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PHYS-101(a): General physics : mechanics
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Lectures in this course (139)
Conic Sections: Determining Parameters
Explores the determination of conic section parameters and the laws of Kepler in celestial mechanics.
Dynamics in Accelerated Frames: Coriolis Force
Explores dynamics in accelerated frames, emphasizing the Coriolis force's effects on moving objects and weather systems.
Mechanics: Forces and Motion
Covers the fundamental concepts of mechanics, focusing on forces and motion.
Mechanics: Newton's Laws and Center of Mass
Covers Newton's laws, center of mass, conservation laws, and transfer theorem for angular momentum.
Central Motion: Conic Sections and Kepler's Laws
Explores trajectory parameters, types, and Kepler's laws in central motion scenarios.
Mechanics in Accelerated Frames
Covers the mechanics of pendulums in accelerating reference frames and the application of Newton's laws.
Moment Cinétique: Théorème du Transfert
Explains angular momentum, transfer theorem, Koenig's theorem, and collision scenarios in different reference frames.
Forces and Inertial Frames
Explores inertial frames, forces, and weight variations in different reference frames.
Moment Cinetic: Theorems and Applications
Explores angular momentum transfer theorems and applications in physics.
Rotation of Solids: Kinematics and Dynamics
Covers the kinematics and dynamics of solids in rotation, focusing on velocity and acceleration in different points within a solid.
Center of Mass Calculation in Mechanics
Explores center of mass calculation in mechanics, emphasizing system symmetry and spherical coordinates for simplifying calculations.
Solid Mechanics: Motion Analysis
Explores the analysis of motion in solid mechanics, covering velocity, acceleration, and kinematics of solid bodies.
Mechanics: Moments and Rotations
Covers the calculation of total forces moments and the concept of rigid bodies.
Mechanics: Rotational Motion
Explores rotational motion, covering moment of inertia, angular momentum, and rotational dynamics theorems.
Solid Rotation: Moment of Inertia
Explores solid rotation, angular momentum, and moment of inertia calculation methods.
Solid Rotation: Moment of Inertia
Explores solid rotation, moment of inertia, and the Huygens-Steiner rule for parallel axes.
Gyroscopic Effects
Explores gyroscopic effects, focusing on angular momentum variation and object rotation under external forces.
Mechanics: Rotational Motion
Discusses moment of inertia, angular momentum, and the Atwood machine problem.
Angular Momentum and Gyroscopic Effects
Explores angular momentum, gyroscopic effects, and their applications in various systems.
Derivatives and Chain Rule
Covers derivatives, chain rule, function development, and primitive functions for integration.
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