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Related lectures (32)
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Orbital Motion and Kepler's Laws
Covers the two-body problem, Newton's law, gravitational perturbations, and Kepler's laws.
Nodal Regression and Sun-synchronous Orbits
Explores nodal regression, forces in LEO, and Sun-synchronous orbits.
Gravitational Forces: Orbits and Space Debris
Explores gravitational forces, satellite orbits, space debris, escape velocity, black holes, galaxy rotation, planet properties, and angular momentum.
Space Debris Management: Sustainable Solutions for Future Missions
Addresses the challenges of space debris and presents a project aimed at sustainable management of low Earth orbit.
Mercury's Precession: Calculation Methods
Explores methods to calculate Mercury's precession and analyzes celestial mechanics concepts.
Crew-7 Return and Space Mission Design Overview
Discusses Crew-7's return from the ISS and key principles of space mission design.
Seasons and Ecliptic Simulator
Explains seasons, equinoxes, solstices, Earth's orbit, and solar time.
Gateways to the Moon and Local Floer Homology
Explores the problem of a falling stone hitting the moon, focusing on gateways to the moon and local Floer homology.
Basic Notions, Ch III: Group Actions
Explores group actions on sets, orbits, fixed points, and classic results.
Orbital Parameters and Calendars
Explains classical orbital parameters, spacecraft's state vector, and Gregorian vs. Julian days.