SUBJECTS
June 04, 2026
Spin 1/2 , Stern - Gerlach Experiment and Spin 1
Spin 1/2 , Stern - Gerlach Experiment and Spin 1
In this series of physics lectures, Professor J.J. Binney explains how probabilities are obtained from quantum amplitudes, why they give rise to quantum interference, the concept of a complete set of amplitudes and how this defines a "quantum state".
Spin Angular Momentum
Spin Angular Momentum
In this series of physics lectures, Professor J.J. Binney explains how probabilities are obtained from quantum amplitudes, why they give rise to quantum interference, the concept of a complete set of amplitudes and how this defines a "quantum state".
Even further Orbital Angular Momentum - Eigenfunctions, Parity and Kinetic Energy
Even further Orbital Angular Momentum - Eigenfunctions, Parity and Kinetic Energy
In this series of physics lectures, Professor J.J. Binney explains how probabilities are obtained from quantum amplitudes, why they give rise to quantum interference, the concept of a complete set of amplitudes and how this defines a "quantum state".
Further Orbital Angular Momentum, Spectra of L2 and LZ
Further Orbital Angular Momentum, Spectra of L2 and LZ
In this series of physics lectures, Professor J.J. Binney explains how probabilities are obtained from quantum amplitudes, why they give rise to quantum interference, the concept of a complete set of amplitudes and how this defines a "quantum state".
Diatomic Molecules and Orbital Angular Momentum
Diatomic Molecules and Orbital Angular Momentum
In this series of physics lectures, Professor J.J. Binney explains how probabilities are obtained from quantum amplitudes, why they give rise to quantum interference, the concept of a complete set of amplitudes and how this defines a "quantum state".
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