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Lecture
Path Integral: Free Particle
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Path Integral Representation of Propagators
Covers the path integral representation of propagators for free particles and harmonic oscillators.
Path Integral Formalism and Quantum Thermodynamics
Explores the path integral formalism in quantum mechanics and its application in quantum thermodynamics.
Quantum Mechanics: Particle in a Box
Covers the quantum mechanics of a particle in a confined box and its energy levels.
Principles of Quantum Mechanics: Wave-Particle Dualism
Explores the wave-particle dualism in quantum mechanics and the quantification of energy levels in atoms.
Harmonic Oscillator: Energy States
Explores the harmonic oscillator, energy conservation, wave packet spread, and dispersion effects 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.
Gaussian Path Integrals: Composition Property
Explores wave packet evolution, path integrals, and Gaussian composition properties in quantum mechanics.
Constructing Correlators with Path Integrals
Explores constructing correlators using path integrals in quantum mechanics, focusing on the Euclidean and Minkowski spaces and the significance of imaginary time evolution.
The Free Particle
Covers the concept of the free particle in quantum mechanics and explores momentum, eigenstates, and wave packets.
Quantum Mechanics Evolution
Explains the representation for evolution in quantum mechanics and the application of path integrals.