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Quantum mechanics
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Quantum Physics I
Covers wave functions, wave equations, bound states, free particles, and normalization properties in quantum physics.
Quantum General Physics: Wave Function and Schrödinger Equation
Explores the wave function, Schrödinger equation, classical-quantum mechanics relationship, and eigenvalue problem in quantum physics.
Fourier Transform and Schwartz Space
Explores the Fourier transform, Schwartz space, and Riemann-Lebesgue lemma in quantum physics.
Quantum Mechanics: Path Integral Methods
Covers the basics of path integral in quantum mechanics and its application to free particles.
Square Potential Well
Covers the concept of a square potential well and the search for solutions using trigonometric functions.
Path Integral Representation of Propagators
Covers the path integral representation of propagators for free particles and harmonic oscillators.
Fixed Energy Propagator: Density and Examples
Covers the fixed energy propagator, including its analytic structure and examples of free particle and barrier penetration.
Many Body Perturbation: Theory and Equations
Covers Many-Body Perturbation Theory as a method to treat electron correlation effects.
Quantum Mechanics: Probability in Potential Wells
Delves into quantum mechanics, focusing on probability in potential wells and comparing classical and quantum predictions.
Brownian Motion and Chemical Reactions
Explores Brownian motion's role in chemical reactions and particle escape mechanisms over potential barriers.
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.
Mesoscopic Master Equation
Explains the Mesoscopic Master Equation and transition rates in particle systems.
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