Science Fair Project Discovery Hub
About our Science Fair Project Discovery Hub
An AI driven approach to democratizing science research for every student
Science fairs are where curiosity translates to real world impact, yet most students only ever see a tiny fraction of what’s possible. Many students lack access to advanced labs, exposure to emerging fields, or guidance from someone who knows how to turn an idea into a real research pathway. The scientific world is far bigger, richer, and more exciting than what students typically encounter day to day, and the MehtA+ Science Fair Project Discovery Hub was built to introduce students to this wonderful scientific world.
Developed by MIT and Stanford engineers, researchers, and educators using AI research tools and insights from past winning projects, the Hub helps students navigate 1,600+ science fair project ideas across all 22 International Science & Engineering Fair (ISEF) categories. Each category breaks down relevant public datasets, software and low‑cost tools that will make real scientific research accessible. Each idea breaks down the scientific hook, core concept, research questions, materials, experimental plan, pitfalls, level of difficulty, project variations and what makes the project competition-ready.
And when students are ready to build, MehtA+ Science & Engineering Research mentors provide the structure, expertise, and human insight that AI research tools alone can’t guarantee, especially when those tools can misinterpret data or oversimplify complex scientific concepts.
The Hub is not about choosing a project for students. It’s to give them the opportunity, exposure, and support they deserve to create something meaningful.
ISEF Categories
Explore the different areas of research
Science Fair Project Finder
Discover 1,600+ science fair project ideas
1642 projects found.
Technology Enhances the Arts · Human Information Exchange · Advanced
IL-6 Binder Design With Generative AIBiomedical Engineering · Synthetic Biology · Advanced
Immune Cell Infiltration in Tumor SpheroidsComputational Biology and Bioinformatics · Computational Biomodeling · Advanced
Impact Fracture Simulation for 3D-Printed CantileversEngineering Technology: Statics and Dynamics · Computational Mechanics · Advanced
IMU Insole for Diabetic Neuropathy Gait Science FairBiomedical Engineering · Biomechanics · Advanced
In Silico Multi-Epitope Vaccine Design for PathogensCellular and Molecular Biology · Cellular Immunology · Advanced
Indoor Air Microbiome Mapping With Settle PlatesMicrobiology · Environmental Microbiology · Intermediate
Indoor Plant VOC Removal in Sealed TerrariumsEnvironmental Engineering · Pollution Control · Intermediate
Indoor PM2.5 Infiltration Across Building TypesEarth and Environmental Sciences · Atmospheric Science · Advanced
Inflammaging Cytokine Score for Biological AgeBiomedical and Health Sciences · Immunology · Advanced
Influence Maximization on HypergraphsSystems Software · Algorithms · Advanced
Insect Wing Aerodynamics From Video DataPhysics and Astronomy · Biological Physics · Advanced
Instrumented Cane Gait EnergeticsBiomedical Engineering · Biomechanics · Advanced
Invasive Plant Spread Models for Future ClimatePlant Sciences · Ecology · Intermediate
Invasive Plants on the Tree of LifePlant Sciences · Systematics and Evolution · Advanced
Inverse Kinematics Networks for Robot ArmsRobotics and Intelligent Machines · Robot Kinematics · Advanced
