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Lecture
Coordinate Systems: Polar, Cylindrical, and Spherical
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Motion Analysis: Cartesian and Polar Coordinates
Covers the analysis of motion using Cartesian and polar coordinates, focusing on kinematics and acceleration components.
Circular motion: Friction and Newton's Laws
Explores circular motion, friction, and Newton's laws in various coordinate systems.
Kinematics: Reference Frames and Coordinates
Introduces kinematics, reference frames, trajectories, and coordinates in physics, emphasizing their importance in analyzing object motion.
Cinématique: coordonnées sphériques
Covers kinematics and spherical coordinates, including position, velocity, and acceleration.
Kinematics: Position, Velocity, Acceleration, Trajectory
Covers the fundamental concepts of kinematics, including reference frames, position vectors, velocity, acceleration, and trajectories.
Pedagogical Training: Mechanics of Point Particles on Curved Surfaces
Explores the physics of a point particle sliding on a curved surface without friction, focusing on differential equations, forces, and dynamics.
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Analyzes the motion of a ball on a hemisphere surface with forces and equations of motion.
Coordinate Systems: Polar and Spherical
Covers polar and spherical coordinate systems, position vectors, equations of motion, and Frenet frame concepts.
Advanced Physics I
Explores kinematics, vectors, non-Cartesian coordinates, and the motion of charged particles in electric and magnetic fields.
Central Motion: Forces and Kinetics
Explores the moment of a force, angular momentum, and central motion, including historical perspectives and mathematical representations.