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PHYS-101(d): General physics : mechanics
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Lectures in this course (66)
Oscillators: Damped, Forced, Beats, Resonance
Explores damped oscillators, forced oscillations, beats, and resonance in depth.
Rotations: Concepts and Applications
Explores the complexity of rotations in 3D space, covering moment of force, energy equivalence, and cross product matrices.
Rotations: Kinetic Observations and Constraints
Explores empirical observations, kinetic energy, and constraints in rotations, including the generalization of forces and 3D rotations.
Rotations in Mechanics
Explores rotations in solid mechanics, from two-dimensional to three-dimensional scenarios, emphasizing small angles and different coordinate systems.
Rotations: Fixed Points and Spherical Coordinates
Covers rotations around fixed points and spherical coordinates, discussing cinematic moments and angular velocity.
Center of Mass: Hollow Cone Inertias
Covers center of mass in hollow cones with negative mass and direct methods.
Solid Body: Rotation and Inertia
Explores rotation, inertia, and moments of inertia in solid bodies, emphasizing mass distribution and angular momentum.
Angular Momentum: Theory and Calculations
Explores angular momentum theory, practical applications, and mathematical calculations in depth.
Untitled
Solid Kinematics: Translate and Rotate
Explains solid body kinematics, focusing on translation and rotation principles and main inertia axes.
Gyroscopic Effects and Relative Motions
Explores gyroscopic effects, relative motions, and rotation matrices in dynamic systems.
Relative Movements and Gyroscopic Effects (Part 2)
Explores force models, angular momentum in different frames, and gyroscopic effects.
Relative Movements and Gyroscopic Effects
Explores relative motion, gyroscopic effects, and the importance of solid kinematics in practical experiments.
Relative Movements and Gyroscopic Effects
Covers relative speed, Euler angles, and gyroscopic effects in rotating frames.
Shock Model: Momentum Conservation and Elastic Collisions
Explores the shock model, momentum conservation, and elastic collisions in dynamic systems.
Impacts and Collisions
Explores accelerated reference frames, Coriolis force, impacts, and momentum conservation during collisions.
Center of Percussion in Mechanics
Explores the concept of the center of percussion in mechanics, demonstrating how to find the optimal striking point to prevent breakage and achieve balanced motion.
Impacts and Collisions
Explores impacts, collisions, conservation laws, and Newtonian mechanics applied to collisions.
Chocs et Collisions: Newton's Laws and Restitution Coefficient
Explores Newton's laws, kinetic energy, and restitution coefficient in collisions, including conservation laws and attached objects.
Lagrange I: Hemispherical Slider Example
Analyzes a ball sliding on a curved rail, deriving dynamic equations and equilibrium positions.
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