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PHYS-101(a): General physics : mechanics
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Lectures in this course (147)
Trajectory Determination in Mechanics
Explains trajectory determination in mechanics, including types of trajectories and effective potential, with practical examples.
Mechanics in Accelerated Frames
Covers the mechanics of pendulums in accelerating reference frames and the application of Newton's laws.
Coordinate Systems: Polar, Cylindrical, Spherical
Covers position, velocity, and acceleration in polar, cylindrical, and spherical coordinate systems.
Mechanics: Moment of Inertia and Kinematics
Covers the moment of inertia, collision dynamics, center of mass, kinematics, and relative motion in solid mechanics.
Mechanics: Moments and Rotations
Covers the calculation of total forces moments and the concept of rigid bodies.
Mechanics: Rotational Motion
Discusses moment of inertia, angular momentum, and the Atwood machine problem.
Kinematics: Reference Frames and Coordinates
Introduces kinematics, reference frames, trajectories, and coordinates in physics, emphasizing their importance in analyzing object motion.
Circular Motion in a Train: Mechanics
Explores circular motion in a train, discussing position, velocity, and acceleration in different frames of reference.
Ballistics and Forces Equilibrium
Explores ballistics, forces equilibrium, and Newton's laws with practical examples and problem-solving strategies.
Oscillator Harmonics: Mechanics for SIE and GC
Covers the basics of oscillator harmonics and their applications in physics.
Differential Equations in Physics
Covers ordinary linear homogeneous differential equations, focusing on the harmonic oscillator equation and its solutions.
Mechanics of Springs
Covers the mechanics of springs, analyzing forces and elongations in connected springs.
Ordinary Differential Equations: Second Order
Covers the resolution of linear ordinary differential equations of the second order with constant coefficients and a source term.
Polar Coordinates: Position and Velocity
Explores polar coordinates, position, velocity, and acceleration vectors in Cartesian and polar systems, including cylindrical and spherical coordinates.
Looping Mechanics: Energy and Stability
Explores the mechanics of a looping ramp, focusing on energy conservation and stability.
Scalars and Vectors: Basics of Mechanics
Introduces scalar and vector quantities, Newton's laws applications, work, energy, and modeling physical systems.
Salarie de la peur
Covers modeling a truck carrying nitroglycerin and analyzing forces on a rocket in space.
Conic Sections: Determining Parameters
Explores the determination of conic section parameters and the laws of Kepler in celestial mechanics.
General Physics I: Mechanics
Covers moment of inertia, angular momentum, and kinetic energy in rotational motion.
Kinematics: Coordinate Systems and Trajectories
Introduces kinematics, covering reference frames, trajectories, and velocity concepts in motion analysis.
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