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Related lectures (21)
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Liquid Bi-propellant Propulsion Systems: Fundamentals and Architectures
Covers the fundamentals of liquid bi-propellant propulsion systems and their operational architectures.
Variable Mass System and Accelerated Frames
Explores variable mass systems, rocket thrust, takeoff conditions, and accelerated frames.
Rocket Physics Fundamentals
Covers the fundamentals of rocket physics, including center of mass, momentum, and rocket speed.
Introduction to Space Propulsion Systems
Introduces the principles and applications of space propulsion systems.
Rocket Fuel Consumption and Altitude Determination
Covers the determination of a rocket's speed and altitude when the fuel is exhausted.
Commercial Space Industry: Lynx Spacecraft
Explores the development of the Lynx spacecraft for commercial space tourism and scientific missions, highlighting innovative rocket propulsion technology and the potential for conducting experiments in microgravity.
Variable Mass System: Rocket
Covers the mechanics of rockets ejecting mass at a constant rate.
Lessons from Space Exploration
Explores space launchers, satellite injection, rocket propulsion, and launcher history, focusing on the Ariane family and ESA's ISS contributions.
Untitled
Space Mission Design and Operations
Explores space mission design, propulsion, and re-entry techniques, including aerocapture and electric propulsion.
Lessons Learned from Space Exploration
Explores the history and impact of space exploration, focusing on engineering challenges, societal influences, and future mission concepts.
Bi-liquid rocket engine: SLM manufacturing
Explores the EPFL Rocket Team's bi-liquid rocket engine design for space travel.
Nuclear and Electric Propulsion
Explores nuclear and electric propulsion systems for space missions using hydrogen, xenon, and argon propellants.
General Physics: Mechanics
Covers changes in session locations, upcoming topics on kinetic moments, collisions, and rocket propulsion demonstrations.
Elastic and Inelastic Collisions
Explores elastic and inelastic collisions, conservation laws, and real-world applications.
Space Mission Design and Operations
Covers spacecraft propulsion, interplanetary transfer, aerodynamic braking, and orbit insertion techniques in space missions.
Designing a 200 N Bi-Propellant Thruster: Key Considerations
Covers the design process for a 200 N bi-propellant thruster, focusing on key parameters and methodologies for effective performance.
Space Mission Design: Lunar Exploration and Propulsion Techniques
Discusses lunar exploration, spacecraft propulsion techniques, and the mechanics of space mission design.
Elastic Collisions Analysis
Explores elastic and inelastic collisions, conservation laws, and real-world collision complexities.
Elastic and Inelastic Collisions
Explores elastic and inelastic collisions, conservation laws, and special cases like billiard balls and rockets.
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