Students have ambition, but not enough research exposure.
Students are motivated, but most never see how aerospace research actually works. They learn formulas, watch scattered lectures, and graduate without a credible build record.
Engage with 4,000+ flight engineers & events
Conversations with aerospace scientists
Lecture renders & rocket launch coverage
Weekly aerospace opportunity updates
Payload engineering internship applications
Read the origins of the RocketiQ platform
Reach our core flight control operations
RocketiQ is an aerospace and astronomy research platform for serious students who want global-standard learning, mentorship, and real scientific depth.
We are building the bridge for the next generation of Indian space scientists, providing the tools and knowledge previously inaccessible.
Students are motivated, but most never see how aerospace research actually works. They learn formulas, watch scattered lectures, and graduate without a credible build record.
RocketiQ creates a structured research environment where students can explore astrophysics, propulsion, orbital mechanics, space systems, and scientific thinking with clarity and guidance.
Core learning layers that move students from curiosity to research confidence.
Research literacy: how to read, reason, and validate. Scientific modeling: how to simplify complex space problems. Communication: how to explain results with clarity and discipline.
Global-standard aerospace and astronomy learning for Indian students who want depth, direction, and serious exposure to modern space research.
Create a globally accessible aerospace and astronomy research ecosystem, independent of geography or privilege. Vision: India produces confident space scientists, engineers, and research thinkers.
Advanced aerospace and astronomy topics, explained with research depth and student-friendly clarity.
Understand spacetime, time dilation, gravitational lensing, and the geometry of gravity.
Explore event horizons, accretion disks, and the extreme physics of compact objects.
Study the invisible structure of the universe and the mystery of cosmic acceleration.
Trace the Big Bang, cosmic microwave background, and the first moments of structure formation.
Learn the physics of thrust, combustion chambers, instabilities, and high-speed reacting flows.
Understand safer, cleaner propulsion choices and the engineering tradeoffs behind them.
Explore Hall thrusters, ion engines, mission endurance, and spacecraft propulsion choices.
Study delta-v, transfer orbits, spacecraft trajectories, and mission planning logic.
Think through habitats, life support, lunar bases, Mars missions, and long-duration survival.
Understand the space economy, policy, mission value, and how research becomes impact.
CHOOSE THE FORMAT THAT MATCHES YOUR GOAL.
Selective, mentored, 12 weeks. Students develop a research question, literature base, analysis, and final technical report.
Live, weekend format. One focused space-science or aerospace problem, explained from fundamentals to application.
Short and rigorous. Clear explanations, worked examples, and Q&A.
Guided topic-based projects in propulsion, astronomy, orbital mechanics, and space systems.
For serious learners ready for deeper reading, harder questions, and long-form research guidance.
A structured, mentored journey that transforms you from passive learner to a research-confident aerospace or astronomy learner ready for the global stage.
FEEDBACK FROM OUR GLOBAL RESEARCH COHORTS
Really love the teaching style. I've taken several courses with Mr. Samarth, and his enthusiasm always shows.
He always comes up with real-life examples to explain complex concepts. The doubt clearance method is excellent.
As a BSc Physics graduate, I still learned a lot of new things. He patiently cleared everyone's doubts. Truly inspiring.
Really love the teaching style. I've taken several courses with Mr. Samarth, and his enthusiasm always shows.
He always comes up with real-life examples to explain complex concepts. The doubt clearance method is excellent.
As a BSc Physics graduate, I still learned a lot of new things. He patiently cleared everyone's doubts. Truly inspiring.
The research fellowship was very intense. Translating papers to python codes and presenting it helped me get into a master's program abroad.
Concept explanations are crystal clear. I finally understand the mathematical logic behind Hall effect thrusters.
Doing numerical work in propulsion combustion instabilities was tough, but mentor support was always available. Highly recommended.
The research fellowship was very intense. Translating papers to python codes and presenting it helped me get into a master's program abroad.
Concept explanations are crystal clear. I finally understand the mathematical logic behind Hall effect thrusters.
Doing numerical work in propulsion combustion instabilities was tough, but mentor support was always available. Highly recommended.
Weekly paper reading cohorts changed how I approach literature. It has made me look at equations with much more comfort.
Learning scientific programming in orbital mechanics. The visual plots of Lagrange points we made were beautiful.
Helped me bridge the gap between my engineering syllabus and actual aerospace industrial requirements.
Weekly paper reading cohorts changed how I approach literature. It has made me look at equations with much more comfort.
Learning scientific programming in orbital mechanics. The visual plots of Lagrange points we made were beautiful.
Helped me bridge the gap between my engineering syllabus and actual aerospace industrial requirements.