combating climate change.
  • Can biotechnology help conserve biodiversity?
  • Biotech in beauty: Revolutionizing cosmetics.
  • Bioluminescence – a natural wonder or a biotech tool?
  • Applications of microbial biotechnology in waste management.
  • Human organ farming: Possibility or pipe dream?
  • Biotech and its role in sustainable agriculture.
  • Biotech advancements in creating allergy-free foods.
  • Exploring the future of biotech in disease detection.

>> Read more: Biology Topics to Research

Technology Research Paper Topics on Genetic Engineering

Genetic engineering is an area of science that involves the manipulation of genes to change or enhance biological characteristics. This field has raised tremendous ethical debates while offering promising solutions in medicine and agriculture. Here are some captivating topics for a technology research paper on genetic engineering:

  • Future of gene editing: Breakthrough or ethical dilemma?
  • Role of CRISPR technology in combating genetic diseases.
  • Pros and cons of genetically modified crops.
  • Impact of genetic engineering on biodiversity.
  • Can gene therapy provide a cure for cancer?
  • Genetic engineering and the quest for designer babies.
  • Legal aspects of genetic engineering.
  • Use of genetic engineering in organ transplantation.
  • Genetic modifications: Impact on human lifespan.
  • Genetically engineered pets: A step too far?
  • The role of genetic engineering in biofuels production.
  • Ethics of genetic data privacy.
  • Genetic engineering and its impact on world hunger.
  • Genetically modified insects: Solution for disease control?
  • Genetic engineering: A tool for biological warfare?

Reproduction Technology Research Paper Topics

Reproduction technology is all about the science that aids human procreation. It's a field teeming with innovation, from IVF advancements to genetic screening. Yet, it also stirs up ethical debates and thought-provoking technology topics to write about:

  • Advances in in Vitro Fertilization (IVF) technology .
  • The rise of surrogacy: Technological advancements and implications.
  • Ethical considerations in sperm and egg donation.
  • Genetic screening of embryos: A step forward or an ethical minefield?
  • Role of technology in understanding and improving fertility.
  • Artificial Wombs: Progress and prospects.
  • Ethical and legal aspects of posthumous reproduction.
  • Impact of reproductive technology on the LGBTQ+ community.
  • The promise and challenge of stem cells in reproduction.
  • Technology's role in preventing genetic diseases in unborn babies.
  • Social implications of childbearing technology.
  • The concept of 'designer babies': Ethical issues and future possibilities.
  • Reproductive cloning: Prospects and controversies.
  • Technology and the future of contraception.
  • Role of AI in predicting successful IVF treatment.

Medical Technology Topics for a Research Paper

The healthcare field is undergoing massive transformations thanks to cutting-edge medical technology. From revolutionary diagnostic tools to life-saving treatments, technology is reshaping medicine as we know it. To aid your exploration of this dynamic field, we've compiled medical technology research paper topics:

  • Role of AI in early disease detection.
  • Impact of telemedicine on rural healthcare.
  • Nanotechnology in cancer treatment: Prospects and challenges.
  • Can wearable technology improve patient outcomes?
  • Ethical considerations in genome sequencing.
  • Augmented reality in surgical procedures.
  • The rise of personalized medicine: Role of technology.
  • Mental health apps: Revolution or hype?
  • Technology and the future of prosthetics.
  • Role of Big Data in healthcare decision making.
  • Virtual reality as a tool for pain management.
  • Impact of machine learning on drug discovery.
  • The promise of medical drones for emergency response.
  • Technology's role in combating antimicrobial resistance.
  • Electronic Health Records (EHRs): Blessing or curse?

>> More ideas: Med Research Topics

Health Technology Research Topics

Health technology is driving modern healthcare to new heights. From apps that monitor vital stats to robots assisting in surgeries, technology's touch is truly transformative. Take a look at these topics related to technology applied in healthcare:

  • Role of mobile apps in managing diabetes.
  • Impact of health technology on patient privacy.
  • Wearable tech: Fad or future of personal health monitoring?
  • How can AI help in battling mental health issues?
  • Role of digital tools in promoting preventive healthcare.
  • Smart homes for the elderly: Boon or bane?
  • Technology and its impact on health insurance.
  • The effectiveness of virtual therapy sessions.
  • Can health chatbots replace human doctors?
  • Technology's role in fighting the obesity epidemic.
  • The use of blockchain in health data management.
  • Impact of technology on sleep health.
  • Social media and its effect on mental health.
  • Prospects of 3D printing in creating medical equipment.
  • Tele-rehabilitation: An effective solution for physical therapy?

>> View more: Public Health Topics to Research

Communication Technology Research Topics

With technology at the helm, our ways of communicating are changing at an unprecedented pace. From simple text messages to immersive virtual conferences, technology has rewritten the rules of engagement. So, without further ado, let's explore these communication research ideas for technology that capture the essence of this revolution.

  • AI chatbots: Re-defining customer service.
  • The impact of 5G on global communication.
  • Augmented Reality: The future of digital marketing?
  • Is 'digital divide' hindering global communication?
  • Social media's role in shaping public opinion.
  • Can holographic communication become a reality?
  • Influence of emojis in digital communication.
  • The cybersecurity challenges in modern communication.
  • Future of journalism in the digital age.
  • How technology is reshaping political communication.
  • The influence of streaming platforms on viewing habits.
  • Privacy concerns in the age of instant messaging.
  • Can technology solve the issue of language barriers?
  • The rise of podcasting: A digital renaissance.
  • Role of virtual reality in remote communication.

Research Topics on Technology in Transportation

Technology is the driving force behind the dramatic changes in transportation, making journeys safer, more efficient, and eco-friendly. Whether it's autonomous vehicles or the concept of Hyperloop, there are many transportation technology topics for a research paper to choose from:

  • Electric vehicles: A step towards sustainable travel.
  • The role of AI in traffic management.
  • Pros and cons of autonomous vehicles.
  • Hyperloop: An ambitious vision of the future?
  • Drones in goods delivery: Efficiency vs. privacy.
  • Technology's role in reducing aviation accidents.
  • Challenges in implementing smart highways.
  • The implications of blockchain in logistics.
  • Could vertical takeoff and landing (VTOL) vehicles solve traffic problems?
  • Impact of GPS technology on transportation.
  • How has technology influenced public transit systems?
  • Role of 5G in future transportation.
  • Ethical concerns over self-driving cars.
  • Technology in maritime safety: Progress and hurdles.
  • The evolution of bicycle technology: From spokes to e-bikes.

Technology Research Paper Topics on Education

The intersection of technology and education is an exciting frontier with limitless possibilities. From online learning to interactive classrooms, you can explore various technology paper topics about education:

  • How does e-learning affect student engagement?
  • VR classrooms: A glimpse into the future?
  • Can AI tutors revolutionize personalized learning?
  • Digital textbooks versus traditional textbooks: A comparison.
  • Gamification in education: Innovation or distraction?
  • The impact of technology on special education.
  • How are Massive Open Online Courses (MOOCs) reshaping higher education?
  • The role of technology in inclusive education.
  • Cybersecurity in schools: Measures and challenges.
  • The potential of Augmented Reality (AR) in classroom learning.
  • How is technology influencing homeschooling trends?
  • Balancing technology and traditional methods in early childhood education.
  • Risks and benefits of student data tracking.
  • Can coding be the new literacy in the 21st century?
  • The influence of social media on academic performance.

>> Learn more: Education Research Paper Topics

Relationships and Technology Research Topics

In the digital age, technology also impacts our relationships. It has become an integral part of how we communicate, meet people, and sustain our connections. Discover some thought-provoking angles with these research paper topics about technology:

  • How do dating apps affect modern relationships?
  • The influence of social media on interpersonal communication.
  • Is technology enhancing or hindering long-distance relationships?
  • The psychology behind online dating: A study.
  • How do virtual reality environments impact social interaction?
  • Social media friendships: Genuine or superficial?
  • How does technology-mediated communication affect family dynamics?
  • The impact of technology on work-life balance.
  • The role of technology in sustaining long-term relationships.
  • How does the 'always connected' culture influence personal boundaries?
  • Cyberbullying and its effect on teenage relationships.
  • Can technology predict compatibility in relationships?
  • The effects of 'ghosting' in digital communication.
  • How technology assists in maintaining relationships among elderly populations.
  • Social media: A boon or bane for marital relationships?

Agriculture Technology Research Paper Topics

Modern agriculture is far from just tilling the soil and harvesting crops. Technology has made remarkable strides into the fields, innovating and improving agricultural processes. Take a glance at these technology research paper topic ideas:

  • Can drone technology transform crop monitoring?
  • Precision agriculture: Benefits and challenges.
  • Aquaponics and the future of sustainable farming.
  • How is artificial intelligence aiding in crop prediction?
  • Impact of blockchain technology in food traceability.
  • The role of IoT in smart farming.
  • Vertical farming : Is it a sustainable solution for urban food supply?
  • Innovations in irrigation technology for water conservation.
  • Automated farming: A boon or a threat to employment in agriculture?
  • How satellite imagery is improving crop disease detection.
  • Biotechnology in crop improvement: Pros and cons.
  • Nanotechnology in agriculture: Scope and limitations.
  • Role of robotics in livestock management.
  • Agricultural waste management through technology.
  • Is hydroponics the future of farming?

Technological Research Topics on Environment

Our planet is facing numerous environmental challenges, and technology may hold the key to solving many of these. With innovations ranging from renewable energy sources to waste management systems, the realm of technology offers a plethora of research angles. So, if you're curious about the intersection of technology and environment, this list of research topics is for you:

  • Innovations in waste management: A technology review.
  • The role of AI in predicting climate change impacts.
  • Renewable energy: Advancements in solar technology.
  • The impact of electric vehicles on carbon emissions.
  • Can smart agriculture help solve world hunger?
  • Role of technology in water purification and conservation.
  • The impact of IoT devices on energy consumption.
  • Technology solutions for oil spills.
  • Satellite technology in environmental monitoring.
  • Technological advances in forest conservation.
  • Green buildings: Sustainable construction technology.
  • Bioengineering: A solution to soil erosion?
  • Impact of nanotechnology on environmental conservation.
  • Ocean clean-up initiatives: Evaluating existing technology.
  • How can technology help in reducing air pollution?

>> View more: Environmental Science Research Topics

Energy & Power Technology Topics for Research Paper

Energy and power are two pivotal areas where technology is bringing unprecedented changes. You can investigate renewable energy sources or efficient power transmission. If you're excited about exploring the intricacies of energy and power advancements, here are some engaging technology topics for research papers:

  • Assessing the efficiency of wind energy technologies.
  • Power storage: Current and future technology.
  • Solar panel technology: Recent advancements and future predictions.
  • Can nuclear fusion be the answer to our energy crisis?
  • Smart grid technology: A revolution in power distribution.
  • Evaluating the impact of hydropower on ecosystems.
  • The role of AI in optimizing power consumption.
  • Biofuels vs. fossil fuels: A comparative study.
  • Electric vehicle charging infrastructure: Technological challenges and solutions.
  • Technology advancements in geothermal power.
  • How is IoT technology helping in energy conservation?
  • Harnessing wave and tidal energy: Technological possibilities.
  • Role of nanotechnology in improving solar cell efficiency.
  • Power transmission losses: Can technology provide a solution?
  • Assessing the future of coal technology in the era of renewable energy.

Research Topics about Technology in Finance

The finance sector has seen drastic changes with the rise of technology, which has revolutionized the way financial transactions are conducted and services are offered. Consider these research topics in technology applied in the finance sector:

  • Rise of cryptocurrency: An evaluation of Bitcoin's impact.
  • Algorithmic trading: How does it reshape financial markets?
  • Role of AI and machine learning in financial forecasting.
  • Technological challenges in implementing digital banking.
  • How is blockchain technology transforming financial services?
  • Cybersecurity risks in online banking: Identifying solutions.
  • FinTech startups: Disrupting traditional finance systems.
  • Role of technology in financial inclusion.
  • Assessing the impact of mobile wallets on the banking sector.
  • Automation in finance: Opportunities and threats.
  • Role of big data analytics in financial decision making.
  • AI-based robo-advisors vs. human financial advisors.
  • The future of insurance technology (InsurTech).
  • Can technology solve the issue of financial fraud?
  • Impact of regulatory technology (RegTech) in maintaining compliance.

>> More ideas: Finance Research Topics

War Technology Research Paper Topics

The nature of warfare has transformed significantly with the evolution of technology, shifting the battlegrounds from land, sea, and air to the realms of cyber and space. This transition opens up a range of topics to explore. Here are some research topics in the realm of war technology:

  • Drones in warfare: Ethical implications.
  • Cyber warfare: Assessing threats and defense strategies.
  • Autonomous weapons: A boon or a curse?
  • Implications of artificial intelligence in modern warfare.
  • Role of technology in intelligence gathering.
  • Satellite technology and its role in modern warfare.
  • The future of naval warfare: Autonomous ships and submarines.
  • Hypersonic weapons: Changing the dynamics of war.
  • Impact of nuclear technology in warfare.
  • Technology and warfare: Exploring the relationship.
  • Information warfare: The role of social media.
  • Space warfare: Future possibilities and implications.
  • Bio-warfare: Understanding technology's role in development and prevention.
  • Impact of virtual reality on military training.
  • War technology and international law: A critical examination.

Food Technology Topics for Research Papers

Food technology is a field that deals with the study of food production, preservation, and safety. It involves understanding how various techniques can be applied to increase shelf life and improve nutrition value of foods. Check out our collection of food technology research paper topic ideas:

  • Lab-grown meats: Sustainable solution or a mere hype?
  • How AI is enhancing food safety and quality?
  • Precision agriculture: Revolutionizing farming practices.
  • GMOs: Assessing benefits and potential risks.
  • Role of robotics in food manufacturing and packaging.
  • Smart kitchens: Streamlining cooking through technology.
  • Nanofood: Tiny technology, big impact.
  • Sustainable food systems: Role of technology.
  • Food traceability: Ensuring transparency and accountability.
  • Food delivery apps: Changing the face of dining out.
  • The rise of plant-based alternatives and their production technologies.
  • Virtual and augmented reality in culinary experiences.
  • Technology in mitigating food waste.
  • Innovations in food packaging: Impact on freshness and sustainability.
  • IoT in smart farming: Improving yield and reducing waste.

Entertainment Technology Topics

Entertainment technology is reinventing the ways we experience amusement. This industry is always presenting new angles for research and discussion, be it the rise of virtual reality in movies or the influence of streaming platforms on the music industry. Here's a list of unique research topics related to entertainment technology:

  • Impact of virtual reality on the movie industry.
  • Streaming platforms vs traditional media: A comparative study.
  • Technology in music: Evolution and future prospects.
  • eSports: Rise of a new form of entertainment.
  • Augmented reality in theme parks.
  • The transformation of theater with digital technology.
  • AI and film editing: Redefining the art.
  • The role of technology in the rise of independent cinema.
  • Podcasts: Revolutionizing radio with technology.
  • Immersive technologies in art exhibitions.
  • The influence of technology on fashion shows and design.
  • Livestreaming concerts: A new norm in the music industry?
  • Drones in entertainment: Applications and ethics.
  • Social media as an entertainment platform.
  • The transformation of journalism in the era of digital entertainment.

Technology Research Questions

As we navigate the ever-changing landscape of technology, numerous intriguing questions arise. Below, we present new research questions about technology that can fuel your intellectual pursuit.

  • What potential does quantum computing hold for resolving complex problems?
  • How will advancements in AI impact job security across different sectors?
  • In what ways can blockchain technology reform the existing financial systems?
  • How is nanotechnology revolutionizing the field of medicine?
  • What are the ethical implications surrounding the use of facial recognition technology?
  • How will the introduction of 6G change our communication patterns?
  • In what ways is green technology contributing to sustainable development?
  • Can virtual reality transform the way we approach education?
  • How are biometrics enhancing the security measures in today's digital world?
  • How is space technology influencing our understanding of the universe?
  • What role can technology play in solving the global water crisis?
  • How can technology be leveraged to combat climate change effectively?
  • How is technology transforming the landscape of modern agriculture?
  • Can technological advancements lead to a fully renewable energy-dependent world?
  • How does technology influence the dynamics of modern warfare?

Bottom Line on Research Topics in Technology

Technology is a rapidly evolving field, and there's always something new to explore. Whether you're writing for the computer sciences, information technology or food technology realm, there are endless ideas that you can research on. Pick one of these technology research paper topics and jumpstart your project.

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Top 300+ Ideas For Research Paper Topics in 2024

Updated 28 Aug 2024

research paper topics

Some say the most difficult part of writing a text – is to start. But topic selection even precedes this starting point. This activity takes off a lot of time, and sometimes, imagination just doesn’t work in your favor. That’s where our list of best research paper topics will be useful.

Our  research paper writing service collected the most unhacked and powerful ideas to turn the average piece of writing into a research paper. Discover  what is a research paper and how to choose suitable and interesting research topics with our help. 

Writing a research topic on your own requires either producing one from scratch (based on your interests and goals and, potentially, on some brainstorming) or getting inspiration from a number of sources, like preassembled topic lists, course material, teachers, real-life, news headlines, published research in the respective field, etc.

What are the 3 Types of Research Questions?

Before formulating your research questions ideas, note that there are 3 important types of research questions:

Descriptive – these employ careful and comprehensive observation of a phenomenon/ event, subject, trait, etc. in order to characterize it in detail and to reveal important/ interesting/ undescribed aspects or patterns potentially.

Causal – these investigate whether altering some variables leads to changes in other variables, suggesting a causal relationship.

Comparative – these look into similarities and differences between two or more entities.

What is a Good Research Paper Topic?

Good research paper topics are characterized by several features that make them suitable for engaging and successful research papers. Features that tend to characterize good research questions are as follows:

specific and concrete – investigation goals and (expected results) have to be clear and focused

original – investigating aspects/ entities/ relationships that have not been researched before

highly important /impactful for the community/ society/ a professional field.

highly relevant for potential readers/ reviewers

trending – emerging disciplines/ topics spark more interest due to their novelty and yet unexplored potential

Choosing an appropriate topic influences various components of the research process, including the research question and methodology, ultimately affecting the quality and relevance of the findings.

College Research Paper Topics

  • The bias in the selection of the college internships and scholarships
  • The problems of reverse discrimination in post-college employment
  • Should multicultural education concepts be implemented at a greater depth?
  • The drug and alcohol abuse on college campuses
  • Does social media help students to find appropriate information and learn?
  • The psychological disorders and the support groups in modern colleges
  • Should people with ADHD and Autism be separated from the other students?
  • The art of college political campaigns
  • Pros and cons of religious colleges
  • Should college athletes be paid and provided with additional advantages?
  • The Influence of Social Media on College Students' Academic Performance and Well-being
  • Evaluating the Effectiveness of Online Learning Platforms in Higher Education
  • The Role of College Education in Fostering Entrepreneurial Skills
  • The Impact of Student Loan Debt on Career Choices Among Graduates
  • Analyzing the Shift in College Admissions Criteria in the Post-COVID Era

Health Research Paper Topics

  • The challenges of deafness and communication difficulties among special needs students
  • The concept of global health security
  • The ways to decrease household air pollution
  • How the information about infectious diseases is distributed online
  • Should people be allowed to know more about climate change issues?
  • The privacy factor and the personal health issues
  • The role of fitness ads in exercising practices
  • The healthy food standards are not always unbiased
  • The role of social media in the medical care system
  • The psychological aspect in the perception of allergies
  • The Long-term Effects of COVID-19 on Respiratory Health
  • Mental Health Outcomes of Prolonged Social Media Use Among Adolescents
  • The Efficacy of Plant-based Diets in Preventing Chronic Diseases
  • The Role of Telemedicine in Improving Accessibility to Healthcare
  • Analyzing the Impact of Sleep Quality on Daily Cognitive Functioning

Research Paper Topics on Medicine

  • Is life-sustaining therapy needed when it’s futile?
  • The role of placebo treatment
  • How to avoid animal testing?
  • Pros and contras of medical marijuana
  • Is being a vegetarian useful for child’s health?
  • How obesity affects our health?
  • Vaccines for kids: their usefulness or damage
  • Should prescription drugs be advertised directly to consumers?
  • Do doctors turn their patients into drug addicts?
  • Advancements in Gene Editing: Ethical Implications and Future Prospects
  • The Role of Artificial Intelligence in Diagnostic Medicine
  • Personalized Medicine: Tailoring Drug Therapies to Genetic Profiles
  • The Impact of Microbiome Diversity on Human Health
  • Stem Cell Therapy: Current Applications and Ethical Considerations
  • The Challenges and Successes of Vaccine Development in the 21st Century

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Education Research Paper Topics

  • How can standardized tests improve education?
  • Does college graduates make more money?
  • Should education be cheaper?
  • How will modern technologies change the way of teaching in the future?
  • The creation of particular learning methods for blind children
  • Social networking and school
  • Metal detectors at schools
  • The effects of contemporary teaching methods
  • The role of technology in lesson planning
  • How to manage bullies and take actions against bullying at education institutions?
  • The Effects of Bilingual Education on Cognitive Development in Children
  • Evaluating the Long-term Impact of Early Childhood Education Programs
  • The Role of Technology in Enhancing Special Education
  • Standardized Testing: Measuring Intelligence or Memorization?
  • The Influence of Teacher-Student Relationships on Academic Achievement
Read also: 150+ Best Sociology Research Topics

Environmental Research Paper Topics

  • How to reduce global warming?
  • How to stop wasting paper and save trees?
  • Can overpopulation be managed?
  • Should more films about environmental issues be produced?
  • Human impacts on forests
  • Underground effects of earthquakes
  • How to elaborate the optimal adaptation of buildings threatened by hurricanes?
  • Is it possible to predict hurricane impacts?
  • Is nuclear power safe for humans?
  • How dangerous is GMO food?
  • Assessing the Impact of Urban Sprawl on Local Ecosystems
  • The Effectiveness of Plastic Ban Policies on Ocean Health
  • Carbon Capture Technology: Viability and Potential in Mitigating Climate Change
  • The Role of Indigenous Knowledge in Biodiversity Conservation
  • Analyzing the Environmental Consequences of Fast Fashion

Research Topics on Entertainment and Sport

  • Are social networks good for our society?
  • Do violent video games make kids angry and cruel?
  • Is it necessary to forbid using animals for entertainment?
  • Do beauty contests set the non-achievable beauty standards?
  • Are newspapers going to be replaced by online sources of information?
  • How gaming consoles influence the youth?
  • Should women be allowed to compete against men?
  • What television programs should be banned?
  • How tv shows impose fake moral standards?
  • Can the use of social media, such as Facebook, lower teens’ self-esteem?
  • The Psychological Impact of Competitive Sports on Young Athletes
  • The Influence of Celebrity Endorsements on Consumer Behavior
  • E-Sports: The Rise of Competitive Gaming and Its Recognition as a Legitimate Sport
  • The Role of Sports in Promoting Intercultural Dialogue and Understanding
  • The Economic Impact of Major Sporting Events on Host Cities

Research Paper Topics on Media and Communication

  • Should the media programming of ads aimed at children be made illegal?
  • The role of mediation in the media
  • Should bloggers be considered as journalists?
  • The ethical side of modern news reports
  • The freedom of speech online
  • The copyright law restrictions and the vague concepts
  • The importance of psychology and communicative skills in journalism
  • The role of gender in interpersonal communication
  • The modern standards of nonverbal communication
  • The negative influence of Instagram and body image distortion
  • The Evolution of News Consumption: Impact of Social Media on Traditional Media
  • The Role of Media in Shaping Public Opinion During Political Campaigns
  • The Ethics of Surveillance and Privacy in Digital Communication
  • The Effects of Smartphone Usage on Face-to-Face Communication Skills
  • Virtual Reality: The Future of Immersive Journalism

Research Paper Topics on Politics

  • Should the drinking age be lowered?
  • Should adults have the right to carry a concealed handgun?
  • More gun control laws should be enacted
  • How can the international community prevent Iran from developing nuclear weapons?
  • How can ethnic killings be stopped?
  • Current prospect for peace between Israel and the Palestinians
  • What world would be like without wars?
  • How to avoid workforce reduction?
  • Should the death penalty be allowed?
  • Is socialism possible?
  • The Influence of Social Media on Political Mobilization and Public Protests
  • Campaign Finance Reform: The Effects on Political Representation and Elections
  • The Role of Non-Governmental Organizations (NGOs) in Shaping Global Policy
  • The Impact of Populism on Traditional Political Party Systems
  • Cybersecurity in Elections: Protecting the Integrity of Democracy

Psychology Research Paper Topics

  • Is autism a disease or a development idiosyncrasy?
  • How to forecast and shape behavioral patterns?
  • How to manage child violence?
  • How to deal with a mental breakdown?
  • The impact of classical music on the work of the brain
  • How insomnia affects our health?
  • How bad dreams influence our mood?
  • Is stress really harmful?
  • How depression impacts the immune system?
  • Intellectually gifted people: how is it possible?
  • The Psychological Effects of Social Isolation in the Digital Age
  • Cognitive Behavioral Therapy vs. Mindfulness: Comparative Outcomes in Treating Anxiety
  • The Role of Resilience in Recovery from Trauma
  • The Impact of Parenting Styles on Child Personality Development
  • Neuroplasticity: How Learning and Experience Shape Brain Function

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Science & Technology Research Paper Ideas

  • How is light being used to treat cancer and other diseases?
  • What is the current evidence that Mars has had water and maybe life?
  • Can nanomedicine potentially extend the human lifespan?
  • What is the future of computing and artificial intelligence?
  • The role cryogenics may play in future
  • Can alternative energy effectively replace fossil fuels?
  • Is it beneficial for wild animals to have interactions with people?
  • What evidence do we have that CMB is the result of the big bang?
  • How will self-driving cars change the way people live?
  • Can using system like bitcoin help protect identity theft?
  • The Potential of CRISPR and Gene Therapy in Curing Genetic Diseases
  • Nanotechnology in Medicine: The Next Frontier for Drug Delivery Systems
  • The Role of Quantum Computing in the Future of Cybersecurity
  • The Ethical Implications of Humanoid Robots in Society
  • Renewable Energy Technologies: Assessing the Efficiency and Sustainability of Solar Power Solutions

Research Topics Ideas on Culture

  • A new comprehension of past events
  • The origin of racial discrimination
  • The roots of antisemitism
  • The impact of advertisements and commercials on modern art
  • The most remarkable cultural achievements of the 20th century and their influence on our society
  • Cultural revolutions throughout history
  • How pop culture trends influence youth?
  • Should pregnant celebrities be exposed on magazine’s covers?
  • Why was Greek cultural influence so important for the ancient Mediterranean world?
  • Why was the Victorian period a time of cultural change?
  • Cultural Impact on Climate Change Response: A Comparative Study
  • The Preservation of Folklore and Oral Traditions in the Digital Age
  • Cross-Cultural Communication: Overcoming Language and Ethical Barriers
  • The Influence of Globalization on Indigenous Cultures
  • Cultural Diplomacy and Its Role in International Relations

Research Paper Topics on Math

  • The influence of algorithms
  • Is it possible to build a winning monopoly strategy?
  • Why is 'x' the unknown?
  • How math changed the world?
  • What's the solution to the McDonald's math problem?
  • How do math geniuses understand extremely hard math concepts so quickly?
  • Should high school math contests be banned?
  • What is the relationship between music and math?
  • Are math formulas ever used in real life?
  • What are some of the most confusing math problems ever?
  • The Role of Mathematics in Cryptography and Cybersecurity
  • Mathematical Models in Predicting Pandemic Outcomes: A Case Study of COVID-19
  • The Application of Game Theory in Economic and Social Decision Making
  • Chaos Theory and Its Implications in Weather Forecasting and Climate Science
  • The Impact of Big Data on the Evolution of Statistical Methods and Theories

Research Paper Topics on Business

  • How do dirty business tactics work?
  • Can business be started without money?
  • Notorious business leaders
  • Entrepreneurship and family business
  • Ethical decision making in everyday work situations
  • What are the most effective strategies for promoting a small business?
  • Is it worth it to expand the business into a new region or country?
  • How to build a successful startup
  • The role of international business and sustainable development
  • The impact of climate change on international business strategies
  • Corporate Social Responsibility: Measuring the Impact on Business Performance
  • The Gig Economy: Challenges and Opportunities for the Modern Workforce
  • Innovative Business Models in the Age of Sustainable Development
  • The Influence of Organizational Culture on Employee Productivity and Satisfaction
  • The Role of Artificial Intelligence in Shaping Consumer Behavior and Marketing Strategies

Research Paper Topics For Middle School

  • Is going vegan the healthiest choice for you?
  • Is the greenhouse effect artificial or natural?
  • The causes, effects, and consequences of earthquakes
  • How much computer games can one play without getting addicted
  • Princess Diana and her dynasty
  • Why is competition so critical for humans?
  • How did poetry evolve?
  • Methods used by ancient sailors to navigate the globe
  • Gender roles in children’s books and cartoons
  • Who is the greatest general who has lived on the planet?
  • The Science Behind Video Games: How Gaming Affects Reflexes and Learning
  • The History and Cultural Significance of a Popular Holiday
  • The Impact of Recycling Programs in Schools
  • Animal Habitats: How Urban Development Affects Local Wildlife
  • The Role of Social Media in Modern Communication Among Teens

High School Research Paper Ideas

  • The ways to address drug addiction cases in high school
  • The physical vs digital communications
  • The body image and the K-Pop culture
  • The importance of school volunteering and social work
  • The changes to the academic process due to Covid-19
  • The legacy of the Trail of Tears
  • The role of motivation in becoming a better student
  • The role of books in print and the libraries
  • The ways to improve school safety
  • The role of parental involvement in school work
  • Exploring the Psychological Effects of Social Media on Teen Self-Esteem
  • The Physics of Sports: Analyzing the Science Behind Athletic Performance
  • Climate Change and Its Effects on Local Ecosystems
  • The Evolution of Language in the Digital Age
  • The Rise of Cryptocurrency: Economic Education and the Future of Money

History Research Paper Topics

  • What were the impacts of World War II on the rights of women?
  • What factors initiated the WWII
  • Is liberalism the most optimal solution?
  • What were the consequences of women suffrage movements
  • What was the impact of Martin Luther King’s protest against the Catholic church
  • What is the most effective military strategy of all time
  • How has Asian art influenced contemporary art
  • How have different monetary systems affected the development of humanity
  • What is the correlation between the Roman and Greek culture?
  • Aztec empire and its architecture
  • The Role of Women in World War II and Its Impact on Gender Roles
  • The Influence of the Silk Road on the Cultural Exchange between East and West
  • The Effects of the Cold War on Space Exploration Competition
  • The Historical Accuracy of Popular Historical Films: A Case Study
  • The Impact of the Printing Press on the Renaissance and European Society

Art Research Paper Ideas

  • The reasons why digital museums must be present and made available
  • The peculiarities of the Flemish artists
  • Should Japanese anime be considered as a separate art form?
  • The role of Photoshop and similar digital solutions in the perception of modern art
  • The history of photography and the artistic expression forms
  • The challenges of the modern artists during social distancing times
  • The Middle Eastern perception of color and the light
  • Ancient Rome's role in the creation of the sculptures
  • Should the artists be allowed to represent their works in public parks?
  • The importance of art education in middle schools
  • The Evolution of Street Art and Its Acceptance into Mainstream Art Culture
  • The Influence of Digital Media on Traditional Painting Techniques
  • The Role of Patronage in the Development of Renaissance Art
  • The Psychological Impact of Color in Abstract Art
  • Cultural Representation and Diversity in Modern Art Museums

Literature Research Paper Topics

  • The American dream literature
  • How does harry potter reflects the ideal of the time
  • Can you show a new aspect of prose based on the independent investigation
  • The prose of women suffrage movements
  • The dawn of literature on modern society
  • Why do authors use metaphors and similes
  • Evaluate and discuss the allegory of 2 random novels
  • What factors are helpful in allowing you to identify the genre of a novel you are reading
  • Is fanfiction considered an independent literature
  • Romance and sex in Renaissance
  • Fiction as an instrument of propaganda
  • The Representation of Gender Roles in Victorian Literature
  • Postcolonial Voices: How Literature Has Shaped National Identity
  • The Journey Motif in Classic American Road Novels
  • Dystopian Visions: What Modern Dystopian Literature Tells Us About Today's Society

Law Research Paper Topics

  • How is the Islamic law perceived around the globe
  • Is ECOLEX a pathway to environmental law
  • Why is it critical to learn the GATT documents?
  • What does the European patent office do?
  • Mass communication law
  • Impact of women’s authority in different countries on the planet
  • Evaluate the effectiveness of the international criminal law court tools
  • Detailed analysis and report of the comparative criminal procedure
  • Exciting outtakes from the inter-American human rights library
  • Does the US copyright office really help writers defend their businesses?
  • The Impact of International Law on Human Rights Practices in Developing Countries
  • Cyber Law: The Challenges of Regulating Online Behavior and Privacy
  • Intellectual Property Rights in the Digital Age: Balancing Innovation and Protection
  • The Effectiveness of Rehabilitation in Juvenile Justice Systems
  • Comparative Analysis of Gun Control Legislation and Its Impact on Violent Crime Rates

Religion Research Paper Topics

  • The Role of Religion in Modern Secular Societies
  • Interfaith Dialogue: Benefits and Challenges in a Pluralistic Society
  • The Influence of Religious Beliefs on Ethical Decision-Making in Business
  • Religion and Politics: An Analysis of Their Intersections in Contemporary World Affairs
  • The Impact of Religious Education on Tolerance and Cultural Understanding
  • The Evolution of Religious Practices and Their Adaptation in the Digital Age
  • The Psychological Effects of Religious Rituals and Traditions
  • Comparative Study of Creation Myths Across Different Cultures
  • The Role of Women in Organized Religions: A Historical Perspective
  • Secularization: The Decline of Religious Influence in Western Societies
  • Religious Extremism: Understanding the Causes and Seeking Solutions
  • The Impact of Pilgrimage on Religious and Spiritual Life
  • Religious Symbols in Public Spaces: Freedom of Expression or a Call for Regulation?
  • The Relationship Between Religion and Morality in Contemporary Ethical Debates
  • The Effects of Globalization on Indigenous Religions and Spiritual Practices

Argumentative Research Paper Topics

  • Should education be made free for everyone?
  • The influencers and bloggers cannot be considered as a job
  • The role of military service is the way towards maturity
  • Should Internet access be limited during college lectures?
  • The death penalty service is not an ethical solution
  • Fashion industry creates a bad influence on young people
  • The Fairplay concept should be rewarded financially
  • Should tobacco be made illegal indoors?
  • Religious differences often become the cause of wars
  • The majority of mobile applications represent the invasion of privacy
  • Universal Basic Income: Economic Savior or Road to Dependency?
  • Mandatory Vaccinations: Public Health Requirement or Personal Choice Infringement?
  • The Death Penalty: A Necessary Deterrent or a Violation of Human Rights?
  • Climate Change Policies: Economic Hindrance or Long-term Investment?
  • Animal Testing in Medical Research: Ethical Consideration or Scientific Necessity?

These are the 200+ topics on various subjects, which you might find useful when creating your own. In case you need help aside from creating topics, you can also order the original research on Politics, Media & Communication, to do my Math homework , Law, and even Nursing papers for sale on nursing essay writing service Edubirdie.

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How to Choose a Good Research Paper Topic?

While it may seem challenging to come up with a good research paper topic as you try your best to narrow things down, the trick is to choose something that influences you because you know it well and can support your arguments with relevant evidence. When you write a research paper, the subject should be well-structured and relevant to your thesis statement. Always take time to research the list of sources to compose your topic sentences as well to make them relate to your thesis part. It’s always best to check a good research paper introduction example before you start working on the paper and choosing your topic, or contact our essay writing service for help. Conducting preliminary research is essential at this stage to gauge the availability of information and the feasibility of potential topics. Here are the steps to consider:

Start With Observing Your Interests.

If you are confused with a variety of interesting topics for writing a creative essay, it’s better to decide what interests you the most. Don’t stick to easy research paper topics just to complete the task fast. If you are allowed to freely choose what to write an essay about, use the opportunity to create something unique. Write down the list of your interests and break down every idea into small certain topics. When you have a list in front of your eyes, it will be easier to make up your mind and start considering a particular issue.

Then you should examine what aspect of the topic is preferable for you to outline in your research paper. A list will save you here again. Use pros/cons template to include all the arguments and objections to the issues.

Come Up With an Argumentative Research Question.

The most challenging part of choosing a competitive research paper topic is finding an aspect that poses some importance for your course and the subject per se. While it may seem that it is sufficient to make a general statement, your argumentation should include a clear research question. Consider asking yourself why you have chosen a particular topic and how your research will make it clearer or provide innovative solutions.

Study Available Research Topic Ideas.

Since we have already mentioned the dangers of choosing something too broad, it is vital to narrow things down and brainstorm the list of possible research paper ideas that deal with the same subject. In other words, you can write down at least five different subjects and see whether you can find sufficient information to support them with the sources or statistical data. Remember the importance of your topic’s wording!

Compose Strong Thesis Statement.

It must be done at the same time as you choose your research paper topic because these two concepts must be interconnected. Engaging with the writing process, including refining the topic, conducting thorough research, and developing a strong thesis statement, directly influences the overall effectiveness and enjoyment of crafting academic work. Make sure that you have the list of sources prepared in advance to incorporate relevant information in your body paragraphs. As always, they must be the supporting evidence for your thesis statement’s idea and the research purpose.

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Written by David Kidwell

David is one of those experienced content creators from the United Kingdom who has a high interest in social issues, culture, and entrepreneurship. He always says that reading, blogging, and staying aware of what happens in the world is what makes a person responsible. He likes to learn and share what he knows by making things inspiring and creative enough even for those students who dislike reading.

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Computer Technology Research Paper Topics

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This list of computer technology research paper topics  provides the list of 33 potential topics for research papers and an overview article on the history of computer technology.

1. Analog Computers

Paralleling the split between analog and digital computers, in the 1950s the term analog computer was a posteriori projected onto pre-existing classes of mechanical, electrical, and electromechanical computing artifacts, subsuming them under the same category. The concept of analog, like the technical demarcation between analog and digital computer, was absent from the vocabulary of those classifying artifacts for the 1914 Edinburgh Exhibition, the first world’s fair emphasizing computing technology, and this leaves us with an invaluable index of the impressive number of classes of computing artifacts amassed during the few centuries of capitalist modernity. True, from the debate between ‘‘smooth’’ and ‘‘lumpy’’ artificial lines of computing (1910s) to the differentiation between ‘‘continuous’’ and ‘‘cyclic’’ computers (1940s), the subsequent analog–digital split became possible by the multitudinous accumulation of attempts to decontextualize the computer from its socio-historical use alternately to define the ideal computer technically. The fact is, however, that influential classifications of computing technology from the previous decades never provided an encompassing demarcation compared to the analog– digital distinction used since the 1950s. Historians of the digital computer find that the experience of working with software was much closer to art than science, a process that was resistant to mass production; historians of the analog computer find this to have been typical of working with the analog computer throughout all its aspects. The historiography of the progress of digital computing invites us to turn to the software crisis, which perhaps not accidentally, surfaced when the crisis caused by the analog ended. Noticeably, it was not until the process of computing with a digital electronic computer became sufficiently visual by the addition of a special interface—to substitute for the loss of visualization that was previously provided by the analog computer—that the analog computer finally disappeared.

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Get 10% off with 24start discount code, 2. artificial intelligence.

Artificial intelligence (AI) is the field of software engineering that builds computer systems and occasionally robots to perform tasks that require intelligence. The term ‘‘artificial intelligence’’ was coined by John McCarthy in 1958, then a graduate student at Princeton, at a summer workshop held at Dartmouth in 1956. This two-month workshop marks the official birth of AI, which brought together young researchers who would nurture the field as it grew over the next several decades: Marvin Minsky, Claude Shannon, Arthur Samuel, Ray Solomonoff, Oliver Selfridge, Allen Newell, and Herbert Simon. It would be difficult to argue that the technologies derived from AI research had a profound effect on our way of life by the beginning of the 21st century. However, AI technologies have been successfully applied in many industrial settings, medicine and health care, and video games. Programming techniques developed in AI research were incorporated into more widespread programming practices, such as high-level programming languages and time-sharing operating systems. While AI did not succeed in constructing a computer which displays the general mental capabilities of a typical human, such as the HAL computer in Arthur C. Clarke and Stanley Kubrick’s film 2001: A Space Odyssey, it has produced programs that perform some apparently intelligent tasks, often at a much greater level of skill and reliability than humans. More than this, AI has provided a powerful and defining image of what computer technology might someday be capable of achieving.

3. Computer and Video Games

Interactive computer and video games were first developed in laboratories as the late-night amusements of computer programmers or independent projects of television engineers. Their formats include computer software; networked, multiplayer games on time-shared systems or servers; arcade consoles; home consoles connected to television sets; and handheld game machines. The first experimental projects grew out of early work in computer graphics, artificial intelligence, television technology, hardware and software interface development, computer-aided education, and microelectronics. Important examples were Willy Higinbotham’s oscilloscope-based ‘‘Tennis for Two’’ at the Brookhaven National Laboratory (1958); ‘‘Spacewar!,’’ by Steve Russell, Alan Kotok, J. Martin Graetz and others at the Massachusetts Institute of Technology (1962); Ralph Baer’s television-based tennis game for Sanders Associates (1966); several networked games from the PLATO (Programmed Logic for Automatic Teaching Operations) Project at the University of Illinois during the early 1970s; and ‘‘Adventure,’’ by Will Crowther of Bolt, Beranek & Newman (1972), extended by Don Woods at Stanford University’s Artificial Intelligence Laboratory (1976). The main lines of development during the 1970s and early 1980s were home video consoles, coin-operated arcade games, and computer software.

4. Computer Displays

The display is an essential part of any general-purpose computer. Its function is to act as an output device to communicate data to humans using the highest bandwidth input system that humans possess—the eyes. Much of the development of computer displays has been about trying to get closer to the limits of human visual perception in terms of color and spatial resolution. Mainframe and minicomputers used ‘‘terminals’’ to display the output. These were fed data from the host computer and processed the data to create screen images using a graphics processor. The display was typically integrated with a keyboard system and some communication hardware as a terminal or video display unit (VDU) following the basic model used for teletypes. Personal computers (PCs) in the late 1970s and early 1980s changed this model by integrating the graphics controller into the computer chassis itself. Early PC displays typically displayed only monochrome text and communicated in character codes such as ASCII. Line-scanning frequencies were typically from 15 to 20 kilohertz—similar to television. CRT displays rapidly developed after the introduction of video graphics array (VGA) technology (640 by 480 pixels in16 colors) in the mid-1980s and scan frequencies rose to 60 kilohertz or more for mainstream displays; 100 kilohertz or more for high-end displays. These displays were capable of displaying formats up to 2048 by 1536 pixels with high color depths. Because the human eye is very quick to respond to visual stimulation, developments in display technology have tended to track the development of semiconductor technology that allows the rapid manipulation of the stored image.

5. Computer Memory for Personal Computers

During the second half of the twentieth century, the two primary methods used for the long-term storage of digital information were magnetic and optical recording. These methods were selected primarily on the basis of cost. Compared to core or transistorized random-access memory (RAM), storage costs for magnetic and optical media were several orders of magnitude cheaper per bit of information and were not volatile; that is, the information did not vanish when electrical power was turned off. However, access to information stored on magnetic and optical recorders was much slower compared to RAM memory. As a result, computer designers used a mix of both types of memory to accomplish computational tasks. Designers of magnetic and optical storage systems have sought meanwhile to increase the speed of access to stored information to increase the overall performance of computer systems, since most digital information is stored magnetically or optically for reasons of cost.

6. Computer Modeling

Computer simulation models have transformed the natural, engineering, and social sciences, becoming crucial tools for disciplines as diverse as ecology, epidemiology, economics, urban planning, aerospace engineering, meteorology, and military operations. Computer models help researchers study systems of extreme complexity, predict the behavior of natural phenomena, and examine the effects of human interventions in natural processes. Engineers use models to design everything from jets and nuclear-waste repositories to diapers and golf clubs. Models enable astrophysicists to simulate supernovas, biochemists to replicate protein folding, geologists to predict volcanic eruptions, and physiologists to identify populations at risk of lead poisoning. Clearly, computer models provide a powerful means of solving problems, both theoretical and applied.

7. Computer Networks

Computers and computer networks have changed the way we do almost everything—the way we teach, learn, do research, access or share information, communicate with each other, and even the way we entertain ourselves. A computer network, in simple terms, consists of two or more computing devices (often called nodes) interconnected by means of some medium capable of transmitting data that allows the computers to communicate with each other in order to provide a variety of services to users.

8. Computer Science

Computer science occupies a unique position among the scientific and technical disciplines. It revolves around a specific artifact—the electronic digital computer—that touches upon a broad and diverse set of fields in its design, operation, and application. As a result, computer science represents a synthesis and extension of many different areas of mathematics, science, engineering, and business.

9. Computer-Aided Control Technology

The story of computer-aided control technology is inextricably entwined with the modern history of automation. Automation in the first half of the twentieth century involved (often analog) processes for continuous automatic measurement and control of hardware by hydraulic, mechanical, or electromechanical means. These processes facilitated the development and refinement of battlefield fire-control systems, feedback amplifiers for use in telephony, electrical grid simulators, numerically controlled milling machines, and dozens of other innovations.

10. Computer-Aided Design and Manufacture

Computer-aided design and manufacture, known by the acronym CAD/CAM, is a process for manufacturing mechanical components, wherein computers are used to link the information needed in and produced by the design process to the information needed to control the machine tools that produce the parts. However, CAD/CAM actually constitutes two separate technologies that developed along similar, but unrelated, lines until they were combined in the 1970s.

11. Computer-User Interface

A computer interface is the point of contact between a person and an electronic computer. Today’s interfaces include a keyboard, mouse, and display screen. Computer user interfaces developed through three distinct stages, which can be identified as batch processing, interactive computing, and the graphical user interface (GUI). Today’s graphical interfaces support additional multimedia features, such as streaming audio and video. In GUI design, every new software feature introduces more icons into the process of computer– user interaction. Presently, the large vocabulary of icons used in GUI design is difficult for users to remember, which creates a complexity problem. As GUIs become more complex, interface designers are adding voice recognition and intelligent agent technologies to make computer user interfaces even easier to operate.

12. Early Computer Memory

Mechanisms to store information were present in early mechanical calculating machines, going back to Charles Babbage’s analytical engine proposed in the 1830s. It introduced the concept of the ‘‘store’’ and, if ever built, would have held 1000 numbers of up to 50 decimal digits. However, the move toward base-2 or binary computing in the 1930s brought about a new paradigm in technology—the digital computer, whose most elementary component was an on–off switch. Information on a digital system is represented using a combination of on and off signals, stored as binary digits (shortened to bits): zeros and ones. Text characters, symbols, or numerical values can all be coded as bits, so that information stored in digital memory is just zeros and ones, regardless of the storage medium. The history of computer memory is closely linked to the history of computers but a distinction should be made between primary (or main) and secondary memory. Computers only need operate on one segment of data at a time, and with memory being a scarce resource, the rest of the data set could be stored in less expensive and more abundant secondary memory.

13. Early Digital Computers

Digital computers were a marked departure from the electrical and mechanical calculating and computing machines in wide use from the early twentieth century. The innovation was of information being represented using only two states (on or off), which came to be known as ‘‘digital.’’ Binary (base 2) arithmetic and logic provided the tools for these machines to perform useful functions. George Boole’s binary system of algebra allowed any mathematical equation to be represented by simply true or false logic statements. By using only two states, engineering was also greatly simplified, and universality and accuracy increased. Further developments from the early purpose-built machines, to ones that were programmable accompanied by many key technological developments, resulted in the well-known success and proliferation of the digital computer.

14. Electronic Control Technology

The advancement of electrical engineering in the twentieth century made a fundamental change in control technology. New electronic devices including vacuum tubes (valves) and transistors were used to replace electromechanical elements in conventional controllers and to develop new types of controllers. In these practices, engineers discovered basic principles of control theory that could be further applied to design electronic control systems.

15. Encryption and Code Breaking

The word cryptography comes from the Greek words for ‘‘hidden’’ (kryptos) and ‘‘to write’’ (graphein)—literally, the science of ‘‘hidden writing.’’ In the twentieth century, cryptography became fundamental to information technology (IT) security generally. Before the invention of the digital computer at mid-century, national governments across the world relied on mechanical and electromechanical cryptanalytic devices to protect their own national secrets and communications, as well as to expose enemy secrets. Code breaking played an important role in both World Wars I and II, and the successful exploits of Polish and British cryptographers and signals intelligence experts in breaking the code of the German Enigma ciphering machine (which had a range of possible transformations between a message and its code of approximately 150 trillion (or 150 million million million) are well documented.

16. Error Checking and Correction

In telecommunications, whether transmission of data or voice signals is over copper, fiber-optic, or wireless links, information coded in the signal transmitted must be decoded by the receiver from a background of noise. Signal errors can be introduced, for example from physical defects in the transmission medium (semiconductor crystal defects, dust or scratches on magnetic memory, bubbles in optical fibers), from electromagnetic interference (natural or manmade) or cosmic rays, or from cross-talk (unwanted coupling) between channels. In digital signal transmission, data is transmitted as ‘‘bits’’ (ones or zeros, corresponding to on or off in electronic circuits). Random bit errors occur singly and in no relation to each other. Burst error is a large, sustained error or loss of data, perhaps caused by transmission problems in the connecting cables, or sudden noise. Analog to digital conversion can also introduce sampling errors.

17. Global Positioning System (GPS)

The NAVSTAR (NAVigation System Timing And Ranging) Global Positioning System (GPS) provides an unlimited number of military and civilian users worldwide with continuous, highly accurate data on their position in four dimensions— latitude, longitude, altitude, and time— through all weather conditions. It includes space, control, and user segments (Figure 6). A constellation of 24 satellites in 10,900 nautical miles, nearly circular orbits—six orbital planes, equally spaced 60 degrees apart, inclined approximately 55 degrees relative to the equator, and each with four equidistant satellites—transmits microwave signals in two different L-band frequencies. From any point on earth, between five and eight satellites are ‘‘visible’’ to the user. Synchronized, extremely precise atomic clocks—rubidium and cesium— aboard the satellites render the constellation semiautonomous by alleviating the need to continuously control the satellites from the ground. The control segment consists of a master facility at Schriever Air Force Base, Colorado, and a global network of automated stations. It passively tracks the entire constellation and, via an S-band uplink, periodically sends updated orbital and clock data to each satellite to ensure that navigation signals received by users remain accurate. Finally, GPS users—on land, at sea, in the air or space—rely on commercially produced receivers to convert satellite signals into position, time, and velocity estimates.

18. Gyrocompass and Inertial Guidance

Before the twentieth century, navigation at sea employed two complementary methods, astronomical and dead reckoning. The former involved direct measurements of celestial phenomena to ascertain position, while the latter required continuous monitoring of a ship’s course, speed, and distance run. New navigational technology was required not only for iron ships in which traditional compasses required correction, but for aircraft and submarines in which magnetic compasses cannot be used. Owing to their rapid motion, aircraft presented challenges for near instantaneous navigation data collection and reduction. Electronics furnished the exploitation of radio and the adaptation of a gyroscope to direction finding through the invention of the nonmagnetic gyrocompass.

Although the Cold War arms race after World War II led to the development of inertial navigation, German manufacture of the V-2 rocket under the direction of Wernher von Braun during the war involved a proto-inertial system, a two-gimballed gyro with an integrator to determine speed. Inertial guidance combines a gyrocompass with accelerometers installed along orthogonal axes, devices that record all accelerations of the vehicle in which inertial guidance has been installed. With this system, if the initial position of the vehicle is known, then the vehicle’s position at any moment is known because integrators record all directions and accelerations and calculate speeds and distance run. Inertial guidance devices can subtract accelerations due to gravity or other motions of the vehicle. Because inertial guidance does not depend on an outside reference, it is the ultimate dead reckoning system, ideal for the nuclear submarines for which they were invented and for ballistic missiles. Their self-contained nature makes them resistant to electronic countermeasures. Inertial systems were first installed in commercial aircraft during the 1960s. The expense of manufacturing inertial guidance mechanisms (and their necessary management by computer) has limited their application largely to military and some commercial purposes. Inertial systems accumulate errors, so their use at sea (except for submarines) has been as an adjunct to other navigational methods, unlike aircraft applications. Only the development of the global positioning system (GPS) at the end of the century promised to render all previous navigational technologies obsolete. Nevertheless, a range of technologies, some dating to the beginning of the century, remain in use in a variety of commercial and leisure applications.

19. Hybrid Computers

Following the emergence of the analog–digital demarcation in the late 1940s—and the ensuing battle between a speedy analog versus the accurate digital—the term ‘‘hybrid computer’’ surfaced in the early 1960s. The assumptions held by the adherents of the digital computer—regarding the dynamic mechanization of computational labor to accompany the equally dynamic increase in computational work—was becoming a universal ideology. From this perspective, the digital computer justly appeared to be technically superior. In introducing the digital computer to social realities, however, extensive interaction with the experienced analog computer adherents proved indispensable, especially given that the digital proponents’ expectation of progress by employing the available and inexpensive hardware was stymied by the lack of inexpensive software. From this perspective—as historiographically unwanted it may be by those who agree with the essentialist conception of the analog–digital demarcation—the history of the hybrid computer suggests that the computer as we now know it was brought about by linking the analog and the digital, not by separating them. Placing the ideal analog and the ideal digital at the two poles, all computing techniques that combined some features of both fell beneath ‘‘hybrid computation’’; the designators ‘‘balanced’’ or ‘‘true’’ were preserved for those built with appreciable amounts of both. True hybrids fell into the middle spectrum that included: pure analog computers, analog computers using digital-type numerical analysis techniques, analog computers programmed with the aid of digital computers, analog computers using digital control and logic, analog computers using digital subunits, analog computers using digital computers as peripheral equipment, balanced hybrid computer systems, digital computers using analog subroutines, digital computers with analog arithmetic elements, digital computers designed to permit analog-type programming, digital computers with analog-oriented compilers and interpreters, and pure digital computers.

20. Information Theory

Information theory, also known originally as the mathematical theory of communication, was first explicitly formulated during the mid-twentieth century. Almost immediately it became a foundation; first, for the more systematic design and utilization of numerous telecommunication and information technologies; and second, for resolving a paradox in thermodynamics. Finally, information theory has contributed to new interpretations of a wide range of biological and cultural phenomena, from organic physiology and genetics to cognitive behavior, human language, economics, and political decision making. Reflecting the symbiosis between theory and practice typical of twentieth century technology, technical issues in early telegraphy and telephony gave rise to a proto-information theory developed by Harry Nyquist at Bell Labs in 1924 and Ralph Hartley, also at Bell Labs, in 1928. This theory in turn contributed to advances in telecommunications, which stimulated the development of information theory per se by Claude Shannon and Warren Weaver, in their book The Mathematical Theory of Communication published in 1949. As articulated by Claude Shannon, a Bell Labs researcher, the technical concept of information is defined by the probability of a specific message or signal being picked out from a number of possibilities and transmitted from A to B. Information in this sense is mathematically quantifiable. The amount of information, I, conveyed by signal, S, is inversely related to its probability, P. That is, the more improbable a message, the more information it contains. To facilitate the mathematical analysis of messages, the measure is conveniently defined as I ¼ log2 1/P(S), and is named a binary digit or ‘‘bit’’ for short. Thus in the simplest case of a two-state signal (1 or 0, corresponding to on or off in electronic circuits), with equal probability for each state, the transmission of either state as the code for a message would convey one bit of information. The theory of information opened up by this conceptual analysis has become the basis for constructing and analyzing digital computational devices and a whole range of information technologies (i.e., technologies including telecommunications and data processing), from telephones to computer networks.

21. Internet

The Internet is a global computer network of networks whose origins are found in U.S. military efforts. In response to Sputnik and the emerging space race, the Advanced Research Projects Agency (ARPA) was formed in 1958 as an agency of the Pentagon. The researchers at ARPA were given a generous mandate to develop innovative technologies such as communications.

In 1962, psychologist J.C.R. Licklider from the Massachusetts Institute of Technology’s Lincoln Laboratory joined ARPA to take charge of the Information Processing Techniques Office (IPTO). In 1963 Licklider wrote a memo proposing an interactive network allowing people to communicate via computer. This project did not materialize. In 1966, Bob Taylor, then head of the IPTO, noted that he needed three different computer terminals to connect to three different machines in different locations around the nation. Taylor also recognized that universities working with IPTO needed more computing resources. Instead of the government buying machines for each university, why not share machines? Taylor revitalized Licklider’s idea, securing $1 million in funding, and hired 29-yearold Larry Roberts to direct the creation of ARPAnet.

In 1974, Robert Kahn and Vincent Cerf proposed the first internet-working protocol, a way for datagrams (packets) to be communicated between disparate networks, and they called it an ‘‘internet.’’ Their efforts created transmission control protocol/internet protocol (TCP/IP). In 1982, TCP/IP replaced NCP on ARPAnet. Other networks adopted TCP/IP and it became the dominant standard for all networking by the late 1990s.

In 1981 the U.S. National Science Foundation (NSF) created Computer Science Network (CSNET) to provide universities that did not have access to ARPAnet with their own network. In 1986, the NSF sponsored the NSFNET ‘‘backbone’’ to connect five supercomputing centers. The backbone also connected ARPAnet and CSNET together, and the idea of a network of networks became firmly entrenched. The open technical architecture of the Internet allowed numerous innovations to be grafted easily onto the whole. When ARPAnet was dismantled in 1990, the Internet was thriving at universities and technology- oriented companies. The NSF backbone was dismantled in 1995 when the NSF realized that commercial entities could keep the Internet running and growing on their own, without government subsidy. Commercial network providers worked through the Commercial Internet Exchange to manage network traffic.

22. Mainframe Computers

The term ‘‘computer’’ currently refers to a general-purpose, digital, electronic, stored-program calculating machine. The term ‘‘mainframe’’ refers to a large, expensive, multiuser computer, able to handle a wide range of applications. The term was derived from the main frame or cabinet in which the central processing unit (CPU) and main memory of a computer were kept separate from those cabinets that held peripheral devices used for input and output.

Computers are generally classified as supercomputers, mainframes, minicomputers, or microcomputers. This classification is based on factors such as processing capability, cost, and applications, with supercomputers the fastest and most expensive. All computers were called mainframes until the 1960s, including the first supercomputer, the naval ordnance research calculator (NORC), offered by International Business Machines (IBM) in 1954. In 1960, Digital Equipment Corporation (DEC) shipped the PDP-1, a computer that was much smaller and cheaper than a mainframe.

Mainframes once each filled a large room, cost millions of dollars, and needed a full maintenance staff, partly in order to repair the damage caused by the heat generated by their vacuum tubes. These machines were characterized by proprietary operating systems and connections through dumb terminals that had no local processing capabilities. As personal computers developed and began to approach mainframes in speed and processing power, however, mainframes have evolved to support a client/server relationship, and to interconnect with open standard-based systems. They have become particularly useful for systems that require reliability, security, and centralized control. Their ability to process large amounts of data quickly make them particularly valuable for storage area networks (SANs). Mainframes today contain multiple CPUs, providing additional speed through multiprocessing operations. They support many hundreds of simultaneously executing programs, as well as numerous input and output processors for multiplexing devices, such as video display terminals and disk drives. Many legacy systems, large applications that have been developed, tested, and used over time, are still running on mainframes.

23. Mineral Prospecting

Twentieth century mineral prospecting draws upon the accumulated knowledge of previous exploration and mining activities, advancing technology, expanding knowledge of geologic processes and deposit models, and mining and processing capabilities to determine where and how to look for minerals of interest. Geologic models have been developed for a wide variety of deposit types; the prospector compares geologic characteristics of potential exploration areas with those of deposit models to determine which areas have similar characteristics and are suitable prospecting locations. Mineral prospecting programs are often team efforts, integrating general and site-specific knowledge of geochemistry, geology, geophysics, and remote sensing to ‘‘discover’’ hidden mineral deposits and ‘‘measure’’ their economic potential with increasing accuracy and reduced environmental disturbance. Once a likely target zone has been identified, multiple exploration tools are used in a coordinated program to characterize the deposit and its economic potential.

24. Packet Switching

Historically the first communications networks were telegraphic—the electrical telegraph replacing the mechanical semaphore stations in the mid-nineteenth century. Telegraph networks were largely eclipsed by the advent of the voice (telephone) network, which first appeared in the late nineteenth century, and provided the immediacy of voice conversation. The Public Switched Telephone Network allows a subscriber to dial a connection to another subscriber, with the connection being a series of telephone lines connected together through switches at the telephone exchanges along the route. This technique is known as circuit switching, as a circuit is set up between the subscribers, and is held until the call is cleared.

One of the disadvantages of circuit switching is the fact that the capacity of the link is often significantly underused due to silences in the conversation, but the spare capacity cannot be shared with other traffic. Another disadvantage is the time it takes to establish the connection before the conversation can begin. One could liken this to sending a railway engine from London to Edinburgh to set the points before returning to pick up the carriages. What is required is a compromise between the immediacy of conversation on an established circuit-switched connection, with the ad hoc delivery of a store-and-forward message system. This is what packet switching is designed to provide.

25. Personal Computers

A personal computer, or PC, is designed for personal use. Its central processing unit (CPU) runs single-user systems and application software, processes input from the user, sending output to a variety of peripheral devices. Programs and data are stored in memory and attached storage devices. Personal computers are generally single-user desktop machines, but the term has been applied to any computer that ‘‘stands alone’’ for a single user, including portable computers.

The technology that enabled the construction of personal computers was the microprocessor, a programmable integrated circuit (or ‘‘chip’’) that acts as the CPU. Intel introduced the first microprocessor in 1971, the 4-bit 4004, which it called a ‘‘microprogrammable computer on a chip.’’ The 4004 was originally developed as a general-purpose chip for a programmable calculator, but Intel introduced it as part of Intel’s Microcomputer System 4-bit, or MCS-4, which also included read-only memory (ROM) and random-access memory (RAM) memory chips and a shift register chip. In August 1972, Intel followed with the 8-bit 8008, then the more powerful 8080 in June 1974. Following Intel’s lead, computers based on the 8080 were usually called microcomputers.

The success of the minicomputer during the 1960s prepared computer engineers and users for ‘‘single person, single CPU’’ computers. Digital Equipment Corporation’s (DEC) widely used PDP-10, for example, was smaller, cheaper, and more accessible than large mainframe computers. Timeshared computers operating under operating systems such as TOPS-10 on the PDP-10— co-developed by the Massachusetts Institute of Technology (MIT) and DEC in 1972—created the illusion of individual control of computing power by providing rapid access to personal programs and files. By the early 1970s, the accessibility of minicomputers, advances in microelectronics, and component miniaturization created expectations of affordable personal computers.

26. Printers

Printers generally can be categorized as either impact or nonimpact. Like typewriters, impact printers generate output by striking the page with a solid substance. Impact printers include daisy wheel and dot matrix printers. The daisy wheel printer, which was introduced in 1972 by Diablo Systems, operates by spinning the daisy wheel to the correct character whereupon a hammer strikes it, forcing the character through an inked ribbon and onto the paper. Dot matrix printers operate by using a series of small pins to strike a matrix or grid ribbon coated with ink. The strike of the pin forces the ink to transfer to the paper at the point of impact. Unlike daisy wheel printers, dot matrix printers can generate italic and other character types through producing different pin patterns. Nonimpact printers generate images by spraying or fusing ink to paper or other output media. This category includes inkjet printers, laser printers, and thermal printers. Whether they are inkjet or laser, impact or nonimpact, all modern printers incorporate features of dot matrix technology in their design: they operate by generating dots onto paper or other physical media.

27. Processors for Computers

A processor is the part of the computer system that manipulates the data. The first computer processors of the late 1940s and early 1950s performed three main functions and had three main components. They worked in a cycle to gather, decode, and execute instructions. They were made up of the arithmetic and logic unit, the control unit, and some extra storage components or registers. Today, most processors contain these components and perform these same functions, but since the 1960s they have developed different forms, capabilities, and organization. As with computers in general, increasing speed and decreasing size has marked their development.

28. Radionavigation

Astronomical and dead-reckoning techniques furnished the methods of navigating ships until the twentieth century, when exploitation of radio waves, coupled with electronics, met the needs of aircraft with their fast speeds, but also transformed all navigational techniques. The application of radio to dead reckoning has allowed vessels to determine their positions in all-weather by direction finding (known as radio direction finding, or RDF) or by hyperbolic systems. Another use of radio, radar (radio direction and rangefinding), enables vessels to determine their distance to, or their bearing from, objects of known position. Radionavigation complements traditional navigational methods by employing three frames of reference. First, radio enables a vessel to navigate by lines of bearing to shore transmitters (the most common use of radio). This is directly analogous to the use of lighthouses for bearings. Second, shore stations may take radio bearings of craft and relay to them computed positions. Third, radio beacons provide aircraft or ships with signals that function as true compasses.

29. Software Application Programs

At the beginning of the computer age around the late 1940s, inventors of the intelligent machine were not thinking about applications software, or any software other than that needed to run the bare machine to do mathematical calculating. It was only when Maurice Wilkes’ young protégé David Williams crafted a tidy set of initial orders for the EDSAC, an early programmable digital computer, that users could string together standard subroutines to a program and have the execution jump between them. This was the beginning of software as we know it—something that runs on a machine other than an operating system to make it do anything desired. ‘‘Applications’’ are software other than system programs that run the actual hardware. Manufacturers always had this software, and as the 1950s progressed they would ‘‘bundle’’ applications with hardware to make expensive computers more attractive. Some programming departments were even placed in the marketing departments.

30. Software Engineering

Software engineering aims to develop the programs that allow digital computers to do useful work in a systematic, disciplined manner that produces high-quality software on time and on budget. As computers have spread throughout industrialized societies, software has become a multibillion dollar industry. Both the users and developers of software depend a great deal on the effectiveness of the development process.

Software is a concept that didn’t even pertain to the first electronic digital computers. They were ‘‘programmed’’ through switches and patch cables that physically altered the electrical pathways of the machine. It was not until the Manchester Mark I, the first operational stored-program electronic digital computer, was developed in 1948 at the University of Manchester in England that configuring the machine to solve a specific problem became a matter of software rather than hardware. Subsequently, instructions were stored in memory along with data.

31. Supercomputers

Supercomputers are high-performance computing devices that are generally used for numerical calculation, for the study of physical systems either through numerical simulation or the processing of scientific data. Initially, they were large, expensive, mainframe computers, which were usually owned by government research labs. By the end of the twentieth century, they were more often networks of inexpensive small computers. The common element of all of these machines was their ability to perform high-speed floating-point arithmetic— binary arithmetic that approximates decimal numbers with a fixed number of bits—the basis of numerical computation.

With the advent of inexpensive supercomputers, these machines moved beyond the large government labs and into smaller research and engineering facilities. Some were used for the study of social science. A few were employed by business concerns, such as stock brokerages or graphic designers.

32. Systems Programs

The operating systems used in all computers today are a result of the development and organization of early systems programs designed to control and regulate the operations of computer hardware. The early computing machines such as the ENIAC of 1945 were ‘‘programmed’’ manually with connecting cables and setting switches for each new calculation. With the advent of the stored program computer of the late 1940s (the Manchester Mark I, EDVAC, EDSAC (electronic delay storage automatic calculator), the first system programs such as assemblers and compilers were developed and installed. These programs performed oft repeated and basic operations for computer use including converting programs into machine code, storing and retrieving files, managing computer resources and peripherals, and aiding in the compilation of new programs. With the advent of programming languages, and the dissemination of more computers in research centers, universities, and businesses during the late 1950s and 1960s, a large group of users began developing programs, improving usability, and organizing system programs into operating systems.

The 1970s and 1980s saw a turn away from some of the complications of system software, an interweaving of features from different operating systems, and the development of systems programs for the personal computer. In the early 1970s, two programmers from Bell Laboratories, Ken Thompson and Dennis Ritchie, developed a smaller, simpler operating system called UNIX. Unlike past system software, UNIX was portable and could be run on different computer systems. Due in part to low licensing fees and simplicity of design, UNIX increased in popularity throughout the 1970s. At the Xerox Palo Alto Research Center, research during the 1970s led to the development of system software for the Apple Macintosh computer that included a GUI (graphical user interface). This type of system software filtered the user’s interaction with the computer through the use of graphics or icons representing computer processes. In 1985, a year after the release of the Apple Macintosh computer, a GUI was overlaid on Microsoft’s then dominant operating system, MS-DOS, to produce Microsoft Windows. The Microsoft Windows series of operating systems became and remains the dominant operating system on personal computers.

33. World Wide Web

The World Wide Web (Web) is a ‘‘finite but unbounded’’ collection of media-rich digital resources that are connected through high-speed digital networks. It relies upon an Internet protocol suite that supports cross-platform transmission and makes available a wide variety of media types (i.e., multimedia). The cross-platform delivery environment represents an important departure from more traditional network communications protocols such as e-mail, telnet, and file transfer protocols (FTP) because it is content-centric. It is also to be distinguished from earlier document acquisition systems such as Gopher, which was designed in 1991, originally as a mainframe program but quickly implemented over networks, and wide area information systems (WAIS), also released in 1991. WAIS accommodated a narrower range of media formats and failed to include hyperlinks within their navigation protocols. Following the success of Gopher on the Internet, the Web quickly extended and enriched the metaphor of integrated browsing and navigation. This made it possible to navigate and peruse a wide variety of media types effortlessly on the Web, which in turn led to the Web’s hegemony as an Internet protocol.

History of Computer Technology

Computer Technology

The modern computer—the (electronic) digital computer in which the stored program concept is realized and hence self-modifying programs are possible—was only invented in the 1940s. Nevertheless, the history of computing (interpreted as the usage of modern computers) is only understandable against the background of the many forms of information processing as well as mechanical computing devices that solved mathematical problems in the first half of the twentieth century. The part these several predecessors played in the invention and early history of the computer may be interpreted from two different perspectives: on the one hand it can be argued that these machines prepared the way for the modern digital computer, on the other hand it can be argued that the computer, which was invented as a mathematical instrument, was reconstructed to be a data-processing machine, a control mechanism, and a communication tool.

The invention and early history of the digital computer has its roots in two different kinds of developments: first, information processing in business and government bureaucracies; and second, the use and the search for mathematical instruments and methods that could solve mathematical problems arising in the sciences and in engineering.

Origins in Mechanical Office Equipment

The development of information processing in business and government bureaucracies had its origins in the late nineteenth century, which was not just an era of industrialization and mass production but also a time of continuous growth in administrative work. The economic precondition for this development was the creation of a global economy, which caused growth in production of goods and trade. This brought with it an immense increase in correspondence, as well as monitoring and accounting activities—corporate bureaucracies began to collect and process data in increasing quantities. Almost at the same time, government organizations became more and more interested in collating data on population and demographic changes (e.g., expanding tax revenues, social security, and wide-ranging planning and monitoring functions) and analyzing this data statistically.

Bureaucracies in the U.S. and in Europe reacted in a different way to these changes. While in Europe for the most part neither office machines nor telephones entered offices until 1900, in the U.S. in the last quarter of the nineteenth century the information-handling techniques in bureaucracies were radically changed because of the introduction of mechanical devices for writing, copying, and counting data. The rise of big business in the U.S. had caused a growing demand for management control tools, which was fulfilled by a new ideology of systematic management together with the products of the rising office machines industry. Because of a later start in industrialization, the government and businesses in the U.S. were not forced to reorganize their bureaucracies when they introduced office machines. This, together with an ideological preference for modern office equipment, was the cause of a market for office machines and of a far-reaching mechanization of office work in the U.S. In the 1880s typewriters and cash registers became very widespread, followed by adding machines and book-keeping machines in the 1890s. From 1880 onward, the makers of office machines in the U.S. underwent a period of enormous growth, and in 1920 the office machine industry annually generated about $200 million in revenue. In Europe, by comparison, mechanization of office work emerged about two decades later than in the U.S.—both Germany and Britain adopted the American system of office organization and extensive use of office machines for the most part no earlier than the 1920s.

During the same period the rise of a new office machine technology began. Punched card systems, initially invented by Herman Hollerith to analyze the U.S. census in 1890, were introduced. By 1911 Hollerith’s company had only about 100 customers, but after it had been merged in the same year with two other companies to become the Computing- Tabulating-Recording Company (CTR), it began a tremendous ascent to become the world leader in the office machine industry. CTR’s general manager, Thomas J. Watson, understood the extraordinary potential of these punched-card accounting devices, which enabled their users to process enormous amounts of data largely automatically, in a rapid way and at an adequate level of cost and effort. Due to Watson’s insights and his extraordinary management abilities, the company (which had since been renamed to International Business Machines (IBM)) became the fourth largest office machine supplier in the world by 1928—topped only by Remington Rand, National Cash Register (NCR), and the Burroughs Adding Machine Company.

Origin of Calculating Devices and Analog Instruments

Compared with the fundamental changes in the world of corporate and government bureaucracies caused by office machinery during the late nineteenth and early twentieth century, calculating machines and instruments seemed to have only a minor influence in the world of science and engineering. Scientists and engineers had always been confronted with mathematical problems and had over the centuries developed techniques such as mathematical tables. However, many new mathematical instruments emerged in the nineteenth century and increasingly began to change the world of science and engineering. Apart from the slide rule, which came into popular use in Europe from the early nineteenth century onwards (and became the symbol of the engineer for decades), calculating machines and instruments were only produced on a large scale in the middle of the nineteenth century.

In the 1850s the production of calculating machines as well as that of planimeters (used to measure the area of closed curves, a typical problem in land surveying) started on different scales. Worldwide, less than 2,000 calculating machines were produced before 1880, but more than 10,000 planimeters were produced by the early 1880s. Also, various types of specialized mathematical analog instruments were produced on a very small scale in the late nineteenth century; among them were integraphs for the graphical solution of special types of differential equations, harmonic analyzers for the determination of Fourier coefficients of a periodic function, and tide predictors that could calculate the time and height of the ebb and flood tides.

Nonetheless, in 1900 only geodesists and astronomers (as well as part of the engineering community) made extensive use of mathematical instruments. In addition, the establishment of applied mathematics as a new discipline took place at German universities on a small scale and the use of apparatus and machines as well as graphical and numerical methods began to flourish during this time. After World War I, the development of engineering sciences and of technical physics gave a tremendous boost to applied mathematics in Germany and Britain. In general, scientists and engineers became more aware of the capabilities of calculating machines and a change of the calculating culture—from the use of tables to the use of calculating machines—took place.

One particular problem that was increasingly encountered by mechanical and electrical engineers in the 1920s was the solution of several types of differential equations, which were not solvable by analytic solutions. As one important result of this development, a new type of analog instrument— the so called ‘‘differential analyzer’’—was invented in 1931 by the engineer Vannevar Bush at the Massachusetts Institute of Technology (MIT). In contrast to its predecessors—several types of integraphs—this machine (which was later called an analog computer) could be used not only to solve a special class of differential equation, but a more general class of differential equations associated with engineering problems. Before the digital computer was invented in the 1940s there was an intensive use of analog instruments (similar to Bush’s differential analyzer) and a number of machines were constructed in the U.S. and in Europe after the model of Bush’s machine before and during World War II. Analog instruments also became increasingly important in several fields such as the firing control of artillery on warships or the control of rockets. It is worth mentioning here that only for a limited class of scientific and engineering problems was it possible to construct an analog computer— weather forecasting and the problem of shock waves produced by an atomic bomb, for example, required the solution of partial differential equations, for which a digital computer was needed.

The Invention of the Computer

The invention of the electronic digital stored-program computer is directly connected with the development of numerical calculation tools for the solution of mathematical problems in the sciences and in engineering. The ideas that led to the invention of the computer were developed simultaneously by scientists and engineers in Germany, Britain, and the U.S. in the 1930s and 1940s. The first freely programmable program-controlled automatic calculator was developed by the civil engineering student Konrad Zuse in Germany. Zuse started development work on program-controlled computing machines in the 1930s, when he had to deal with extensive calculations in static, and in 1941 his Z3, which was based on electromechanical relay technology, became operational.

Several similar developments in the U.S. were in progress at the same time. In 1937 Howard Aiken, a physics student at Harvard University, approached IBM to build a program-controlled calculator— later called the ‘‘Harvard Mark I.’’ On the basis of a concept Aiken had developed because of his experiences with the numerical solution of partial differential equations, the machine was built and became operational in 1944. At almost the same time a series of important relay computers was built at the Bell Laboratories in New York following a suggestion by George R. Stibitz. All these developments in the U.S. were spurred by the outbreak of World War II. The first large-scale programmable electronic computer called the Colossus was built in complete secrecy in 1943 to 1944 at Bletchley Park in Britain in order to help break the German Enigma machine ciphers.

However, it was neither these relay calculators nor the Colossus that were decisive for the development of the universal computer, but the ENIAC (electronic numerical integrator and computer), which was developed at the Moore School of Engineering at the University of Pennsylvania. Extensive ballistic calculations were carried out there for the U.S. Army during World War II with the aid of the Bush ‘‘differential analyzer’’ and more than a hundred women (‘‘computors’’) working on mechanical desk calculators. Observing that capacity was barely sufficient to compute the artillery firing tables, the physicist John W. Mauchly and the electronic engineer John Presper Eckert started developing the ENIAC, a digital version of the differential analyzer, in 1943 with funding from the U.S. Army.

In 1944 the mathematician John von Neumann turned his attention to the ENIAC because of his mathematical work on the Manhattan Project (on the implosion of the hydrogen bomb). While the ENIAC was being built, Neumann and the ENIAC team drew up plans for a successor to the ENIAC in order to improve the shortcomings of the ENIAC concept, such as the very small memory and the time-consuming reprogramming (actually rewiring) required to change the setup for a new calculation. In these meetings the idea of a stored-program, universal machine evolved. Memory was to be used to store the program in addition to data. This would enable the machine to execute conditional branches and change the flow of the program. The concept of a computer in the modern sense of the word was born and in 1945 von Neumann wrote the important ‘‘First Draft of a Report on the EDVAC,’’ which described the stored-program, universal computer. The logical structure that was presented in this draft report is now referred to as the ‘‘von Neumann architecture.’’ This EDVAC report was originally intended for internal use but once made freely available it became the ‘‘bible’’ for computer pioneers throughout the world in the 1940s and 1950s. The first computer featuring the von Neumann architecture operated at Cambridge University in the U.K.; in June 1949 the EDSAC (electronic delay storage automatic computer) computer built by Maurice Wilkes—designed according to the EDVAC principles—became operational.

The Computer as a Scientific Instrument

As soon as the computer was invented, a growing demand for computers by scientists and engineers evolved, and numerous American and European universities started their own computer projects in the 1940s and 1950s. After the technical difficulties of building an electronic computer were solved, scientists grasped the opportunity to use the new scientific instrument for their research. For example, at the University of Gottingen in Germany, the early computers were used for the initial value problems of partial differential equations associated with hydrodynamic problems from atomic physics and aerodynamics. Another striking example was the application of von Neumann’s computer at the Institute for Advanced Study (IAS) in Princeton to numerical weather forecasts in 1950. As a result, numerical weather forecasts could be made on a regular basis from the mid-1950s onwards.

Mathematical methods have always been of a certain importance for science and engineering sciences, but only the use of the electronic digital computer (as an enabling technology) made it possible to broaden the application of mathematical methods to such a degree that research in science, medicine, and engineering without computer- based mathematical methods has become virtually inconceivable at the end of the twentieth century. A number of additional computer-based techniques, such as scientific visualization, medical imaging, computerized tomography, pattern recognition, image processing, and statistical applications, have become of the utmost significance for science, medicine, engineering, and social sciences. In addition, the computer changed the way engineers construct technical artifacts fundamentally because of the use of computer-based methods such as computer-aided design (CAD), computer-aided manufacture (CAM), computer-aided engineering, control applications, and finite-element methods. However, the most striking example seems to be the development of scientific computing and computer modeling, which became accepted as a third mode of scientific research that complements experimentation and theoretical analysis. Scientific computing and computer modeling are based on supercomputers as the enabling technology, which became important tools for modern science routinely used to simulate physical and chemical phenomena. These high-speed computers became equated with the machines developed by Seymour Cray, who built the fastest computers in the world for many years. The supercomputers he launched such as the legendary CRAY I from 1976 were the basis for computer modeling of real world systems, and helped, for example, the defense industry in the U.S. to build weapons systems and the oil industry to create geological models that show potential oil deposits.

Growth of Digital Computers in Business and Information Processing

When the digital computer was invented as a mathematical instrument in the 1940s, it could not have been foreseen that this new artifact would ever be of a certain importance in the business world. About 50 firms entered the computer business worldwide in the late 1940s and the early 1950s, and the computer was reconstructed to be a type of electronic data-processing machine that took the place of punched-card technology as well as other office machine technology. It is interesting to consider that there were mainly three types of companies building computers in the 1950s and 1960s: newly created computer firms (such as the company founded by the ENIAC inventors Eckert and Mauchly), electronics and control equipments firms (such as RCA and General Electric), and office appliance companies (such as Burroughs and NCR). Despite the fact that the first digital computers were put on the market by a German and a British company, U.S. firms dominated the world market from the 1950s onward, as these firms had the biggest market as well as financial support from the government.

Generally speaking, the Cold War exerted an enormous influence on the development of computer technology. Until the early 1960s the U.S. military and the defense industry were the central drivers of the digital computer expansion, serving as the main market for computer technology and shaping and speeding up the formation of the rising computer industry. Because of the U.S. military’s role as the ‘‘tester’’ for prototype hard- and software, it had a direct and lasting influence on technological developments; in addition, it has to be noted that the spread of computer technology was partly hindered by military secrecy. Even after the emergence of a large civilian computer market in the 1960s, the U.S. military maintained its influence by investing a great deal in computer in hard- and software and in computer research projects.

From the middle of the 1950s onwards the world computer market was dominated by IBM, which accounted for more than 70 percent of the computer industry revenues until the mid-1970s. The reasons for IBM’s overwhelming success were diverse, but the company had a unique combination of technical and organizational capabilities at its disposal that prepared it perfectly for the mainframe computer market. In addition, IBM benefited from enormous government contracts, which helped to develop excellence in computer technology and design. However, the greatest advantage of IBM was by no doubt its marketing organization and its reputation as a service-oriented firm, which was used to working closely with customers to adapt machinery to address specific problems, and this key difference between IBM and its competitors persisted right into the computer age.

During the late 1950s and early 1960s, the computer market—consisting of IBM and seven other companies called the ‘‘seven dwarves’’—was dominated by IBM, with its 650 and 1401 computers. By 1960 the market for computers was still small. Only about 7,000 computers had been delivered by the computer industry, and at this time even IBM was primarily a punched-card machine supplier, which was still the major source of its income. Only in 1960 did a boom in demand for computers start, and by 1970 the number of computers installed worldwide had increased to more than 100,000. The computer industry was on the track to become one of the world’s major industries, and was totally dominated by IBM.

The outstanding computer system of this period was IBM’s System/360. It was announced in 1964 as a compatible family of the same computer architecture, and employed interchangeable peripheral devices in order to solve IBM’s problems with a hotchpotch of incompatible product lines (which had evoked large problems in the development and maintenance of a great deal of different hardware and software products). Despite the fact that neither the technology used nor the systems programming were of a high-tech technology at the time, the System/360 established a new standard for mainframe computers for decades. Various computer firms in the U.S., Europe, Japan and even Russia, concentrated on copying components, peripherals for System/360 or tried to build System/360-compatible computers.

The growth of the computer market during the 1960s was accompanied by market shakeouts: two of the ‘‘seven dwarves’’ left the computer business after the first computer recession in the early 1970s, and afterwards the computer market was controlled by IBM and BUNCH (Burroughs, UNIVAC, NCR, Control Data, and Honeywell). At the same time, an internationalization of the computer market took place—U.S. companies controlled the world market for computers— which caused considerable fears over loss of national independence in European and Japanese national governments, and these subsequently stirred up national computing programs. While the European attempts to create national champions as well as the more general attempt to create a European-wide market for mainframe computers failed in the end, Japan’s attempt to found a national computer industry has been successful: Until today Japan is the only nation able to compete with the U.S. in a wide array of high-tech computer-related products.

Real-Time and Time-Sharing

Until the 1960s almost all computers in government and business were running batch-processing applications (i.e., the computers were only used in the same way as the punched-card accounting machines they had replaced). In the early 1950s, however, the computer industry introduced a new mode of computing named ‘‘real-time’’ in the business sector for the first time, which was originally developed for military purposes in MIT’s Whirlwind project. This project was initially started in World War II with the aim of designing an aircraft simulator by analog methods, and later became a part of a research and development program for the gigantic, computerized anti-aircraft defense system SAGE (semi-automatic ground environment) built up by IBM in the 1950s.

The demand for this new mode of computing was created by cultural and structural changes in economy. The increasing number of financial transactions in banks and insurance companies as well as increasing airline traveling activities made necessary new computer-based information systems that led finally to new forms of business evolution through information technology.

The case of the first computerized airline reservation system SABRE, developed for American Airlines by IBM in the 1950s and finally implemented in the early 1960s, serves to thoroughly illustrate these structural and structural changes in economy. Until the early 1950s, airline reservations had been made manually without any problems, but by 1953 this system was in crisis because increased air traffic and growing flight plan complexity had made reservation costs insupportable. SABRE became a complete success, demonstrating the potential of centralized real-time computing systems connected via a network. The system enabled flight agents throughout the U.S., who were equipped with desktop terminals, to gain a direct, real-time access to the central reservation system based on central IBM mainframe computers, while the airline was able to assign appropriate resources in response. Therefore, an effective combination of advantages was offered by SABRE—a better utilization of resources and a much higher customer convenience.

Very soon this new mode of computing spread around the business and government world and became commonplace throughout the service and distribution sectors of the economy; for example, bank tellers and insurance account representatives increasingly worked at terminals. On the one hand structural information problems led managers to go this way, and on the other hand the increasing use of computers as information handling machines in government and business had brought about the idea of computer-based accessible data retrieval. In the end, more and more IBM customers wanted to link dozens of operators directly to central computers by using terminal keyboards and display screens.

In the late 1950s and early 1960s—at the same time that IBM and American Airlines had begun the development of the SABRE airline reservation system—a group of brilliant computer scientists had a new idea for computer usage named ‘‘time sharing.’’ Instead of dedicating a multi-terminal system solely to a single application, they had the computer utility vision of organizing a mainframe computer so that several users could interact with it simultaneously. This vision was to change the nature of computing profoundly, because computing was no longer provided to naive users by programmers and systems analysts, and by the late 1960s time-sharing computers became widespread in the U.S.

Particularly important for this development had been the work of J.C.R. Licklider of the Advanced Research Project Agency (ARPA) of the U.S. Department of Defense. In 1960 Licklider had published a now-classic paper ‘‘Man–Computer Symbiosis’’ proposing the use of computers to augment human intellect and creating the vision of interactive computing. Licklider was very successful in translating his idea of a network allowing people on different computers to communicate into action, and convinced ARPA to start an enormous research program in 1962. Its budget surpassed that of all other sources of U.S. public research funding for computers combined. The ARPA research programs resulted in a series of fundamental moves forward in computer technology in areas such as computer graphics, artificial intelligence, and operating systems. For example, even the most influential current operating system, the general-purpose time-sharing system Unix, developed in the early 1970s at the Bell Laboratories, was a spin-off of an ambitious operating system project, Multics, funded by ARPA. The designers of Unix successfully attempted to keep away from complexity by using a clear, minimalist design approach to software design, and created a multitasking, multiuser operating system, which became the standard operating system in the 1980s.

Electronic Component Revolution

While the nature of business computing was changed by the new paradigms such as real time and time sharing, advances in solid-state components increasingly became a driving force for fundamental changes in the computer industry, and led to a dynamic interplay between new computer designs and new programming techniques that resulted in a remarkable series of technical developments. The technical progress of the mainframe computer had always run parallel to conversions in the electronics components. During the period from 1945 to 1965, two fundamental transformations in the electronics industry took place that were marked by the invention of the transistor in 1947 and the integrated circuit in 1957 to 1958. While the first generation of computers—lasting until about 1960—was characterized by vacuum tubes (valves) for switching elements, the second generation used the much smaller and more reliable transistors, which could be produced at a lower price. A new phase was inaugurated when an entire integrated circuit on a chip of silicon was produced in 1961, and when the first integrated circuits were produced for the military in 1962. A remarkable pace of progress in semiconductor innovations, known as the ‘‘revolution in miniature,’’ began to speed up the computer industry. The third generation of computers characterized by the use of integrated circuits began with the announcement of the IBM System/360 in 1964 (although this computer system did not use true integrated circuits). The most important effect of the introduction of integrated circuits was not to strengthen the leading mainframe computer systems, but to destroy Grosch’s Law, which stated that computing power increases as the square of its costs. In fact, the cost of computer power dramatically reduced during the next ten years.

This became clear with the introduction of the first computer to use integrated circuits on a full scale in 1965: the Digital Equipment Corporation (DEC) offered its PDP-8 computer for just $18,000, creating a new class of computers called minicomputers—small in size and low in cost—as well as opening up the market to new customers. Minicomputers were mainly used in areas other than general-purpose computing such as industrial applications and interactive graphics systems. The PDP-8 became the first widely successful minicomputer with over 50,000 items sold, demonstrating that there was a market for smaller computers. This success of DEC (by 1970 it had become the world’s third largest computer manufacturer) was supported by dramatic advances in solid-state technology. During the 1960s the number of transistors on a chip doubled every two years, and as a result minicomputers became continuously more powerful and more inexpensive at an inconceivable speed.

Personal Computing

The most striking aspect of the consequences of the exponential increase of the number of transistors on a chip during the 1960s—as stated by ‘‘Moore’s Law’’: the number of transistors on a chip doubled every two years—was not the lowering of the costs of mainframe computer and minicomputer processing and storage, but the introduction of the first consumer products based on chip technology such as hand-held calculators and digital watches in about 1970. More specifically, the market acts in these industries were changed overnight by the shift from mechanical to chip technology, which led to an enormous deterioration in prices as well as a dramatic industry shakeout. These episodes only marked the beginning of wide-ranging changes in economy and society during the last quarter of the twentieth century leading to a new situation where chips played an essential role in almost every part of business and modern life.

The case of the invention of the personal computer serves to illustrate that it was not sufficient to develop the microprocessor as the enabling technology in order to create a new invention, but how much new technologies can be socially constructed by cultural factors and commercial interests. When the microprocessor, a single-chip integrated circuit implementation of a CPU, was launched by the semiconductor company Intel in 1971, there was no hindrance to producing a reasonably priced microcomputer, but it took six years until the consumer product PC emerged. None of the traditional mainframe and minicomputer companies were involved in creating the early personal computer. Instead, a group of computer hobbyists as well as the ‘‘computer liberation’’ movement in the U.S. became the driving force behind the invention of the PC. These two groups were desperately keen on a low-priced type of minicomputer for use at home for leisure activities such as computer games; or rather they had the counterculture vision of an unreservedly available and personal access to an inexpensive computer utility provided with rich information. When in 1975 the Altair 8800, an Intel 8080 microprocessor-based computer, was offered as an electronic hobbyist kit for less than $400, these two groups began to realize their vision of a ‘‘personal computer.’’ Very soon dozens of computer clubs and computer magazines were founded around the U.S., and these computer enthusiasts created the personal computer by combining the Altair with keyboards, disk drives, and monitors as well as by developing standard software for it. Consequently, in only two years, a more or less useless hobbyist kit had been changed into a computer that could easily be transformed in a consumer product.

The computer hobbyist period ended in 1977, when the first standard machines for an emerging consumer product mass market were sold. These included products such as the Commodore Pet and the Apple II, which included its own monitor, disk drive, and keyboard, and was provided with several basic software packages. Over next three years, spreadsheet, word processing, and database software were developed, and an immense market for games software evolved. As a result, personal computers became more and more a consumer product for ordinary people, and Apple’s revenues shot to more than $500 million in 1982. By 1980, the personal computer had transformed into a business machine, and IBM decided to develop its own personal computer, which was introduced as the IBM PC in 1981. It became an overwhelming success and set a new industry standard.

Apple tried to compete by launching their new Macintosh computer in 1984 provided with a revolutionary graphical user interface (GUI), which set a new standard for a user-friendly human–computer interaction. It was based on technology created by computer scientists at the Xerox Palo Alto Research Center in California, who had picked up on ideas about human– computer interaction developed at the Stanford Research Institute and at the University of Utah. Despite the fact that the Macintosh’s GUI was far superior to the MS-DOS operating system of the IBM-compatible PCs, Apple failed to win the business market and remained a niche player with a market share of about 10 percent. The PC main branch was determined by the companies IBM had chosen as its original suppliers in 1981 for the design of the microprocessor (Intel) and the operating system (Microsoft). While IBM failed to seize power in the operating system software market for PCs in a software war with Microsoft, Microsoft achieved dominance not only of the key market for PC operating systems, but also the key market of office applications during the first half of the 1990s.

In the early 1990s computing again underwent further fundamental changes with the appearance of the Internet, and for the most computer users, networking became an integral part of what it means to have a computer. Furthermore, the rise of the Internet indicated the impending arrival of a new ‘‘information infrastructure’’ as well as of a ‘‘digital convergence,’’ as the coupling of computers and communications networks was often called.

In addition, the 1990s were a period of an information technology boom, which was mainly based on the Internet hype. For many years previously, it seemed to a great deal of managers and journalists that the Internet would become not just an indispensable business tool, but also a miracle cure for economic growth and prosperity. In addition, computer scientists and sociologists started a discussion predicting the beginning of a new ‘‘information age’’ based on the Internet as a ‘‘technological revolution’’ and reshaping the ‘‘material basis’’ of industrial societies.

The Internet was the outcome of an unusual collaboration of a military–industrial–academic complex that promoted the development of this extraordinary innovation. It grew out of a military network called the ARPAnet, a project established and funded by ARPA in the 1960s. The ARPAnet was initially devoted to support of data communications for defense research projects and was only used by a small number of researchers in the 1970s. Its further development was primarily promoted by unintentional forms of network usage. The users of the ARPAnet became very much attracted by the opportunity for communicating through electronic mail, which rapidly surpassed all other forms of network activities. Another unplanned spin-off of the ARPAnet was the Usenet (Unix User Network), which started in 1979 as a link between two universities and enabled its users to subscribe to newsgroups. Electronic mail became a driving force for the creation of a large number of new proprietary networks funded by the existing computer services industry or by organizations such as the NSF (NSFnet). Because networks users’ desire for email to be able to cross network boundaries, an ARPA project on ‘‘internetworking’’ became the origin for the ‘‘Internet’’—a network of networks linked by several layers of protocols such as TCP/IP (transmission control protocol/internet protocol), which quickly developed into the actual standard.

Only after the government funding had solved many of the most essential technical issues and had shaped a number of the most characteristic features of the Internet, did private sector entrepreneurs start Internet-related ventures and quickly developed user-oriented enhancements. Nevertheless, the Internet did not make a promising start and it took more than ten years before significant numbers of networks were connected. In 1980, the Internet had less than two hundred hosts, and during the next four years the number of hosts went up only to 1000. Only when the Internet reached the educational and business community of PC users in the late 1980s, did it start to become an important economic and social phenomenon. The number of hosts began an explosive growth in the late 1980s—by 1988 there were over 50,000 hosts. An important and unforeseen side effect of this development became the creation of the Internet into a new electronic publishing medium. The electronic publishing development that excited most interest in the Internet was the World Wide Web, originally developed at the CERN High Energy Physics Laboratory in Geneva in 1989. Soon there were millions of documents on the Internet, and private PC users became excited by the joys of surfing the Internet. A number of firms such as AOL soon provided low-cost network access and a range of consumer-oriented information services. The Internet boom was also helped by the Clinton–Gore presidential election campaign on the ‘‘information superhighway’’ and by the amazing news reporting on the national information infrastructure in the early 1990s. Nevertheless, for many observers it was astounding how fast the number of hosts on the Internet increased during the next few years—from more than 1 million in 1992 to 72 million in 1999.

The overwhelming success of the PC and of the Internet tends to hide the fact that its arrival marked only a branching in computer history and not a sequence. (Take, for example, the case of mainframe computers, which still continue to run, being of great importance to government facilities and the private sector (such as banks and insurance companies), or the case of supercomputers, being of the utmost significance for modern science and engineering.) Furthermore, it should be noted that only a small part of the computer applications performed today is easily observable—98 percent of programmable CPUs are used in embedded systems such as automobiles, medical devices, washing machines and mobile telephones.

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717 Good Research Paper Topics

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good and interesting research paper topics

Some examples of common research paper styles include:

  • Argumentative Research Papers
  • Persuasive Research Papers
  • Education Research Papers
  • Analytical Research Papers
  • Informative Research Papers

Your research essay topic may also need to be related to the specific class you are taking. For example, an economics class may require a business research paper, while a class on human behavior may call for a psychology research paper.

The requirements for your paper will vary depending on whether you are in high school, college, or a postgraduate student. In high school, you may be able to choose an easy topic and cite five or six sources you found on Google or Yahoo!, but college term papers require more in-depth research from reliable sources, such as scholarly books and peer-reviewed journals.

Do you need some help with brainstorming for topics? Some common research paper topics include abortion, birth control, child abuse, gun control, history, climate change, social media, AI, global warming, health, science, and technology. 

But we have many more!

On this page, we have hundreds of good research paper topics across a wide range of subject fields. Each of these topics could be used “as is” to write your paper, or as a starting point to develop your own topic ideas.

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How to Choose Your Research Paper Topic

The first step to developing an interesting research paper is choosing a good topic. Finding a topic can be difficult, especially if you don’t know where to start. Finding the Right Research Paper Topic

If you are in a class that allows you to choose your own term paper topic, there are some important areas to consider before you begin your project:

Your Level of Interest: Research papers are time-consuming; you will be spending countless hours researching the topic and related topics, developing several primary and secondary sources, and putting everything together into a paper that is coherent and accomplishes your objectives. If you do not choose a topic you are passionate about, the process will be far more tedious, and the finished product may suffer as a result.

Your Level of Experience: Being interested in a topic is great, but it is even more helpful if you already know something about it. If you can find a topic that you already have some personal and/or professional experience with, it will vastly reduce the amount of research needed and make the whole process much easier.

Available Information on the Topic: Be sure to choose a topic that is not only interesting but also one that has numerous sources available from which to compile your research. A researchable topic with several potential sources gives you access to the level of information you need to become an authority on the subject.

Your Audience: An interesting topic to you may not necessarily be interesting to your professor or whoever is grading your research paper. Before you begin, consider the level of interest of the person(s) who will be reading it. If you are writing a persuasive or argumentative essay, also consider their point of view on the subject matter.

As you begin researching your topic, you may want to revise your thesis statement based on new information you have learned. This is perfectly fine, just have fun and pursue the truth, wherever it leads. If you find that you are not having fun during the research phase, you may want to reconsider the topic you have chosen.

The process of writing the research paper is going to be very time consuming so it’s important to select a topic that is going to sustain your interest for the duration of the project. It is good to select a topic that is relevant to your life since you are going to spend a long time researching and writing about it. Perhaps you are considering starting your own business or pursuing a career in politics. Look through the suggested research paper topics and find one in a category that you can relate to easily. Finding a topic that you have some personal interest in will help make the arduous task a lot easier, and the project will have better results because of your vested interest.

Our List of Research Topics and Issues

Affirmative action, health, pharmacy, medical treatments, interpersonal communication, marketing and advertising, barack obama, discrimination, bill clinton, hilary clinton, computer crimes and security, cosmetic surgery, controversial, criminal justice, donald trump, easy/simple, environment, family violence, foreign policy, gambling and lotteries, the lgbtq community, generational conflict, gun control, hate crimes, immigration, middle east, maternity/paternity leave, natural disasters, police work, population explosion, pornography, prisons and prisoners, prostitution, ronald reagan, student loan debt, teen issues, women, mothers, what, why, and how, relationships.

We compiled an exhaustive list of topics that would make excellent research papers. The topics are specifically organized to help you find one that will work for your project. Broad topics are headed, and then below them are narrowed topics, all to help you find an area to focus on. The way we have organized the topics for research papers can save you lots of time getting prepared to write your research paper.

We have topics that fit into categories that cover such areas as education, environmental sciences, communication and languages, current events, politics, business, criminal justice, art, psychology, economics to name just a few. Simply get started by choosing the category that interests you and peruse through the topics listed in that category and you’ll be well on your way to constructing an excellent research paper.

Be sure to check other topics ideas: persuasive speech topics , argumentative speech topics , policy speech topics . We also have some sample outlines and essay templates .

  • What limits are responsible?
  • What limits are realistic?
  • How to protect abortion doctors, pregnant women, and the protection of abortion clinics vs. the right to protest
  • Partial birth abortion
  • Scientific evidence vs. definition of viability
  • Stem cell research
  • Unborn victims of violence
  • Relative equality has been achieved vs. serious inequities continue
  • Can racial balance in business, education, and the military be achieved without policies that promote Affirmative Action
  • Reverse discrimination
  • NOW, National Organization for Women
  • No government support vs. fairness to parents who pay twice for education
  • Separation of church and state vs. religion’s contribution to the public good
  • Placement by age vs. placement by academic ability
  • Mainstreaming students with disabilities vs. special classrooms for their special needs
  • Required standardized tests for advancement vs. course requirements only
  • National standardized tests vs. local control of education
  • Discrimination in education
  • Multicultural/bilingual education vs. traditional basics
  • Teacher competency tests vs. degree requirements only
  • Teacher’s needs/demands vs. teaching as a service profession
  • Policing schools
  • School’s responsibility vs. parental responsibility for school violence
  • Drug and alcohol abuse, pregnancy, suicide
  • Zero tolerance toward violence vs. toughness with flexibility
  • Permit corporal punishment
  • Exams often do little more than measure a person’s ability to take exams. Should exams be outlawed in favor of another form of assessment?
  • Should teens in the U.S. adopt the British custom of taking a “gap year” between high school and college?
  • In some European schools, fewer than 10% of students get “As”. Is there grade inflation in the U.S.? Why so many “As” for Americans?
  • Education and funding
  • Grade inflation
  • No Child Left Behind Act: Is it working?
  • Home schooling
  • Standardized tests
  • Are children smarter (or more socialized) because of the Internet?
  • Should the federal government be allowed to regulate information on the internet?
  • How has the music industry been affected by the internet and digital downloading?
  • How does a search engine work?
  • What are the effects of prolonged steroid use on the human body?
  • What are the benefits and hazards of medical marijuana?
  • How does tobacco use affect the human body?
  • Do the benefits of vaccination outweigh the risks?
  • What are some common sleep disorders and how are they treated?
  • What are the risks of artificial tanning or prolonged exposure to the sun?
  • Should thin people have to pay Medicare and other health costs for the health problems of obese people? Should obese people have higher premiums?
  • Low carbohydrate vs. low fat diets
  • Benefits of weight training vs. aerobics
  • How much weekly exercise is needed to achieve lasting health benefits
  • Health websites give too much information
  • Psychological disorders, such as cutting and self-harm, eating disorders, Autism, Tourette Syndrome, ADHD, ADD, Asperger Syndrome
  • Are we taking it too far by blaming fast food restaurants for obesity? When is it individual responsibility and when is it appropriate to place blame?
  • Should companies allow employees to exercise on work time?
  • Steroids, Antibiotics, Sprays; Are food manufacturers killing us?
  • Alternative medicine
  • Alzheimer’s disease
  • Causes of eating disorders, society’s portrayal of women
  • Eating disorders statistics
  • Down’s syndrome
  • Birth control
  • Dietary supplements
  • Exercise and fitness
  • Heart disease
  • In vitro fertilization
  • Attention deficit disorder
  • Investigate the history and authenticity of ADHD and ADD.
  • Organic foods
  • Prescription drugs
  • Vegetarianism
  • Learning disabilities
  • Schizophrenia
  • Coma recovery: techniques, successes, new strategies.
  • What are the primary types of cancer, and in what ways are they related?
  • Investigate the success ratio of holistic and non-medical cancer treatments.
  • Is Alzheimer’s inevitable? Examine theories regarding its prevention.
  • What forms of physical degeneracy are seen as linked to aging?
  • Investigate the connections between emotional stability and physical well-being, and provide evidence as to how the two may be related.
  • Investigate differences in rates of injury recovery and overcoming illness based on cultural parameters.
  • Examine the modern history of viral epidemics, researching what is known about the emergence of deadly viruses.
  • Examine how congenital heart disease may be treated, and how it differs from other forms of heart disease.
  • Is occasional depression a natural state to an extent, and is society too eager to treat this as a disorder?
  • Investigate Sociopathy, determine biological and psychological roots, typical patterns, and potentials of treatment.
  • How are compulsive behaviors determined as such? Explore examples of anal retention and expulsion, OCD, etc., as offering accepted criteria.
  • Research and analyze the nature of codependency as both a normal state of relations and as an unhealthy extreme.
  • Investigate the history and practice of electroshock, analyzing how and why this extreme treatment came to be widely used.
  • Hoarding: symptoms and treatments, causes, types of hoarding
  • Limits on extraordinary, costly treatments vs. doing everything possible
  • Nutritional/alternative therapy vs. mainstream medical treatment insurance coverage for alternative treatment?
  • Government grants for alternative treatment research?
  • Health superiority of alternative treatments?
  • Assisted suicide vs. preservation of life
  • Governmental insurance requirements
  • Should there be a national database to track controlled substances (i.e., OXYCODONE) or should it be a state issue?
  • Should parents avoid vaccinating their children?
  • Decline of communication due to technology
  • Online social networks and their influence
  • Impact of texting and cell phones
  • How do men and women communicate differently using body language, and why does it matter (in dating, the workplace, and social circles)?
  • Limitations of the media
  • Marketing to children
  • Sexual innuendos in marketing
  • Global marketing trends
  • Should certain kinds of ads be banned in the interest of health/morality/annoyance – alcohol, cigarettes, prescription meds, etc…?
  • Children’s programming and advertising
  • Most controversial political ads
  • Media response and public outcry to political ads
  • Campaign funds and their relation to political advertising
  • Domestic policy
  • Separation of church and state
  • Judge nominations and make up of supreme court
  • Congressional opposition to presidential nominees/filibusters
  • Affirmative action
  • Erosion of civil liberties vs. protection against terrorism
  • Patriot Act One and Two
  • Most developed nations have universal health coverage. Why doesn’t the U.S., the wealthiest nation, have it?
  • Tax cut as economic stimulation
  • Needs of the states vs. needs of the individuals
  • Budget deficits and deficit spending
  • Rich vs. poor
  • Protection of victims vs. freedom of speech/rights of the accused
  • How to improve race relations
  • Women still earn only 75 cents for every $1 a man earns. Explain why.
  • Discrimination in the workplace: analyzing issues for today’s corporations.
  • Gender discrimination
  • Interracial marriage
  • Should government impose restrictions on what kinds of foods can be served in school cafeterias?
  • Pros and cons of school uniforms.
  • Do children learn better in boys-only and girls-only schools?
  • Charter schools
  • Prayer in schools
  • Rights of the individual vs. community safety (or campus safety)
  • Funding for research
  • U.S. obligation to third world countries
  • Manufacturing of generic drugs vs. U.S. pharmaceutical companies
  • How contagious diseases “jump” from animal hosts to human
  • What treatments are available to people infected with HIV and are they effective?
  • Right to privacy of a child with AIDS vs. safety of other children
  • Limits for campus safety vs. personal freedom
  • Implications on violence and crime
  • Issues with binge drinking
  • Should the U.S. lower the drinking age to 18?
  • Leniency because of condition vs. community safety
  • Revoking drivers license vs. being able to attend classes and work
  • Age discrimination of violators
  • Animal rights vs. medical research
  • Should it be illegal to use animals for sports and entertainment?
  • Humane treatment of animals vs. factory farms
  • Animal welfare in slaughter houses
  • Animal protection vs. business, employment interests
  • School prestige vs. academic standards
  • Should shoe companies be able to give away free shoes and equipment to high school athletes?
  • Should college athletes be paid?
  • Doping in sports
  • What are the effects on children whose parents push them in sports?
  • Steroids: Should they be legalized?
  • Title IX: Has it helped women’s sports? Has it harmed men’s sports?
  • Social effects of team sports
  • Needed in public school library/curriculum?
  • Needed in entertainment industry?
  • Needed on the Internet?
  • Should parents censor textbooks and other literature for children in schools?
  • Parental filters on the Internet. Does censorship actually increase curiosity and use of pornography?
  • How is internet censorship used in China and around the world?
  • How has United States censorship changed over the decades?
  • Democratic kingmaker, influence on political succession
  • Impact of global initiative
  • Influence on fundraising
  • Influence as Secretary of State
  • Foreign policies
  • Influence on women
  • ACT or SAT score requirements
  • Promotional techniques, such as 1st time scholarships
  • 4 year vs. 2 year colleges
  • College admission policies
  • College tuition planning
  • Distance education
  • Diploma mills
  • Online porn vs. freedom of speech
  • Stalking, invasion of privacy vs. reasonable access
  • Hacking crimes–workable solutions?
  • What are the latest ways to steal identity and money?
  • From where does spam email come and can we stop it?
  • How do computer viruses spread and in what ways do they affect computers?
  • Cyber security
  • Securing Internet commerce: is it possible in today’s arms’ race of hackers and evolving technology?
  • Is downloading of media (music, videos, software) infringing on the rights of media producers and causing economic hardships on media creators?
  • Should media producers prosecute students and individuals that they suspect of downloading copyrighted materials?
  • Programs such as SPOTIFY and PANDORA
  • Copyright Law
  • Age limitations on surgery
  • Addiction to surgery
  • Demand for beauty by society
  • The dangers of breast implants for teenagers
  • The cost of cosmetic surgery
  • Plastic surgery
  • Weight loss surgery
  • Are surgeons “scissor happy,” and are surgeries widely unnecessarily
  • Negative texting, instant messaging, email
  • Is cyber-bullying as bad as face-to-face?
  • Kinds of punishment for cyber-bullying
  • Media response
  • Should the state or federal government put laws into place to prevent bullying?
  • Is homosexuality a choice, or are people born gay?
  • Evolution vs. Creationism.
  • Should “under God” remain in the Pledge of Allegiance?
  • Is healthcare a right or a privilege?
  • Fossil fuels vs. alternative energy.
  • Transgender bathroom policies.
  • Capitalism vs. socialism.
  • Should parents be allowed to spank their children?
  • Should sanctuary cities lose their federal funding?
  • The pros and cons of gun control.
  • Should the U.S. continue drone strikes in foreign countries?
  • Was the U.S. justified in going to war with Iraq?
  • How to solve the Israeli-Palestinian conflict.
  • The pros and cons of animal testing.
  • Do pro athletes have the right to sit during the national anthem?
  • Incarceration rates in the U.S.
  • Technology and the criminal justice system.
  • Police brutality and minorities.
  • Should the police wear body cameras?
  • In what circumstances should the death penalty be allowed?
  • Should we have stiffer penalties for drunk driving?
  • Should those who text while driving be put in jail?
  • White-collar crime and punishment.
  • Criminalizing protests and activism.
  • The rise of wrongful convictions.
  • Mutual consent vs. exploitation
  • Campuses with “no touch” policy
  • Drugs associated to Date Rape
  • Violence and Rape
  • Government support vs. parental financing
  • Benefits vs. harmful effects
  • Trump’s unconventional presidential campaign.
  • The psychology of Donald Trump.
  • Who is behind Trump’s political rise?
  • Donald Trump and evangelical voters.
  • Donald Trump the businessman.
  • Trump’s war on the press (aka “fake news”).
  • The Trump Organization and conflicts of interest.
  • The border wall and illegal immigration policy.
  • Global warming and climate change policy.
  • Trump-Russia collusion.
  • The rapid rise of “The Resistance.”
  • Trump’s legislative agenda; e.g., health care, tax policy, deregulation, etc.
  • Trump’s “America First” trade and foreign policy.
  • The case for (or against) the Trump presidency.
  • Punishment vs. treatment
  • Family reactions
  • Social acceptance
  • Community safety vs. legalization
  • United States military involvement in Colombian drug trade?
  • Drug legalization
  • Abstinence Program: Do they work?
  • Should the federal government legalize the use of marijuana?
  • What is the true key to happiness?
  • What is the cause of America’s obesity crisis?
  • Why sleep is necessary.
  • Are plastic bottles really bad for you?
  • How to encourage people to recycle more.
  • How 3D printers benefit everyone.
  • How do GPS systems on smartphones work?
  • How have oil spills impacted the environment?
  • Verbal vs. nonverbal communication.
  • The accuracy of lie detector tests.
  • How Bill Gates and Steve Jobs changed the world.
  • The pros and cons of hitchhiking.
  • The PC vs. the Mac.
  • What causes tornadoes?
  • Pollution, air, and water
  • Endangered species
  • What are the risks of climate change and global warming?
  • Rain forests
  • Alternative energy
  • Alternative fuel/hybrid vehicles
  • Conservation
  • Deforestation
  • Greenhouse effect
  • Marine pollution
  • How have oil spills affected the planet and what steps are being taken to prevent them?
  • Sustainability of buildings
  • Recycling programs
  • Cost of “green” programs
  • Wind turbines
  • Landfill issues
  • Renewable fuels
  • Radioactive waste disposal
  • Soil pollution
  • Wildlife conservation: what efforts are being taken to protect endangered wildlife?
  • Excessive burden on industries?
  • Drilling for oil in Alaska’s ANWR (Arctic National Wildlife Refuge)
  • Gasoline consumption vs. SUV’s popularity
  • Wildlife protection vs. rights of developers
  • Clean air and water standards–weakened vs. strengthened
  • What are the dangers of scuba diving and underwater exploration?
  • Should the use of coal be subjected to stricter environmental regulations than other fuels?
  • Is global warming a hoax? Is it being exaggerated?
  • How much is too much noise? What, if anything, should we do to curb it?
  • Protecting victims vs. rights of the accused
  • Women who kill abusive husbands vs. punishment for murder
  • Marital rape?
  • How to protect children vs. respect for parental rights
  • Children who kill abusive parents
  • Child abuse–workable solutions?
  • Child abuse
  • Domestic abuse
  • Organic farming vs. mainline use of chemical sprays
  • How to best protect the environment; conservation
  • Family vs. corporate farms
  • Food production costs
  • Interventionism?
  • Third world debt and World Bank/International Monetary Fund
  • Military support vs. economic development of third world countries
  • Human rights violations
  • European Union in competition with the U.S.
  • Unilateralism
  • Relevance of the United Nations
  • Neocon role in foreign policy
  • Christian right influence on foreign policy
  • Pentagon vs. State Department
  • Nation building as a policy
  • Arms control
  • Obama’s National Strategy for Counterterrorism
  • Control of al Qaeda
  • Drawdown of U.S. Armed Forces in the Middle East
  • Cats vs. dogs: which makes the better pet?
  • My pet can live forever: why I love animal clones.
  • According to my social media profile, my life is perfect.
  • Football vs. baseball: which sport is America’s favorite pastime?
  • Starbucks vs. Caribou: whose coffee is better?
  • What does your dog really think of you?
  • Why millennials deserve lower pay.
  • What makes people end up with so many mismatched socks?
  • How to become a research paper master.
  • How reading Tuesdays with Morrie can make you wiser.
  • Easy way to earn revenues vs. social damage
  • Individual freedom vs. social damage
  • Do lotteries actually benefit education or is it a scam?
  • Can gamblers ever acquire a statistical advantage over the house in casino games?
  • Should there be a constitutional amendment that allows gays and lesbians to legally marry?
  • Adoption rights?
  • Need special rights for protection?
  • College campus response
  • Gay, lesbian, bisexual, or transgender
  • Gay parenting
  • Elderly to share in the tax burden vs. government support of elderly
  • Future of social security
  • Job discrimination
  • Child rearing
  • Employment issues
  • Generational differences
  • Community and police safety vs. unrestricted right to bear arms
  • NRA (National Rifle Association)
  • 2nd Amendment
  • Do states that allow citizens to carry guns have higher or lower crime rates?
  • Community safety vs. freedom of Speech
  • Punishment inequities
  • Persecution of alternative lifestyles
  • Church Arson: Hate crime?
  • Prevention of hazing
  • Greek organizations and rituals of hazing
  • Statistics of death or injury due to Hazing
  • High Schools and Hazing
  • What happened during the Salem witch trials?
  • How did trains and railroads change life in America?
  • What may have occurred during the Roswell UFO incident of 1947?
  • What Olympic events were practiced in ancient Greece?
  • How did Cleopatra come to power in Egypt? What did she accomplish during her reign?
  • What are the origins of the conflict in Darfur?
  • What was the women’s suffrage movement and how did it change America?
  • How was the assassination of Abraham Lincoln plotted and executed?
  • How did Cold War tension affect the US and the world?
  • What happened to the lost settlers at Roanoke?
  • How did Julius Caesar affect Rome?
  • How did the Freedom Riders change society?
  • What was the code of the Bushido and how did it affect samurai warriors?
  • How did Joan of Arc change history?
  • What dangers and hardships did Lewis and Clark face when exploring the Midwest?
  • How are the Great Depression and the Great Recession similar and different?
  • What was the Manhattan Project and what impact did it have on the world?
  • Why did Marin Luther protest against the Catholic Church?
  • How did the Roman Empire fall?
  • How did the black plague affect Europe?
  • How did Genghis Khan conquer Persia?
  • How did journalists influence US war efforts in Vietnam?
  • Who is Vlad the Impaler and what is his connection to Count Dracula?
  • Who was a greater inventor, Leonardo di Vinci or Thomas Edison?
  • What was the role of African Americans during the Revolutionary War?
  • What was Britain’s view of India during British rule?
  • What were the factors in the China-Tibet conflict?
  • Research and analyze the emergence of the Catholic Church as a political force following the collapse of the Roman Empire.
  • Investigate Dr. Eileen Powers’ claim that the Roman Empire was lost primarily due to an inability to perceive itself as subject to the change inevitable to all governments, or her “force of nature” theory.
  • Explore and discuss the actual cooperation occurring through the centuries of Barbarian conquest of Rome.
  • Examine the differences and similarities between Western and Eastern concepts and practices of kingship.
  • Investigate and explain the trajectory of ALEXANDER THE GREAT’s empire, with minimal emphasis on personal leadership.
  • To what extent did commerce first link Eastern and Western cultures, and how did this influence early international relations?
  • Research and analyze how Japan moved from a feudalistic to a modern state, and how geographic isolation played a role in the process.
  • Analyze the process and effects of Romanization on the Celtic people of ancient England: benefits, conflicts, influences.
  • Overview of British dominance of Ireland, Wales, and Scotland! How was this justified in each case, and what motivated the attempts over centuries of rebellion and failure?
  • Investigate the known consequences of Guttenberg’s printing press within the first 30 years of its invention, and only in regard to the interaction between European nations.
  • Identify and analyze the point at which the Reformation became fused with European politics and nationalist agendas.
  • To what extent did Henry VIII promote the Reformation, despite his vigorous persecution of heretics in England?
  • Trace and discuss the uses of papal power as a military and political device in the 14th and 15th centuries.
  • Research the city/state of Florence from the 13th to the 16th centuries, discussing how and why it evolved as so fiercely republican.
  • Compare and contrast the Russian Czarism of Peter, Elizabeth, and Catherine with the monarchies of England and France in the 18th and 19th centuries.
  • Investigate the enormous significance of Catholic Orthodoxy as the dominant faith in Russia, and its meaning and influence in an empire populated by a minimal aristocracy and predominant serfdom.
  • To what extent did Philip II’s religious convictions shape European policy and conflict in the 16th century?
  • Trace the path leading to the convocation of the Estates in France in the late 18th century, leading to the Revolution. Assess political and social errors responsible.
  • What eventually ended serfdom in Russia, and why were numerous attempts to end it by the Czars in power consistently unsuccessful?
  • Research and report on how England was transformed in the 19th century by the industrial revolution and the advent of the railroad.
  • Compare and contrast the consequences of the industrial revolutions in England and America in terms of urbanization.
  • What were the circumstances leading to World War I, and how might the war have been averted?
  • Assess the Cold War of the 20th century in an historical context: can any parallels be made between this conflict and other ongoing tensions between major powers in earlier centuries?
  • Analyze Roosevelt’s decisions in implementing the New Deal, beginning with the closing of the banks. Suggest alternative strategies, or reinforce the rationale of the actions.
  • What architectural marvels were found in Tenochtitlan, capital of the Aztec Empire?
  • What was the cultural significance of the first moon landing?
  • Food programs
  • Welfare reform
  • Governmental supplementation
  • Homeless: urban restrictions vs. needs of the destitute
  • Workable solutions?
  • Realistic limits vs. openness toward people in need
  • English as official language vs. respect for diversity
  • Should illegal immigrants be made legal citizens?
  • Access to public school and public programs for Illegal Aliens
  • Policing borders–workable solutions?
  • Employment and/or taxation for Illegal Aliens
  • International trade
  • Democratization
  • “Shock and awe”
  • U.S. occupation vs. liberation
  • Iraqi run vs. U.S. puppet state
  • Oil and Gas prices-Control of resources
  • Effective self-government
  • War on Terrorism
  • Is America winning or losing the War? What is the measurement of success? Have the benefits outweighed the costs?
  • Parental leave for both parents
  • FMLA (Family Medical Leave Act)
  • Bonding time
  • Preemptive strike policy
  • Precision weapons
  • Intelligence reliability
  • Afghanistan – a success or stalemate
  • Should the U.S. have mandatory military conscriptions? For whom?
  • Governmental support
  • Preparedness
  • School emergency plans
  • Community warning systems
  • Damage costs
  • U.S. presidential elections should be decided by the popular vote, rather than the Electoral College.
  • The minimum wage should be increased to provide a “livable” wage for working families.
  • There should be stiffer penalties for those who commit animal cruelty.
  • School vouchers increase competition and create better quality schools.
  • The corporate tax rate should be lowered to create more jobs.
  • Social Security should be privatized.
  • Human torture should be banned in all circumstances.
  • Affirmative action is still needed to ensure racial and gender equality.
  • The U.S. dollar should go back on the gold standard.
  • Euthanasia and assisted suicide should be outlawed.
  • Police brutality vs. dangers that police face
  • Racially motivated brutality?
  • Politician’s right to privacy vs. the public’s right to know
  • Amount of money going into presidential campaigns
  • Views on abortion, gay marriage, and other controversial topics
  • Political debates throughout history
  • Third-party candidates at presidential debates
  • Rights of religious citizens vs. freedom from imposition (e.g. prayer in schools)
  • Religious motivation for political involvement vs. cultural pluralism
  • Christian Right’s influence on foreign policy
  • How serious? Causes? Workable solutions?
  • Funding abortion as a form of birth control in third world countries?
  • What would happen globally if the demand for natural resources is greater than the supply?
  • Limitation of social deterioration vs. freedom of speech
  • Definition of Pornography
  • Child Pornography
  • Building prisons vs. alternative sentencing
  • Adjusted sentencing for lesser crimes
  • Community service
  • Diversion Programs for inmates
  • How does the prison population in America compare to other nations?
  • Prostitution laws in the US and abroad
  • Benefits and drawbacks to legalizing prostitution
  • Psychological effect on prostitutes and former prostitutes
  • Sex slavery, buying and selling
  • Should the government be allowed to wire tap without permission?
  • What limitations, if any, should be applied to the paparazzi?
  • What medical information should be confidential? Who, if anybody, should have access to medical records?
  • Does the public have a right to know about a public figure’s private life?
  • Privacy rights
  • Do harsher punishments mean fewer convictions?
  • Date rape: consent vs. exploitation
  • Drugs-Rohypnol, GHB, KETAMINE
  • Legalization of Date Rape Drugs
  • Recently, a 17-year-old boy was sentenced to 10 years in prison for having consensual oral sex with a 15-year-old girl. Are statutory rape laws patronizing to girls and discriminatory to boys?
  • Acquaintance rape
  • Is there one true religion?
  • Freedom of religion
  • Offer distinct reasons why the Bible should be studied as literature, removed from religious significance.
  • From Hollywood to the White House: the political rise of Ronald Reagan.
  • The Great Communicator: how Reagan captured the hearts of Americans.
  • 1981 assassination attempt: bullet wound leaves Reagan inches away from death.
  • Reagan appoints the first female Supreme Court justice.
  • The PATCO breakup and decline of the labor unions.
  • Tax cuts and “Reaganomics.”
  • The “Iran-Contra” scandal.
  • Reagan, Gorbachev, and the end of the Cold War.
  • The final act: Reagan’s Alzheimer’s disease diagnosis and long goodbye.
  • How has airport security intensified since September 11th, 2001?
  • Identity theft
  • Homeland Security: Are we safer since the creation of this department?
  • Should the government use invasive pat-downs and body scans to ensure passenger safety or are there better methods?
  • Is arming Pilots a good idea?
  • What responsibilities do secret service agents have?
  • Student loan scams
  • How to avoid student loan debt
  • Managing student loan debt
  • Driverless cars and the future of transportation.
  • Breaking the glass ceiling: the impact of the women’s rights movement.
  • How seniors contribute to societal well-being.
  • How disabled individuals are viewed by society.
  • The modern-day civil rights movement.
  • Has technology made us more detached from society?
  • The role of religion in society.
  • In today’s society, are we better off or worse off than previous generations?
  • Popular music and its impact on the culture.
  • Class and geographical segregation.
  • The differences between life in the city, suburbs, and/or rural areas.
  • Should parents be able to create designer babies?
  • Should microchips be implanted inside humans for better tracking and security?
  • Will smart watches eventually replace cell phones?
  • The pros and cons of being a global citizen.
  • Progressive vs. flat tax
  • Excessive taxes vs. worthwhile programs
  • Is text messaging contributing to teen illiteracy?
  • How eating disorders impact teens.
  • Tablets vs. textbooks.
  • Do standardized tests improve teen education?
  • Are violent video games contributing to juvenile delinquency?
  • Is English literature relevant for today’s teens?
  • Should the HPV vaccine be required for teen girls?
  • Do teachers inflate grades so students can pass?
  • Should advertisers be allowed to target teens?
  • How to encourage teens to stop smoking.
  • The causes and effects of teen alcohol and drug abuse.
  • How to prevent teen pregnancy.
  • Osama Bin Laden
  • World Trade Center and Pentagon bombings
  • September 11, 2001
  • War on terrorism
  • Afghanistan
  • Bioterrorism
  • Al Qaida: Has U.S. policy actually spread terrorism rather than contained it? Will it get better or worse? Why and how?
  • Can terrorism ever be justified?
  • What kind of person becomes a suicide bomber?
  • What were the circumstances surrounding the death of Osama Bin Laden?
  • Has the Patriot Act prevented or stopped terrorist acts in America?
  • How is text messaging affecting teen literacy?
  • Cell Phones: How have they changed us socially?
  • Does the Information Age mean we are losing important historical information?
  • Where did hip-hop music originate?
  • A day in the life of a Buddhist monk.
  • How does the brain store and retrieve memories?
  • What life is like inside an ant colony.
  • The case for and against the existence of UFOs.
  • Can virtual reality adequately substitute for actual reality?
  • Are dreams hidden messages or just hot air?
  • Why do people collect the most ridiculous things?
  • When is it time to get out of an abusive relationship?
  • The art of pretending to care.
  • Public attitudes toward veterans
  • Health issues caused by service time
  • Organizations for veterans
  • Governmental support for veterans
  • What programs are available to help war veterans get back into society?
  • Iraq War Vets: Are they being cheated on medical benefits?
  • Is there a glass ceiling?
  • Obstacles to women running for political office?
  • Should women be priests, pastors, ministers, and rabbis?
  • What differences, if any, are there in children who are raised by stay-at-home moms and working moms? Does society today still discriminate against working mothers who wish to have flexible work schedules?
  • Should stay-at-home moms get a salary from the government?
  • Why do we sleep?
  • How do GPS systems work?
  • Who was the first person to reach the North Pole?
  • Did anybody ever escape Alcatraz?
  • What was life like for a gladiator?
  • Are there any effective means of repelling insects?
  • How is bulletproof clothing made?
  • How was the skateboard invented and how has it changed over the years?
  • What is life like inside of a beehive?
  • Where did hip hop originate and who were its founders?
  • What makes the platypus a unique and interesting mammal?
  • What is daily life like for a Buddhist monk?
  • How did gunpowder change warfare?
  • How were cats and dogs domesticated and for what purposes?
  • What do historians know about ninjas?
  • Are humans still evolving?
  • What is the curse of the pharaohs?
  • Why was Socrates executed?
  • How did ancient sailors navigate the globe?
  • How are black holes formed?
  • How do submarines work?
  • Do lie detector tests accurately determine truthful statements?
  • How does a hybrid car save energy?
  • What ingredients can be found in a hotdog?
  • How does a shark hunt?
  • How does the human brain store and retrieve memories?
  • How does stealth technology shield aircraft from radar?
  • What causes tornados?
  • How does night vision work?
  • What causes desert mirages, and how do they affect wanderers?
  • What are sinkholes, and how are they formed?
  • What are the major theories explaining the disappearance of the dinosaurs?
  • Should we reform laws to make it harder to get a divorce?
  • Divorce rates
  • Family relationships
  • Family values
  • Race relations
  • Marriage and Divorce
  • A view of home life and its effect on child development
  • How 4 generations in the workplace can work together.
  • Building positive employee relationships
  • Modern work environments
  • Business leadership
  • Workforce regulations
  • Small business and taxation
  • Corporate law
  • Issues in modern Human Resources: Are today’s corporations patronizing employees or being more responsible for them?
  • Cultural conflict in globalization: Strategies for successfully establishing a presence in a foreign culture
  • Corporate abuse: How can executives so successfully manipulate corporations criminally?
  • Identifying stakeholders in non-public companies: is the corporate responsibility the same as for public offerings?
  • Devise a new model of leadership for business today, incorporating elements of existing leadership models and theories.
  • Examine the actual impact of social media as a business promotion instrument.
  • Devise a scenario in which traditionally unethical business practices may be justified.
  • Should newspaper reporters be required to reveal their sources?
  • Do the media (both print and broadcast) report fairly? Do they ever cross the line between reporting the news and creating the news?
  • Does news coverage favor whites?
  • What steps are involved in creating a movie or television show?
  • How have the film and music industries dealt with piracy?
  • Media conglomerates/ownership
  • Minorities in mass media
  • Portrayal of women
  • Reality television
  • Television violence
  • Media portrayals
  • Sensationalized media
  • Examine the issues of responsibility in pharmaceutical companies’ promotion of drugs in the media.
  • Forensic science technology
  • What are the current capabilities and future goals of genetic engineers?
  • What obstacles faced scientists in breaking the sound barrier?
  • What is alchemy and how has it been attempted?
  • What technologies are available to home owners to help them conserve energy?
  • Nuclear energy
  • Clean energy resources
  • Wind energy: Is wind energy really that inexpensive? Is it effective? Is it practical?
  • What are the dangers and hazards of using nuclear power?
  • Investigate Freud’s contributions to psychology as they exist today: what value remains?
  • Are there gender foundations to psychology and behavior that are removed from cultural considerations? To what extent does gender actually dictate thought process?
  • To what extent is sexual orientation dictated by culture, and is there an orientation not subject to social and cultural influences?
  • Investigate the psychological process in group dynamics with regard to the emergence of leaders and the compliance of others.
  • Compare and contrast Jung, Freud, and Adler: explore distinctions and commonalities.
  • What is “normal,” and to what extent is psychology reliant on culture to define this?
  • Research and assess the effectiveness of radical psychotherapies and unconventional treatments.
  • Research the concept of human will as both a component of individual psychology and a process or element removed from it.
  • To what extent is self-image influenced by culture in regard to eating disorders? Are external factors entirely to blame?
  • How do centuries-old beliefs of madness and dementia relate to modern conceptions of mental illness?
  • Is psychology itself inevitably a non-science in that virtually any theory may be substantiated, or is there a foundation of science to the subject to which all theorists must conform?
  • Examine Euripides and gender psychology: what do the Trojan Women and Medea reveal?
  • Using three characters, explore Chaucer’s insight into human behavior in The Canterbury Tales.
  • Identify the true relationship between Dante and Virgil in The Divine Comedy, emphasizing Dante’s reliance on the poet.
  • Research and discuss the English fascination for euphemism and ornate narratives in the 16th century, beginning with John Lyly.
  • Examine any existing controversies regarding Shakespearean authorship, citing arguments on both sides.
  • Analyze similarities and differences between Marlowe and Shakespeare in regard to Tamburlaine and Titus Andronicus.
  • Defend or support Bloom’s assertion of Shakespeare as the “inventor of the human being.”
  • To what degree are Shakespeare’s plays influenced by, or reflective, of the Elizabethan era? Identify specific cultural and national events linked to at least 3 plays.
  • Analyze the unusual construction of A Winter’s Tale in regard to transition from comedy to drama. Is this valid? Does the transition benefit or harm the play?
  • Support the belief that Shakespeare is representing himself as Prospero through evidence, or similarly refute the belief.
  • Why was extreme violence so popular in English Reformation drama? Cite Marlowe, Kyd, Webster, and Shakespeare.
  • Analyze the metaphysical in Donne’s poetry: is it spiritual, existential, or both?
  • What is Shelley seeking to say in Frankenstein? Support your answer with passages from the novel.
  • Compare and contrast Tolstoy’s Anna Karenina with Flaubert’s Madame Bovary, noting the characters of the heroines.
  • It is argued that Dickens failed when he turned to serious, romantic narrative in his novels. Using Copperfield, Great Expectations, and Dombey and Son, defend or refute this claim.
  • Assess Dickens’ stance as a moralist in Bleak House and Hard Times: to what extent does he seek reform, and to what does he comment on the human condition?
  • Was the Harry Potter phenomenon warranted by quality of storytelling or more a matter of public receptivity at the time combined with media exposure?

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20 thoughts on “717 Good Research Paper Topics”

How has music evolved? How has music effected history? Music of the past vs music of the present. How has the music industry effected the music’s quality?

Do you think abortion is legal? Why they do abortion?

Why are people instinctively afraid of animals that are not mammals?

Should abortion be legalized? Should domestic abuse and child abuse victims be granted clemency for killing their abuser?

Jewish holocaust and its contribution to European History, specifically Germany

What is the most popular college in the United States?

The Black Knight: Space Waste or Alien Satellite? The Moon Landing: Real or Hollywood Hoax? Have We Become Too Politically Correct? Paranormal Research: Real? Fake? Should it be offered in college? Who really was Jack the Ripper? Can a zombie apocalypse truly occur? Who is the best or worst president of the USA? The Men in Black: real or hoax?

Why Marching Band is a sport.

Marching band is not a sport

how did aids start?

Topic : Alternative medicine Research question : Does the alternative medicine is safe and standardized Hypothesis : analyse the quality controle of alternative medicine formulations

Does our nostalgic music/childhood songs affect our present lifestyle, and in what ways?

reverse discriminations is still discrimination so there’s no such thing as that. like reverse racism isn’t a thing because that is still racism

Men on birth control and not women.

You forget the topic Islamophobia 😉

You should add a music section. Is Muzio Clementi overshadowed by Mozart? The Toccata and Fugue in D- really wasn’t written by Bach The use of the “Dies Irae” in cinema Why is modern music so repetitive and simple compared to classical music?

I want to do a research project on Education

I want to research but not get a perfect topic help me give me a best topic about current affairs

Topic: History. Are the Crusades oversimplified? where they justified? If so, how? Topic: Current affairs. Is the term “conspiracy theory” used to discredit any non-mainstream, controversial opinions. Topic: Gun control. Does limiting magazine capacity for firearms have any effect on gun crime? Are high-capacity magazines ever necessary for self-defense? Topic: Economics. Are minimum wage laws necessary to guarantee “decent”, or do the laws of supply and demand automatically ensure that?

Are women funny?

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101 research paper topics.

  • Why do we sleep ?
  • How do GPS systems work?
  • Who was the first person to reach the North Pole ?
  • Did anybody ever escape Alcatraz ?
  • What was life like for a gladiator ?
  • What are the effects of prolonged steroid use on the human body?
  • What happened during the Salem witch trials ?
  • Are there any effective means of repelling insects ?
  • How did trains and railroads change life in America?
  • What may have occurred during the Roswell  UFO incident of 1947?
  • How is bulletproof clothing made?
  • What Olympic events were practiced in ancient Greece?
  • What are the major theories explaining the disappearance of the dinosaurs ?
  • How was the skateboard invented and how has it changed over the years?
  • How did the long bow contribute to English military dominance?
  • What caused the stock market crash of 2008?
  • How did Cleopatra come to power in Egypt what did she do during her reign?
  • How has airport security intensified since September 11 th , 2001?
  • What is life like inside of a beehive ?
  • Where did hip hop originate and who were its founders?
  • What makes the platypus a unique and interesting mammal?
  • How does tobacco use affect the human body?
  • How do computer viruses spread and in what ways do they affect computers?
  • What is daily life like for a Buddhist monk ?
  • What are the origins of the conflict in Darfur ?
  • How did gunpowder change warfare?
  • In what ways do Wal-Mart stores affect local economies?
  • How were cats and dogs domesticated and for what purposes?
  • What do historians know about ninjas ?
  • How has the music industry been affected by the internet and digital downloading?
  • What were the circumstances surrounding the death of Osama Bin Laden ?
  • What was the women’s suffrage movement and how did it change America?
  • What efforts are being taken to protect endangered wildlife ?
  • How much does the war on drugs cost Americans each year?
  • How is text messaging affecting teen literacy?
  • Are humans still evolving ?
  • What technologies are available to home owners to help them conserve energy ?
  • How have oil spills affected the planet and what steps are being taken to prevent them?
  • What was the Magna Carta and how did it change England?
  • What is the curse of the pharaohs?
  • Why was Socrates executed?
  • What nonlethal weapons are used by police to subdue rioters?
  • How does the prison population in America compare to other nations?
  • How did ancient sailors navigate the globe?
  • Can gamblers ever acquire a statistical advantage over the house in casino games?
  • What is alchemy and how has it been attempted?
  • How are black holes formed?
  • How was the assassination of Abraham Lincoln plotted and executed?
  • Do the benefits of vaccination outweigh the risks?
  • How do submarines work?
  • Do lie detector tests accurately determine truthful statements?
  • How did Cold War tension affect the US and the world?
  • What happened to the lost settlers at Roanoke ?
  • How does a hybrid car save energy?
  • What ingredients can be found inside of a hotdog ?
  • How did Julius Caesar affect Rome?
  • What are some common sleep disorders and how are they treated?
  • How did the Freedom Riders change society?
  • How is internet censorship used in China and around the world?
  • What was the code of the Bushido and how did it affect samurai warriors ?
  • What are the risks of artificial tanning or prolonged exposure to the sun?
  • What programs are available to help war veterans get back into society?
  • What steps are involved in creating a movie or television show?
  • How have the film and music industries dealt with piracy ?
  • How did Joan of Arc change history?
  • What responsibilities do secret service agents have?
  • How does a shark hunt?
  • What dangers and hardships did Lewis and Clark face when exploring the Midwest?
  • Has the Patriot Act prevented or stopped terrorist acts in America?
  • Do states that allow citizens to carry guns have higher or lower crime rates?
  • How are the Great Depression and the Great Recession similar and different?
  • What are the dangers of scuba diving and underwater exploration?
  • How does the human brain store and retrieve memories ?
  • What was the Manhattan Project and what impact did it have on the world?
  • How does stealth technology shield aircraft from radar?
  • What causes tornadoes ?
  • Why did Martin Luther protest against the Catholic Church?
  • How does a search engine work?
  • What are the current capabilities and future goals of genetic engineers ?
  • How did the Roman Empire fall?
  • What obstacles faced scientists in breaking the sound barrier ?
  • How did the black plague affect Europe?
  • What happened to Amelia Earhart ?
  • What are the dangers and hazards of using nuclear power ?
  • How did Genghis Khan conquer Persia?
  • What architectural marvels were found in Tenochtitlan, capital of the Aztec Empire ?
  • From where does spam email come and can we stop it?
  • How does night vision work?
  • How did journalists influence US war efforts in Vietnam ?
  • What are the benefits and hazards of medical marijuana ?
  • What causes desert mirages and how do they affect wanderers?
  • What was the cultural significance of the first moon landing ?
  • What are sinkholes and how are they formed?
  • Have any psychics ever solved crimes or prevented them from occurring?
  • Who is Vlad the Impaler and what is his connection to Count Dracula ?
  • What are the risks of climate change and global warming ?
  • What treatments are available to people infected with HIV and are they effective?
  • Who was a greater inventor, Leonardo di Vinci or Thomas Edison ?
  • How are the Chinese and American economies similar and different?
  • Why was communism unsuccessful in so many countries?
  • In what ways do video games affect children and teenagers?

This is an image of a young woman in a library. She is sitting at a desk with a pile of books and looking toward the ceiling. She appears to be in deep thought.

923 Comments

I like using this website when I assist kids with learning as a lot of these topics are quickly covered in the school systems. Thankyou

Mackenah Nicole Molina

Wow! I always have trouble deiciding what to do a research project on but this list has totally solved that. Now my only problem is choosing what idea on this list I should do first!

Most of these my teacher rejected because apparently ‘these aren’t grade level topics, and I doubt they interest you”

I’m sorry to hear that. Sounds like you will have a potentially valuable character-building experience in the short-term.

Edwin Augusto Galindo Cuba

THIS SITE IS AWESOME, THERE ARE LOTS OF TOPICS TO LEARN AND MASTER OUR SKILLS!

research kid

I need one about animals, please. I have been challenged to a animal research project, Due Friday. I have no clue what to research! somebody help, thanks for reading!

You can do one on bats

For international studies you can do Defense and Security.

This was very helpful.

Research on Ben Franklin? I think THAT will get a real charge out of everyone (hehehehegetit)

Mandy Maher

“Is it possible to colonize Mars?”

maddy burney

these are silly topics

thx for making this real.

more gaming questions!!!!!!

Is it still considered stealing if you don’t get caught?

Yes, yes it is still considered stealing.

I need topics on memes

Mary Nnamani

Please I need project topics on Language Literature

Marcella Vallarino

I would appreciate a list of survey questions for middle school grades 6-8

I need a research topics about public sector management

I NEED FIVE EXAMPLES EACH ON QUALITATIVE AND QUANTITATIVE RESEARCH (EDUCATION, HEALTH, TECHNOLOGY, ECONOMY AND ENGINEERING)

publish research that are interesting please……

hey can you do one on the burmiueda triangle

Anybody know video games effect kids,and,teens. There Fun!!

they’re

I need a topic about woman history if any of u can find 1 please that would be great!

You could research about the history of the astronauts, and of human past (WWI, WWII, etc.)

so about women? Manitoba Women Win the Right to Vote in Municipal Elections, The First Women, January 23, 1849: Elizabeth Blackwell becomes the first woman to graduate from medical school and become a doctor in the United States, Rosa Parks Civil Rights Equal Pay. I have way more. so if you need more just ask.

communism is good

what are you a communist?!?!

Did FDR know about the upcoming attack on Pearl Harbor on 07 DEC 1941.

do you know how babies are born

Christine Singu

kindly assist with a research topic in the field of accounting or auditing

need more about US army

Please can yiu give me a topic in education

I think one should be how can music/Video games can affect the life for people

or How Do Video Games Affect Teenagers?

zimbabwe leader

I think a good topic is supporting the confederate flag!

Need a research topic within the context of students union government and dues payments

do more weird ones plz

joyce alcantara

Hi pls po can you give me a topic relate for humanities pls thank u.

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Top-notch Research Paper Topics List

29 November, 2020

16 minutes read

Author:  Kate Smith

You know how they say: “Be strong; the beginnings to great things are always the hardest”? And though you might not consider writing a research paper and choosing a good research paper topic a really great thing, you see our point. If you are having troubles getting started with the composition in question, we have good news for you.

Research Paper Topics

We have come up with a lengthy list of good research paper topics that will come in handy if you are running out of research paper ideas. Sounds like something you can use? Then don’t hesitate to make the most out of it!

And if you would rather order a whole piece from a professional, we can be of much help here too. Our research paper writing service can craft a piece for you at any time and on any topic. Just drop us a line!

But before we dive into various topics we have to offer, consider checking out our recommendations on how to find argumentative research paper topics all by yourself.

What is a Good Topic for a Research Paper?

good research paper topic

There are several facets of a good research paper topic. To put it short, your theme should be:

When you pose a topic for your research, be sure that it is clear. A reader should be able to understand its purpose right away. If he doesn’t, you did not do a very good job formulating the subject line.

No kidding: you should do your best to be innovative even if you are writing a paper on something as old as time. It might not be simple, but we’re sure you can find a new perspective if you dedicate enough time to the search.

The paper must contain precise figures or facts. They are at the core of your research. Don’t confuse this type of composition with descriptive writing. They have nothing in common. So, focus on precise data: that’s exactly what your readers expect from you.

How to Choose Interesting Research Paper Topics

how to choose research paper topic

Before you take one of the topics we suggest, we recommend you to try to come up with a good topic yourself. It might be easier than you think. Here are several ways to spot an interesting idea:

Think of Something You Find Interesting.

There are always things we find astonishing but don’t have enough time to explore deeper. Maybe this is your chance to give it some time and conduct in-depth research. Of course, take into account the discipline and the academic level required. Thus, it’s pretty clear that you can’t talk about the Vietnam War for the Social Studies class paper (unless you’re looking into the differences of the military operations impact on the civilians and soldiers).

Choose a Topic With Sufficient Data for the Research.

The main point of writing this paper lies in finding information at various credible sources and refining it. Therefore, if you pick a subject that is somewhat new or wasn’t studied well in the past, you’ll have no information to work with. That is why the availability of credible information is vital to the success of the writing process.

Narrow the Subject Down.

The subject you find great interest in might be too broad. Not to sound too shallow, it’s better for you to pick just one perspective of the problem and study it carefully. This way you will be able to dive deep enough into the research instead of just hitting the high spots.

These are our recommendations on how to choose a theme on your own. Now let’s look into other tips we’d like to offer to you before you get down to writing.

Related post: How to write an Argumentative essay 

How to write an outline for a research paper

While you can find all the essential information in our guide on how to write a perfect research paper outline , here we’ll introduce you to the basics.

  • Find an engaging topic. For it, read on to see what subject line we have to offer.
  • Create a list of credible sources to take a look at. You can either ask you tutor for recommendations, surf the web, or go old school and visit a library for suggestions.
  • Mark all the elements you will add to your outline.
  • Briefly explain what each of these components will be about. But don’t bury the blueprint under too many details. Keep it short!
  • Finally, find good examples to explore.

Now, that you understand how to craft a plan for your paper, have our tips to help you out along the way, your only job is to find good topic ideas to write about. And we can help you with that too!

Note that our company provides academic writing help. You can buy a research paper written from scratch by our  essay writer .

Now that you know your ways around crafting good research papers, we want to introduce you to our list of various ideas you can conduct a thorough research on. Use our ideas if coming up with your own is something you don’t want to deal with at the moment.

Psychology Research Paper Topics

  • Are people with the IQ level above the average really unhappy?
  • Eating disorders: Are they necessarily associated with the self-image issues?
  • The impact of stress on the mental health of a person.
  • The nature and causes of child violence.
  • Insomnia as a valid excuse for breaking the rules or committing crimes.
  • Race relations in the USA in the 20th century and today.
  • The nature and causes of sexual orientation: Different perspectives on the issue.

Easy Research Paper Topics

  • The glass ceiling: Myth or reality?
  • Popular ventures started without money.
  • The history of the social media boom around the globe.
  • Top tech startups of the 21st century.
  • Video games and their impact on the development of young people.
  • Animal testing across the globe.
  • Is global warming real?
  • Has the Internet become a safer place with the cybersecurity principles implementation?
  • The impact of the screen time on a child’s mental development.
  • The US election system: The history and principles behind it.

World History Research Paper Topics

  • The life and traditions of the first Gladiators.
  • Hiroshima and Nagasaki: Bits and pieces of the tragedy.
  • The history of Singapore: From worst to first.
  • North Korea: Dictatorship ideology and its complications.
  • The establishment of the League of Nations.
  • Racial discrimination origins.
  • The history of the Gutenberg Bible.
  • The most powerful opponent of Germany in the WWI.
  • Egyptian pyramids: The history and meaning.
  • The history of Christianity.

Controversial Topics for Research Paper

  • The history of modern Israel.
  • Abortion: “My body – my rules” or the discrimination of the unborns’ rights?
  • How Facebook shaped the way people communicate today.
  • Beauty pageants: Celebration of the beauty or discrimination in disguise?
  • Death penalty around the globe.
  • Implications of gun control in the USA.
  • Creationism against Evolution.
  • Physical punishment as a core principle of children’s upbringing.
  • The origins of the “invasion of privacy” notion across the world.
  • The impact of social media addiction on young people.
  • Genetic predisposition to committing a crime.

High School Research Paper Topics

  • School uniform: The good, the bad, and the ugly.
  • The effect of sexual acts displays on TV.
  • The American Dream of Generation X and the Millennials.
  • Biggest cults existing today in the world.
  • Learning disabilities: Their nature, causes, and solutions.
  • The history of Somalia.
  • The portrayal of a woman in the social media today and 20 years ago.
  • Freedom of expression.
  • The poorest nations in the world.
  • The effect of feminism on Europe.
  • The impact of classical music on one’s brain.

Literature Research Paper Topics

  • The relevance of the US Literature class choices to the modern youth.
  • Examples of literature pieces that shaped whole cultures across the globe.
  • Feminism in literature.
  • The issue of the Holocaust in the world’s literature.
  • The first translations of the Bible.
  • Literature is known to be most effective in the struggle against illiteracy in different cultures.
  • The brightest images of Death in literature.
  • The history of slavery in Africa in world literature.
  • Romanticism in Spanish literature.
  • The moralism of the British literature of the 20th century.

College Research Paper Topics

  • Success stories of college dropouts.
  • The rarest phobias and fears people have.
  • The history of e-learning around the globe.
  • Can higher education grant a successful future career?
  • Should grades be banned from the educational system?
  • The use and harm of vaccination.
  • The new emerging specializations and professions of the 21st century.
  • The most effective teaching methods today.
  • The History of the Ivy League.
  • College re-organization for the better future of education.
  • Private vs. Public colleges in the USA: Pros and cons.

Persuasive Research Paper Topics

  • Antisemitism origins.
  • Sex education pushes the youth to involve in sexual relations too early.
  • The last days of newspapers in our media-controlled world.
  • The danger of the GMO.
  • Impact of Instagram on teenagers’ self-esteem.
  • Pros and cons of studying at a single-sex school.
  • Overpopulation management.
  • Deforestation: Are we digging our own grave this way?
  • People using cell phones while driving should be held criminally liable.
  • Paying children for good grades: Different perspectives on the issue.

Sports Research Paper Topics

  • The greatest athlete in the history of the world.
  • The history of the Olympic Games.
  • Why are cybersports considered sports?
  • The history of marathons and their use today.
  • Doping in sports.
  • The use of playing competitive sports.
  • The most dangerous sports from all over the world.
  • Should sports be used as a therapy in prisons?
  • Should student athletes be paid for playing sports?
  • The effect of physical activities on the human’s brain.

Criminal Justice Research Paper Topics

  • Prisoners falsely accused and then released should receive financial compensation from the state.
  • Sexual harassment problem in Europe and the USA.
  • Should corporate abuse be considered a criminal injustice case?
  • The death penalty in different countries.
  • Hate crime history in the USA.
  • Control over the brutal behavior of guardsmen at prisons.
  • Should mental issues affect the court judgment?
  • Sex slavery: Should people buying and selling sex slaves be sentenced to the death penalty?
  • Should the criminals be allowed to vote?
  • Two sides of the Mandatory Minimum sentencing.

Topics about Technology for the Research Paper

  • Will artificial intelligence substitute humans at a workplace?
  • Saving the Earth today with the aid of state-of-the-art technologies.
  • Self-driving cars development history.
  • The history of Virtual and Augmented realities.
  • Positive use of nuclear energy and the future.
  • How does the lie detector work? Is this a trustworthy technology?
  • The history of aviation in the world.

Medical Research Paper Topics

  • Why animal testing should be stopped.
  • The history of the Placebo treatment.
  • Euthanasia: What doctors from different countries think about it.
  • The use of vegetarianism: The myth or reality?
  • Mental breakdown: Causes and prevention.
  • The notion of mood in medicine.
  • Should marijuana be allowed for recreational purposes?
  • Should vaccination be mandatory?
  • The history of plague in Europe.
  • The most dangerous virus of today.

Ethics Research Paper Topics

  • Religion and morality: Are people with strong moral beliefs more moral than atheists?
  • Should teachers be allowed to carry weapons to school?
  • Prostitution across the globe.
  • Should recycling be made mandatory?
  • Paparazzi and the invasion of celebrities’ privacy.
  • Parents should monitor their kids’ Internet use.
  • Do laws generally patronize women and discriminate against men?
  • Adoption by single parents vs. adoption by a two-parent family today.
  • Countries that use child labor: Should we use their products?
  • Should breastfeeding in public be banned?

Tips on Writing a Research Paper

  • Write an outline. An outline will help you stay focused. Since this type of writing is quite lengthy, it is easy to lose track along the way. That is why crafting a detailed outline is in your best interest. It will serve as a roadmap or a blueprint of the whole project.
  • Start bright. You only have one chance to make a positive first impression. That is why you simply cannot afford writing a dull introduction. There are certain rules on how to start a research paper, and you’d better stick to the rules as described in our guide. A bright opening paragraph will ensure the genuine interest of your audience in what you have to say about the topic and will keep them engaged as you write.
  • Use immaculate grammar and spelling. Nothing kills a good paper like poor grammar or spelling. It distracts the reader from the main point and makes him stumble while reading. And if you’re worried that grammar and spelling checking will take up too much of your time, don’t worry: you can always use technologies like Grammarly to do the job for you in seconds.
  • Compose a compelling thesis statement. A thesis statement is the central point of your research paper. You need to insert it in the introduction and make sure that this central idea is exactly one sentence long. Make it loud and clear. However, given the length of this vital part of a research paper, don’t bore readers with too many unnecessary details. This means that you should mention what issue you will look into and why but don’t explain in which ways you will achieve this. Here is a complete guide on what is a thesis statement that will walk you through the process step by step. Enjoy!
  • Stay within the word count limits. This type of writing has a rather strict word count limit. And you need to stay within it. Tutors don’t have all the time in the world to read long pieces. If you can’t stay within word count limits, they’ll assume you didn’t spend enough time filtering the most vital information out of the research (even if you did). So, not to give them that false impression, don’t make it too short or too long. Make it just right. This is the case when the size matters!
  • Ask for help. After spending long hours crafting this paper, you are likely to miss some important points. The thing is that you know exactly what you wanted to say, and mistakes seem to be left unnoticed. Not to let them slip into your text, ask your peers, friends, or family to take a look at your writing. Their fresh perspective might be of much help to you!

tips on writing a research paper

We hope our research paper topics ideas will help you pick a theme you are genuinely interested in. We promise: conducting research and diving into the search can be a lot of fun as long as you choose an engaging subject.

Related posts: Argumentative essay topics | Compare&Contrast essay topics

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65 Target Market Essay Topics

🏆 best essay topics on target market, ✍️ target market essay topics for college, 🎓 most interesting target market research titles, 💡 simple target market essay ideas.

  • Apple Watch Target Market: Demographic Segmentation
  • Maybelline Marketing Strategy: Analysis of Competitors & Target Market
  • Christian Dior Market Analysis: Dior Target Market & More
  • Marriott Target Market Segmentation and Positioning
  • New Balance Target Market Plan & Marketing Strategy
  • The Samsung Company’s Headphones Target Market
  • Coffee Maker by Keurig: Target Market and Segmentation
  • Tim Hortons Target Market This article introduces Tim Horton’s chain of stores and highlights the techniques that have enabled him to succeed.
  • Nine West: Target Market, Customer Profile This paper analyzes Nine West company: Company target market, psychographics, customer profile, overview of customers, and psychographic profile.
  • Charleston Target Market Analysis This paper’s objective is to analyze the demographic and psychographic segments of the Charleston target market in detail and examine competing forms of entertainment.
  • Target Market Segment Description A primary target market is a segment of a market section that the business believes will provide an opportunity for it to sell its products or services.
  • Taco Bell Restaurant’s Target Market in Queensland The expansion of Taco Bell to Queensland, Australia is a viable solution to attract more customers. It is possible to choose students as the target audience.
  • Wal-Mart’s Target Market Selection and Competition Wal-Mart has been known as one of the widely acknowledged supermarkets in the global business. The following paper analyzes Wal-Mart’s marketing plan.
  • The Target Market for the Final Marketing Plan The paper states that the target market for the final marketing plan includes a group of consumers who may be interested in a company’s offers.
  • Media Popup Products Segmentation and Target Market Media Popup products developed by Porttron Inc. will meet the highest demand among ‘Generation-Z’ consumers, as all product features.
  • The Description of the Target Market The description and understanding of the target market for products are important to ensure that potential consumers can be reached in the determined district.
  • Market Segmentation and Target Market As a result of market segmentation, there exists a great variety of target markets, according to which businesses are tailored.
  • Nature’s Best Pet Food Brand’s Target Market This paper is dedicated to the study of the target market for a new pet food brand called Nature’s Best, which is soon launching on the market.
  • Ethical Implications of Target Market Selection
  • A Method for Estimating Target Market Ratings in Television Media Selection
  • Transnational Entrepreneurs’ International Target Market Strategies
  • Targeting in Advertising Markets: Implications for Offline vs. Online Media
  • Target Market Selection of Tourists: A Comparison of Approaches
  • Identification of Target Market Transformation Efforts for Solar Energy Adoption
  • Analyzing Coca-Cola’s Primary Target Market
  • Self-Reference Bias in Managers’ Selection of Target Market Segments
  • Discussing the Advantages of Target Market Identification
  • Target Market Selection for Agricultural Products in International Markets
  • Reach and Frequency Estimates for Specialized Target Markets
  • A Hybrid Mathematical Model for International Target Market Decision
  • The Importance of Target Markets in Textile and Garment Supply Chains
  • Analysis of Product Competitiveness in Choosing the Target Market
  • Selecting Target Markets Based on the Profitability and Risk of Individual Market Segments
  • Teenagers as Target Market in Tech-Savvy World: A Case Study of Generation Z
  • Food Product Target Market Prioritization Using MCDM Approaches
  • Promotion of an Innovative Food Product: Aspects of the Target Market
  • Apple’s Go-to-Market Strategy: Identifying the Target Market for the iPhone
  • Using Music in the Advertisements as the Factor Which Affects the Attitude of the Target Market
  • Understanding Starbucks’ Target Market and Segmentation
  • Market Targeting With Social Influences and Risk Aversion in a Co-Branding Alliance
  • Exploring the Hierarchy of Target Market Selection Criteria
  • The Compatibility of the Choice of Strategy With the Target Market Attractiveness and Business Strength
  • Selecting Target Market by Similar Measures in Interval Intuitionistic Fuzzy Set
  • Pros and Cons of Targeting Uninformed Consumers
  • Target Market Selection in B2B Technology Markets
  • Internal and External Search Strategies of Innovative Firms: The Role of the Target Market
  • Customer Demographics and Target Market of Microsoft
  • Sensation Seekers as a Target Market for Volunteer Tourism
  • An Analysis of the Potential Target Market Through the Application of the STP Model
  • Target Market vs. Target Audience: Establishing the Key Differences
  • McDonald’s Target Market Analysis: Behavioral Segmentation
  • Using Target Market Desired Outcomes for Effective Brand Positioning
  • Target Market Selection and Marketing Effort Under Uncertainty
  • On the Importance of Matching Strategic Behavior and Target Market Selection to Business Strategy
  • Identifying a Target Market for a Small Business
  • Examining Tesla Target Market’s Average Income
  • Developing Marketing Strategies and Tactics in Higher Education Through Target Market Research
  • Leveraging Target Market to Create a Marketing Strategy
  • Size, Growth, Stability, and Competition as the Factors for Targeting an Attractive Market
  • The Importance of Brand Consistency in Attracting Target Market
  • Finding the Ideal Target Market for an E-commerce Online Business
  • Adapting SEO and SEM Tools to Changing Target Market Preferences and Behaviors
  • The Best Practices and Pitfalls of Target Market Segmentation
  • Strategic Instruments to Choose Foreign Target Markets
  • Amazon Target Market & Audience Segmentation Insights

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StudyCorgi. (2024, September 9). 65 Target Market Essay Topics. https://studycorgi.com/ideas/target-market-essay-topics/

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Bibliography

StudyCorgi . "65 Target Market Essay Topics." September 9, 2024. https://studycorgi.com/ideas/target-market-essay-topics/.

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Exploring Quantitative Biology: A Guide to Research Topics

Exploring Quantitative Biology

Welcome to the fascinating world of quantitative biology, where biology, math, and technology blend to help us understand life better. Whether you’re a student, a science enthusiast, or just curious about how biology works at a deeper level, this guide will break down the key research areas in simple terms. Quantitative biology is all about using numbers, patterns, and computer models to figure out how living things behave, and we’re going to explore some of its most exciting topics. Let’s dive in!

What is Quantitative Biology?

Table of Contents

At its core, quantitative biology is the use of mathematical models, statistics, and computational tools to understand biological systems. It combines biology with math, providing a quantitative approach to solving biological problems. Whether predicting how a disease spreads or understanding genetic mutations, quantitative biology allows researchers to gain insights that would be impossible without the power of numbers.

For instance, imagine you’re studying how bacteria develop antibiotic resistance. Using mathematical models, you can predict how quickly resistance will spread in a population, helping scientists develop better treatments.

Why is Quantitative Biology Important?

Quantitative biology plays a vital role in modern science. By blending biological science with quantitative methods, researchers can:

  • Understand Complex Biological Systems : From individual cells to entire ecosystems.
  • Predict Outcomes : Such as how a disease spreads or how an ecosystem responds to environmental changes.
  • Innovate in Medicine and Technology : For example, designing new drugs or genetically engineering crops.
  • Make Sense of Large Datasets : With advances in technology, scientists have more data than ever, and quantitative biology helps analyze it.

Key Research Topics in Quantitative Biology

1. systems biology: the blueprint of life.

Systems biology is a key branch of quantitative biology that examines how different parts of a biological system interact to create its overall behavior. It studies biological networks—how genes, proteins, and cells communicate with one another. Using computational modeling, scientists simulate these interactions and predict what might happen if one part of the system changes.

For example, understanding how cancer spreads requires studying how cells interact and multiply. Systems biology helps researchers identify which proteins or genes are involved in these processes, enabling the development of targeted therapies.

Why It Matters:

  • Helps in developing new treatments for diseases.
  • Provides insights into how cells and organisms function as a whole.

Example Research Question:

  • How does a specific protein impact the way cells communicate during growth?

2. Bioinformatics and Genomics: Decoding DNA

Bioinformatics is a field of quantitative biology that applies computational modeling to the study of DNA and genetic data. It plays a central role in genomics, the study of an organism’s entire genetic makeup. Scientists use bioinformatics tools to analyze vast amounts of DNA and gene data, helping them find connections between genes and diseases.

For example, researchers use DNA analysis to identify mutations linked to conditions like diabetes or cancer. The data generated from sequencing entire genomes is immense, and bioinformatics is essential for making sense of it.

  • Helps in finding the genetic basis of diseases.
  • Enables the development of personalized medicine based on a person’s DNA.
  • What genetic mutations are responsible for certain inherited diseases?

3. Population Genetics: Evolution in Action

Population genetics is the study of how gene frequencies change in a population over time. It examines how natural selection, mutations, and genetic drift shape populations’ genetic makeup. Using mathematical models, population geneticists can predict how traits evolve and spread in a group of organisms.

For instance, a population of animals might adapt to a changing environment by developing thicker fur for colder climates. Population genetics helps scientists understand the genetic diversity that drives these changes.

  • Helps in conservation efforts by studying how species adapt to environmental changes.
  • Provides insights into how diseases or traits evolve within populations.
  • How do environmental changes influence the evolution of genetic traits in a population?

4. Biophysics: The Physics Behind Life

Biophysics combines physics with biology to understand the physical principles governing biological processes. It focuses on the molecular dynamics of proteins, DNA, and other cellular components. Scientists use biophysics to study how proteins fold, how cells transmit signals, and how forces within cells affect their behavior.

One crucial area in biophysics is studying protein structure. When proteins fold incorrectly, it can lead to diseases like Alzheimer’s. Understanding these physical processes allows researchers to develop drugs that stabilize proteins and prevent misfolding.

  • Helps in understanding diseases caused by misfolded proteins, such as Alzheimer’s and Parkinson’s.
  • Provides insights into how cells function on a molecular level.
  • How do proteins fold, and what causes them to misfold in diseases?

5. Quantitative Ecology: Modeling Nature

In quantitative ecology, researchers use mathematical tools and environmental modeling to study ecosystems. By simulating how species interact with their environment and each other, ecologists can predict changes in biodiversity due to factors like climate change, pollution, or habitat destruction.

For example, if a new predator is introduced into an ecosystem, it can dramatically alter the populations of prey species. Quantitative ecology models help scientists understand these dynamics and develop strategies to protect endangered species.

  • Helps in conservation efforts by modeling how species and ecosystems respond to changes.
  • Provides tools for managing ecosystems and protecting biodiversity.
  • How does climate change affect the biodiversity of an ecosystem?

6. Neuroscience and Brain Networks: Understanding the Brain

Neuroscience focuses on understanding the structure and function of the brain, and quantitative biology plays a big role here. By studying brain networks and neural circuits, scientists can map out how neurons interact and how information flows through the brain. Neuroscience uses computational models to understand how these networks change when we learn or suffer from disorders like epilepsy.

For instance, researchers use quantitative models to simulate how neural circuits adapt during learning processes, providing insights into memory formation and decision-making.

  • Helps in developing new treatments for brain disorders.
  • Provides insights into how the brain functions and learns.
  • How do neural circuits in the brain adapt when we learn something new?
  • 200+ Unique And Interesting Biology Research Topics For Students In 2023
  • 200+ Experimental Quantitative Research Topics For STEM Students In 2023

7. Synthetic Biology: Building New Life

Synthetic biology is an exciting field of biotechnology in which researchers design and create new biological systems or organisms. Using principles from genetic engineering, scientists can modify or build DNA sequences to produce new functions, like bacteria that break down plastic or plants that grow faster.

For instance, synthetic biology has been used to engineer yeast cells that can produce medicines like insulin. This type of research is paving the way for sustainable solutions to medical and environmental problems.

  • Offers new solutions to environmental and medical challenges.
  • Enables the development of genetically modified organisms (GMOs) with useful traits.
  • How can we engineer bacteria to produce new antibiotics?

8. Epidemiology and Infectious Disease Modeling: Preventing Outbreaks

In epidemiology, researchers study how diseases spread within populations. By using disease modeling, scientists can predict outbreaks and design public health strategies to prevent the spread of infectious diseases. These models take into account factors like transmission rates, immunity, and social behavior.

For example, during the COVID-19 pandemic, epidemiologists used models to forecast how the virus would spread and what measures, like social distancing, could slow its progression. Public health officials rely on these models to make informed decisions.

  • Helps governments and public health officials prepare for and control disease outbreaks.
  • Provides insights into the effectiveness of vaccines and other interventions.
  • How can we predict the spread of the next pandemic?

How Quantitative Biology Impacts Our Lives

Quantitative biology might sound technical, but it affects everyone. From better healthcare (through personalized medicine and disease modeling) to conservation efforts (by protecting species and ecosystems), the insights from this field shape the world we live in. Whether scientists are predicting how a virus spreads or figuring out how to grow more food in a changing climate, quantitative biology helps tackle global challenges.

Table: Key Research Areas in Quantitative Biology

Systems BiologyHow biological networks functionHow do genes interact in a cell?
Bioinformatics & GenomicsDNA data and genetic informationHow do genes determine traits?
Population GeneticsEvolution and genetic diversityHow do populations adapt to their environment?
BiophysicsPhysical principles in biological systemsHow do proteins fold inside cells?
Quantitative EcologyEcosystem dynamics and environmental effectsHow do species interact in an ecosystem?
NeuroscienceBrain networks and cognitive functionsHow do neurons form memories?
Synthetic BiologyDesigning and engineering biological systemsCan we create bacteria to produce medicine?
Disease spread and public healthHow can we model the next pandemic?

Conclusion: The Future of Quantitative Biology

As technology continues to advance, quantitative biology will become even more important in solving real-world problems. Whether you’re interested in medicine, ecology, genetics, or any other field, quantitative biology offers exciting opportunities to make a meaningful impact on society . It’s a field that continues to grow, offering new ways to understand and influence the living world.

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