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Related lectures (22)
Forces and Friction: Understanding Mechanical Interactions
Explores elastic deformation, Hooke's Law, friction models, viscous friction, and Newton's laws in practical scenarios.
Newton's Laws of Motion
Covers Newton's Laws of Motion, action-reaction, conservation of momentum, and fundamental interactions in physics.
Friction Models: Dry and Viscous
Explores dry and viscous friction models, Hooke's law, problem-solving strategies, and ballistic motion examples.
Projectile Motion: Friction Effects
Explores projectile motion with friction effects and dynamics of polar expeditions.
Mechanics: Forces and Friction
Introduces mechanics concepts such as forces, friction, and problem-solving with Newton's laws.
Ballistics and Forces Equilibrium
Explores ballistics, forces equilibrium, and Newton's laws with practical examples and problem-solving strategies.
Newton's Laws: Ballistics and Forces Equilibrium
Explores the application of Newton's laws in ballistics and forces equilibrium, emphasizing problem-solving techniques and trajectory analysis.
Projectile Motion: Frictional Effects
Discusses projectile motion with friction and systems with inclined planes and pulleys.
Magnetostatics: Magnetic Field and Force
Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
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Static Equilibrium Modeling: Understanding Forces and Structures
Covers static equilibrium modeling, focusing on forces, bars, and their relationships in structures.
Phase Plan: Trajectories and Isoclines
Explores trajectories and isoclines in mechanical systems using phase plans and different representation methods.
Representation Theory: Algebras and Homomorphisms
Covers the goals and motivations of representation theory, focusing on associative algebras and homomorphisms.
Block Pulled by a Spring
Explores the dynamics of a block pulled by a spring under various conditions.
Simple Pendulum: Constraints and Equations of Motion
Explores the analysis of a simple pendulum, discussing constraints, forces, and equilibrium points.
Newton's Laws: Harmonic Oscillator
Covers the application of Newton's laws to harmonic oscillators with damping.
AI for Science
Explores fundamental principles in scientific research, the impact of computers, numerical algorithms, and deep learning in solving high-dimensional problems.
Fundamentals of Electromagnetic Waves and Their Properties
Provides an overview of electromagnetic wave properties, including speed, refraction, frequency spectrum, and polarization.
Quantité de mouvement and Impulsion
Explores momentum, impulse, work, energy, and angular momentum in advanced physics.
Forced Harmonic Oscillator: Resonance Phenomenon
Covers the forced and damped harmonic oscillator, including the harmonic solution and resonance phenomenon.
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