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Related lectures (30)
Kinetic Theory: Distribution Function Evolution
Explores the evolution of the distribution function describing particles in phase space.
Analytical Mechanics: Lagrange Formalism
Covers the limitations of Lagrange formalism and the transition to Hamiltonian formalism for dynamic variables.
Plasma Physics: Self-consistent Description
MOOC: Plasma Physics: Introduction
Covers the self-consistent description of a plasma and conservation principles.
Particle Detection: Stable Particles and Lifetime
Explores the detection of stable particles in particle physics experiments, covering observed and unobserved particles, their lifetimes, and the impact of Lorentz boost.
Bell Test: Distinguishing Physical Theories
Introduces the Bell test, exploring conclusions from local causality and quantum theory.
Overview of Particle Physics and Rutherford Scattering
Covers the constituents of matter, fundamental forces, the Standard Model, natural units, and particle interaction experiments.
Interaction with External Electromagnetic Field
Explores classical and quantum physics concepts related to the interaction with an external electromagnetic field.
Linear Beam Dynamics
Covers the Hamiltonian formalism, linear equations, Courant-Snyder parametrization, and chromatic effects in accelerator physics.
Statistical Physics: Systems Isolation
Explores statistical physics concepts in isolated systems, focusing on entropy and disorder.
Astrophysical Fluids & Plasmas
Explores the composition of the cosmos, dynamics of fluids and plasmas, and conservation equations.
Plasma Physics II: Fundamentals and Applications
Covers collisional and transport phenomena, collective phenomena, and wave-particle interactions in plasma physics.
Linear Beam Dynamics
Explores particle accelerator dynamics, transfer maps, Hamiltonian equations, and phase space conservation.
Particle Physics: Fundamentals and Interactions
Covers the basics of particle physics, including elementary particles, forces, the Standard Model, and rare phenomena at the LHC.
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Quantum Harmonic Oscillator
Explores the classical dynamics and quantization of a harmonic LC oscillator.
Chemical Equilibria and Reactivity
Explores the kinetic model of gases, Maxwell's law, diffusion, effusion, Graham's law, and gas pressure.
Reminders on two-level systems
Covers the basics of two-level systems, including states, operators, and the Bloch Sphere.
Particle Interactions: Forces and Newton's Laws
Explores particle interactions, forces, Newton's laws, and the center of mass in systems.
Equilibrium and Distribution
Explores the mesoscopic master equation, equilibrium, distribution, and Metropolis algorithm in Monte Carlo simulations.
Quantum Science and Technology
Covers the crisis of classical physics, quantum mechanics, entanglement, and quantum computing.
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