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Joseph-Louis Lagrange
Natural sciences
Physics
Mechanics
Classical mechanics
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Related lectures (31)
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Molecular dynamics under constraints
Explores molecular dynamics simulations under holonomic constraints, focusing on numerical integration and algorithm formulation.
Variational Calculus and Least Action Principle
Covers the principle of least action and variational calculus in discovering equations of motion.
Analytical Mechanics: Principle of Least Action
Covers the principle of least action and constraint handling in analytical mechanics.
Celestial Mechanics: Three-Body Problem
Explores the dynamics of three-body systems in celestial mechanics, emphasizing stability, equilibrium points, and gravitational interactions.
Coupled Pendulums: Lagrange Mechanics
Covers the Lagrange mechanics of coupled pendulums and their equations of motion.
Tensioner of a Rotating Drum: Vibratory Mechanics
Analyzes a tensioner system for a rotating drum using Lagrange equations.
Maximum Entropy Principle: Stochastic Differential Equations
Explores the application of randomness in physical models, focusing on Brownian motion and diffusion.
System Dynamics: Trajectory Analysis
Covers the analysis of trajectories in system dynamics and solutions to the dynamics.
Hamiltonian Formulation and Equivalence with Euler-Lagrange
Explores Hamiltonian formulation and its equivalence with Euler-Lagrange equations, illustrated through examples.
Stellar Orbits: Lagrange Points
Explores stellar orbits in rotating potentials, focusing on surfaces of section, integrals of motion, and stability around Lagrange points.