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Lecture
Spacecraft Propulsion
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Related lectures (32)
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Variable Mass System and Accelerated Frames
Explores variable mass systems, rocket thrust, takeoff conditions, and accelerated frames.
Space Mission Design and Operations
Covers spacecraft propulsion, interplanetary transfer, aerodynamic braking, and orbit insertion techniques in space missions.
Rocket Physics Fundamentals
Covers the fundamentals of rocket physics, including center of mass, momentum, and rocket speed.
Thruster-based Attitude Control
Covers the design and operation of thruster-based attitude control systems for spacecraft.
Untitled
Variable Mass System: Rocket
Covers the mechanics of rockets ejecting mass at a constant rate.
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 and Operations
Explores space mission design, shuttle missions, propulsion, attitude control, and astronaut selection.
Nuclear and Electric Propulsion
Explores nuclear and electric propulsion systems for space missions using hydrogen, xenon, and argon propellants.
Space Missions and Solar Radiation: Insights and Innovations
Discusses recent space missions, solar radiation effects, and key concepts in spacecraft design and orbital mechanics.