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Time-Independent Perturbation Theory: Degenerate Case
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Related lectures (31)
Time-Independent Perturbation Theory: Degenerate Case
Explores time-independent perturbation theory in the degenerate case within quantum physics.
Perturbation Theory: Time-Dependent Disturbance Theory
Explores time-dependent perturbations in quantum physics and their solutions under various disturbance scenarios.
The Schur Lemma: Physical Interpretation
Explores the physical interpretation of the Schur lemma in quantum physics.
Interaction Point of View
Explores time-dependent perturbation theory in quantum physics from an interaction point of view.
Projectors on Invariant Subspaces
Covers projectors on invariant subspaces in quantum physics and their applications.
Quantum Physics II: Time-Independent Perturbation Theory
Explores time-independent perturbations in quantum physics, covering variational principle and Fourier series.
Second Order Perturbation Transition Probabilities
Explores second-order perturbation theory in quantum physics for transition probabilities and rates.
Quantum Bosons: Second Quantification
Explores perturbation theory, proper states, undegenerated states, and problem-solving in quantum bosons.
Quantum Physics: Wave Nature and Measurement Interpretation
Explores wave nature, Schrödinger's equation solutions, and quantum measurement interpretation.
Principles of Quantum Mechanics: Wave-Particle Dualism
Explores the wave-particle dualism in quantum mechanics and the quantification of energy levels in atoms.
Continuous Symmetries; Parity Symmetry
Explores symmetry operations in quantum physics, including rotations and translations.
Quantum Information Elements: Basics and Applications
Covers the basics of quantum information elements and their practical applications in quantum information processing.
Transition Probabilities in Perturbation Theory
Explores transition probabilities in first-order perturbation theory with time-dependent perturbations and disturbance theory.
Quantum Mechanics Basics
Covers the basics of quantum mechanics, including angular momentum and energy levels.
Quantum Physics: Energy Levels and Photons
Discusses energy levels in quantum physics and properties of photons.
Multi-Instanton Solutions in Quantum Field Theory
Explores the dilute instanton gas approximation and the importance of multi-instanton solutions in quantum field theory.
Basis of Nuclear Magnetization
Explores the classical and quantum-mechanical basis of nuclear magnetization and the quantization of angular momentum and energy levels.
Introduction to Group Representations Theory
Introduces group representations theory in quantum physics, covering symmetries, perturbation theory, and energy state degeneracy.
Hartree-Fock Equations for N Fermions
Discusses the minimization of the Hartree-Fock functional for N fermions and the variational principle in quantum physics.
Quantum Mechanics: Fundamentals
Introduces the fundamentals of quantum mechanics, covering wave functions and energy levels.
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