RocketiQ

Learning Pathways

Fellowship

12-week mentored aerospace track

Workshops

Live space engineering bootcamps

Masterclasses

Rigorous physics & dynamics lectures

Space Research

Open-Source

Collaborative telemetry codes

Advanced Research

Explore selective research programs

Space Contests

Global aerospace competitions

IASC Campaign

Asteroid search campaign

Explore Ecosystem

Community

Engage with 4,000+ flight engineers & events

Radio Podcast

Conversations with aerospace scientists

YouTube

Lecture renders & rocket launch coverage

Newsletter

Weekly aerospace opportunity updates

Careers

Payload engineering internship applications

About us

Read the origins of the RocketiQ platform

Contact

Reach our core flight control operations

Go Beyond Lectures.
Enter Research.

RocketiQ is an aerospace and astronomy research platform for serious students who want global-standard learning, mentorship, and real scientific depth.

Learn from space scientists
Study research-grade problems
🚀 Launch your aerospace career
🎯 The Mission

India has talent.
The missing piece is research ecosystem.

We are building the bridge for the next generation of Indian space scientists, providing the tools and knowledge previously inaccessible.

The Missing Infrastructure

From isolated ambition to a real research ecosystem.

The Real GapResearch Access Missing

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.

01Limited access to strong mentors
02Too much exam-focused learning
03Weak connection to current space research
ROCKETIQResearch BridgeRead → Reason → Model → Explain
The RocketiQ WayResearch Guided

We make advanced space learning feel reachable.

RocketiQ creates a structured research environment where students can explore astrophysics, propulsion, orbital mechanics, space systems, and scientific thinking with clarity and guidance.

01Research literacy and paper reading
02Conceptual clarity before complexity
03Aerospace and astronomy problem pathways
01Astronomy + AerospaceOne platform for space science, propulsion, missions, and exploration.
02Mentored DepthGuidance from people who understand research, not just classroom theory.
03India FirstBuilt for Indian students who want serious research exposure.
04Global BarMeasured against global research standards in aerospace and space science.

The Research Architecture

Core learning layers that move students from curiosity to research confidence.

CORE_MODULE_01

What We Train

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.

CORE_MODULE_02

The Promise

Global-standard aerospace and astronomy learning for Indian students who want depth, direction, and serious exposure to modern space research.

CORE_MODULE_03

Mission

Create a globally accessible aerospace and astronomy research ecosystem, independent of geography or privilege. Vision: India produces confident space scientists, engineers, and research thinkers.

We Go Where Curiosity Gets Serious

Advanced aerospace and astronomy topics, explained with research depth and student-friendly clarity.

ASTROPHYSICS

General & Special Relativity

Understand spacetime, time dilation, gravitational lensing, and the geometry of gravity.

BLACK HOLES

Black Holes & Singularities

Explore event horizons, accretion disks, and the extreme physics of compact objects.

COSMOLOGY

Dark Matter & Dark Energy

Study the invisible structure of the universe and the mystery of cosmic acceleration.

EARLY UNIVERSE

Origin of the Universe

Trace the Big Bang, cosmic microwave background, and the first moments of structure formation.

PROPULSION

Rocket Engine Combustion

Learn the physics of thrust, combustion chambers, instabilities, and high-speed reacting flows.

SUSTAINABILITY

Green Propulsion

Understand safer, cleaner propulsion choices and the engineering tradeoffs behind them.

ELECTRIC EP

In-Space Propulsion

Explore Hall thrusters, ion engines, mission endurance, and spacecraft propulsion choices.

MISSION DESIGN

Orbital Mission Design

Study delta-v, transfer orbits, spacecraft trajectories, and mission planning logic.

SPACE SYSTEMS

Space Colonization

Think through habitats, life support, lunar bases, Mars missions, and long-duration survival.

SPACE INDUSTRY

Space Commercialization

Understand the space economy, policy, mission value, and how research becomes impact.

0
Shortcuts on depth. Every topic is treated with seriousness and clarity.
24/7
Guided access to research ideas, scientific thinking, and mentor-led pathways.
The Outcome
The Transformation,
Quantified
100%
Focus on concept clarity, research reasoning, and aerospace problem solving.
<1 yr
From passive learner to confident aerospace and astronomy research aspirant.

Choose Your Trajectory

CHOOSE THE FORMAT THAT MATCHES YOUR GOAL.

Checking fellowship launch date...

Research Fellowships

SELECTIVE

Research Fellowships

Selective, mentored, 12 weeks. Students develop a research question, literature base, analysis, and final technical report.

Workshops

LIVE

Workshops

Live, weekend format. One focused space-science or aerospace problem, explained from fundamentals to application.

Learn More →

Masterclasses

SHORT

Masterclasses

Short and rigorous. Clear explanations, worked examples, and Q&A.

Learn More →

Research Projects

PROJECT

Research Projects

Guided topic-based projects in propulsion, astronomy, orbital mechanics, and space systems.

Learn More →

Advanced Track

ADVANCED

Advanced Track

For serious learners ready for deeper reading, harder questions, and long-form research guidance.

Learn More →
Research Capabilities

What Students Learn To Think With

Scientific Computing
Use numerical thinking to explore aerospace and astronomy problems with clarity.
High-Speed Flow Physics
Understand shocks, compressible flow, propulsion physics, and high-energy aerospace systems.
CFD & Aerodynamics
Study flow behavior around vehicles, nozzles, thermal systems, and propulsion components.
Controls & Dynamics
Learn spacecraft motion, stability, control logic, and mathematical modeling.
Research Documentation
Practice clear notes, literature summaries, technical reports, and presentation-ready explanations.
Advanced Simulation Mindset
Learn how modern researchers think about scale, assumptions, validation, and computational limits.
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Learners Trained
0
Countries
0+
Research Mentees
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Research Papers
⚡ How it Works

Your Path from
Student to Researcher

A structured, mentored journey that transforms you from passive learner to a research-confident aerospace or astronomy learner ready for the global stage.

01
Choose Your Trajectory
Pick the format that matches your ambition: a 12-week Research Fellowship, a weekend Workshop, a focused Masterclass, or a guided Research Project. Every path builds research-readiness.
Program Selection
02
Enter the Ecosystem
Join a live learning environment guided by a working scientist or engineer. Start with clear concepts, curated reading, structured discussion, and serious aerospace or astronomy problems.
Onboarding & Access
03
Work on Real Problems
You study meaningful research-style problems: combustion instability, orbital transfers, re-entry heating, black holes, propulsion choices, and mission design. The goal is depth, not shortcuts.
Research & Analyze
04
Present & Grow
You complete the journey with a clear explanation of your work: a technical report, presentation, research summary, or guided project outcome that shows how you think.
Explain & Advance

Student Experiences

FEEDBACK FROM OUR GLOBAL RESEARCH COHORTS

Really love the teaching style. I've taken several courses with Mr. Samarth, and his enthusiasm always shows.

Karan JariwalaPEDAGOGY

He always comes up with real-life examples to explain complex concepts. The doubt clearance method is excellent.

Sugath K SREAL-WORLD LOGIC

As a BSc Physics graduate, I still learned a lot of new things. He patiently cleared everyone's doubts. Truly inspiring.

Sharon ElizabethBSC PHYSICS

Really love the teaching style. I've taken several courses with Mr. Samarth, and his enthusiasm always shows.

Karan JariwalaPEDAGOGY

He always comes up with real-life examples to explain complex concepts. The doubt clearance method is excellent.

Sugath K SREAL-WORLD LOGIC

As a BSc Physics graduate, I still learned a lot of new things. He patiently cleared everyone's doubts. Truly inspiring.

Sharon ElizabethBSC PHYSICS

The research fellowship was very intense. Translating papers to python codes and presenting it helped me get into a master's program abroad.

Aditi SharmaFELLOWSHIP OUTCOME

Concept explanations are crystal clear. I finally understand the mathematical logic behind Hall effect thrusters.

Rohan VermaTHRUSTER DYNAMICS

Doing numerical work in propulsion combustion instabilities was tough, but mentor support was always available. Highly recommended.

Nikhil GCFD MODELING

The research fellowship was very intense. Translating papers to python codes and presenting it helped me get into a master's program abroad.

Aditi SharmaFELLOWSHIP OUTCOME

Concept explanations are crystal clear. I finally understand the mathematical logic behind Hall effect thrusters.

Rohan VermaTHRUSTER DYNAMICS

Doing numerical work in propulsion combustion instabilities was tough, but mentor support was always available. Highly recommended.

Nikhil GCFD MODELING

Weekly paper reading cohorts changed how I approach literature. It has made me look at equations with much more comfort.

Meera NairLITERATURE REVIEW

Learning scientific programming in orbital mechanics. The visual plots of Lagrange points we made were beautiful.

Pranav PillaiORBITAL MECHANICS

Helped me bridge the gap between my engineering syllabus and actual aerospace industrial requirements.

Suresh KumarINDUSTRY GAP

Weekly paper reading cohorts changed how I approach literature. It has made me look at equations with much more comfort.

Meera NairLITERATURE REVIEW

Learning scientific programming in orbital mechanics. The visual plots of Lagrange points we made were beautiful.

Pranav PillaiORBITAL MECHANICS

Helped me bridge the gap between my engineering syllabus and actual aerospace industrial requirements.

Suresh KumarINDUSTRY GAP