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Quantum Physics I
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Related lectures (30)
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Fourier Transform: Basics and Applications
Covers the basics of Fourier transform and the significance of fixed angular momentum states in mass calculations.
Quantum Physics I
Explores eigenvalues, ladder operations, and quantum number values in quantum physics.
Quantum Physics I
Covers angular momentum in quantum physics, creation operators, spin, and matrix elements.
Computational Quantum Physics
Covers exact diagonalization methods for many-particle systems in quantum physics.
Uncertainty Principle
Explores the uncertainty principle in quantum mechanics, covering compatible observables, system states, and mathematical representations of uncertainty.
Asymptotic States and S-matrix: Operators
Explores asymptotic states, S-matrix, and operators in quantum field theory, emphasizing the role of discrete symmetries and complete sets of states.
Quantum Physics I
Explores the position representation and momentum operators in quantum physics.
Quantum Mechanics: Operators and Eigenvalues
Covers matrix elements, operators, paths with conditions, and time evolution in quantum mechanics.
Quantum Physics I
Covers the basics of quantum physics, including vector spaces, state vectors, operators, and measurements.
Wigner-Eckart Theorem
Explores the Wigner-Eckart theorem and its applications in quantum physics.