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Lecture
Independent Time Perturbations
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Related lectures (52)
Time-Independent Perturbations 2
Explores time-independent perturbations in quantum mechanics and their effects on energy levels and eigenstates.
Basis of Nuclear Magnetization
MOOC: Fundamentals of Biomedical Imaging: Magnetic Resonance Imaging (MRI)
Explores the classical and quantum-mechanical basis of nuclear magnetization and the quantization of angular momentum and energy levels.
Quantum Mechanics: Principles and Wave Functions
Explores quantum mechanics principles, wave functions, energy quantization, and particle confinement in a box.
Quantum Mechanics: Bound-State Problems
Analyzes bound-state problems, Bohr-Sommerfeld quantization, and tunneling through potential barriers in quantum mechanics.
The Particle in a Box
Covers the particle in a box, discussing wave functions and energy levels.
Ehrenfest Theorem
Explores the Ehrenfest Theorem, connecting quantum and classical mechanics through expectation values and harmonic oscillator dynamics.
Perturbation Theory in Quantum Mechanics
Explores perturbation theory in quantum mechanics, focusing on energy level calculations and providing exercise-solving hints.
Quantum Harmonic Oscillator
Explores the quantum harmonic oscillator, creation and annihilation operators, energy levels, and wave functions.
Quantum Mechanics: Atomic Structure
Explores the quantum model of atoms, electron distribution, and orbital shapes.
Spontaneous Emission and Cross Section
Delves into spontaneous emission, cross section, and damping in laser fundamentals.
The Hydrogen Atom
Explores the quantum mechanics of the hydrogen atom and Bohr's model in atomic systems.
Classical and Quantum Mechanics: Foundations and Applications
Explores classical and quantum mechanics, covering observables, momentum, Hamiltonian, and the Schrödinger equation, as well as quantum chemistry and the Schrödinger's cat experiment.
Quantum Optics I: Quantized Harmonic Oscillator
Covers the quantization of the harmonic oscillator and its implications on the electromagnetic field, including vacuum energy effects.
Quantum Mechanics: Probability in Potential Wells
Delves into quantum mechanics, focusing on probability in potential wells and comparing classical and quantum predictions.
Quantum Mechanics: Particle in a Box
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Explores quantum mechanics, emphasizing the harmonic oscillator and particle confinement in a box.
Quantum Chemistry: Fundamentals of Quantum Mechanics
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Covers the fundamentals of quantum mechanics and the behavior of particles at the quantum level.
Quantum Mechanics: Particle in a Box
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Covers the quantum mechanics of a particle in a confined box and its energy levels.
Quantum Physics: Wave Nature and Measurement Interpretation
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Explores wave nature, Schrödinger's equation solutions, and quantum measurement interpretation.
Solutions of the Schrodinger Equation
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Explores solutions of the Schrodinger Equation for different systems and discusses wave-particle duality, energy states, and quantum effects.
Energy Levels in Quantum Mechanics
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Explains energy levels in quantum mechanics, including calculations with Planck's constant and electron charge.
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