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Lecture
Local Diffeomorphisms
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Related lectures (32)
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Circular motion: Concepts and Calculations
Explores circular motion concepts, centripetal force, velocity, and acceleration in different coordinate systems, with a focus on auto racing and Formula 1 tire physics.
Coordinate Systems: Polar and Spherical
Covers polar and spherical coordinate systems, position vectors, equations of motion, and Frenet frame concepts.
Coordinate Systems: Polar, Cylindrical, and Spherical
Explains polar, cylindrical, and spherical coordinates in physics, emphasizing their advantages in simplifying motion analysis.
Coordinate Changes: Polar and Spherical
Explores differentiability and coordinate transformations between polar and spherical systems.
Advanced Physics I: Kinematics and Coordinate Systems
Explores advanced physics topics like kinematics in 3D, non-Cartesian coordinates, and practical examples of collisions and snowball fights.
Cinématique: Polar Coordinates Part 1
Covers the basics of polar coordinates and their application in kinematics.
Change of Variables: Examples
Explores examples of applying the change of variable formula to simplify integrals over different regions.
Coordinate Systems: Polar and Cylindrical
Explores position, velocity, and acceleration in polar and cylindrical coordinate systems, simplifying complex formulas for motion analysis.
Kinematics: Basics and Coordinates
Introduces the basics of kinematics, covering reference frames, trajectories, and coordinate systems.
Taylor Polynomial: Order 2
Explores Taylor polynomials of order 2 and their applications in differential calculus and polar coordinates.