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Aerospace Engineering: Rocket Fundamentals and Advanced
Course Introduction
Course Introduction (4:20)
Module 1: Fundamentals, History and Core Physics of Rockets
Class 1.1: Rocket Engineering Fundamentals (4:02)
Class 1.2: Early History of Rocketry (4:11)
Class 1.3: Modern Rocketry and Key Milestones (4:25)
Class 1.4: Fundamental Physics for Rocketry (4:31)
Class 1.5: Tsiolkovsky's Rocket Equation in Depth (4:26)
Class 1.6: Forces Acting on a Rocket (4:20)
Class 1.7: Rocket Propulsion Technology Fundamentals (4:07)
Module 2: Rocket Propulsion and Aerodynamics
Class 2.1: Propellants Types and Characteristics (4:35)
Class 2.2: Liquid Rocket Engines Design and Operation (4:49)
Class 2.3: Solid Rocket Motors (3:36)
Class 2.4: Hybrid Rocket Motors (2:30)
Class 2.5: Staging Explained (5:01)
Class 2.6: Rocket Structures and Materials (5:17)
Class 2.7: Aerodynamics Flight Stability (4:03)
Module 3: Guidance, Operations and Flight Mechanics
Class 3.1: Thrust Vector Control (TVC) Guidance (4:24)
Class 3.2: Inertial Navigation Avionics Systems (3:32)
Class 3.3: Communication Telemetry (4:30)
Class 3.4: Launch Pad Ground Infrastructure (4:41)
Class 3.5: Mission Profiles Trajectories (4:28)
Class 3.6: Systems Engineering in Rocket Technology (3:48)
Class 3.7: Thermal Management and Environmental Effects (5:05)
Class 3.8: Rocket Orbital Mechanics (5:15)
Module 4: Advanced Rocket Topics and Future Trends
Class 4.1: Reusability Fundamentals (4:31)
Class 4.2: Notable Current Rocket Families (4:24)
Class 4.3: Microlaunchers and Space Trends (3:56)
Class 4.4: Future Trends and Breakthrough Concepts (4:58)
Class 1.5: Tsiolkovsky's Rocket Equation in Depth
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