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Lecture
Orbital Plane Change
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Related lectures (32)
Orbital Parameters and Calendars
MOOC: Space Mission Design and Operations
Explains classical orbital parameters, spacecraft's state vector, and Gregorian vs. Julian days.
Interplanetary Trajectories: Orbital Characteristics
MOOC: Space Mission Design and Operations
Covers interplanetary trajectories, sphere of influence, and orbital characteristics of planets.
Hohmann Transfer: Small AV
MOOC: Space Mission Design and Operations
Discusses the Hohmann transfer for small AV and orbital parameters at different altitudes.
Stellar Orbits in Axisymmetric Potentials
Explores the dynamics of stellar orbits in axisymmetric potentials, focusing on nearly circular orbits and different types of motion.
Orbital Motion: Circular and Elliptical
MOOC: Space Mission Design and Operations
Covers circular and elliptical orbits, orbital period, velocity, energy, and angular momentum.
Kepler Laws: Introduction to Astrophysics
MOOC: Introduction to Astrophysics
Covers the Kepler Laws, orbital motion, reduced mass, and orbital periods.
Elliptical Orbits: Examples and Formulas
MOOC: Space Mission Design and Operations
Covers examples and formulas related to elliptical orbits and how to determine parameters of an elliptical orbit using known points.
Galaxy Disk Models: Orbits and Potentials
Explores galaxy disk models, orbits, potentials, and circular velocity in disk galaxies.
Maneuvers and Burns
MOOC: Space Mission Design and Operations
Explains the impact of altitude on orbital parameters and the types of burns used in space missions.
Nodal Regression and Sun-synchronous Orbits
MOOC: Space Mission Design and Operations
Explores nodal regression, forces in LEO, and Sun-synchronous orbits.
Catch up rate between orbits
MOOC: Space Mission Design and Operations
Explains catch up rates between circular and elliptical orbits, including key calculation differences.
Orbital Motion and Kepler's Laws
MOOC: Space Mission Design and Operations
Covers the two-body problem, Newton's law, gravitational perturbations, and Kepler's laws.
Stellar Orbits in Spherical Potentials
Explores stellar orbits in spherical potentials, including Keplerian orbits, nearly circular orbits, and the Miyamoto-Nagai potential.
Hohmann Transfer: Circular Orbits
MOOC: Space Mission Design and Operations
Covers the Hohmann transfer technique between circular orbits and the necessary velocity changes.
Kepler's Laws and Orbital Mechanics
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Explores Kepler's laws, orbital mechanics, energy of motion, flight path angles, orbital maneuvers, Hohmann transfers, geostationary orbits, and Lagrange points.
Crew-7 Return and Space Mission Design Overview
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Discusses Crew-7's return from the ISS and key principles of space mission design.
Space Mission Design: Starship Test and Rendezvous Techniques
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Discusses SpaceX's Starship test flight and the principles of rendezvous in space missions.
Space Mission Design and Operations
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Covers space mission design, spacecraft energy, orbits, and maneuvers, including gravity effects, tethers, and interplanetary trajectories.
Space Cooperation with Russia: Exomars and Soyuz
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Explores the impact of war on space cooperation with Russia, focusing on Exomars and Soyuz launches.
Private Space Missions to ISS
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Covers private space missions to the ISS, including future plans, nodal regression, Sun-synchronous orbits, and rendezvous strategies.
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