Template:Quantum Mechanics A: Difference between revisions
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|Items3 = [[1D bound states]]<br /> [[The Dirac Delta function potential]]<br /> [[Scattering states]]<br /> [[Oscillation theorem]]<br /> [[Transmission-Reflection, S-matrix]]<br /> [[Motion in a periodic potential]]<br /> [[Summary of 1D Systems]] | |Items3 = [[1D bound states]]<br /> [[The Dirac Delta function potential]]<br /> [[Scattering states]]<br /> [[Oscillation theorem]]<br /> [[Transmission-Reflection, S-matrix]]<br /> [[Motion in a periodic potential]]<br /> [[Summary of 1D Systems]] | ||
|Topic4 = [[Operators, eigenfunctions, symmetry, and time evolution]] | |Topic4 = [[Operators, eigenfunctions, symmetry, and time evolution]] | ||
|Items4 = [[Linear Vector Space and Operators]]<br />[[Commutation relations and simultaneous eigenvalues]]<br />[[Symmetry and Its Role in Quantum Mechanics]]<br />[[Ehrenfest's Theorem]]<br />[[Heisenberg and interaction picture: Equations of motion for operators]]<br />[[The Interaction Picture]]<br />[[The | |Items4 = [[Linear Vector Space and Operators]]<br />[[Commutation relations and simultaneous eigenvalues]]<br />[[Symmetry and Its Role in Quantum Mechanics]]<br />[[Ehrenfest's Theorem]]<br />[[Heisenberg and interaction picture: Equations of motion for operators]]<br />[[The Interaction Picture]]<br />[[The Virial Theorem]]<br />[[Feynman path integrals]]<br />[[Problems]] | ||
|Topic5 = [[Discrete eigenvalues and bound states. Harmonic oscillator and WKB approximation|Discrete eigenvalues and bound states]] | |Topic5 = [[Discrete eigenvalues and bound states. Harmonic oscillator and WKB approximation|Discrete eigenvalues and bound states]] | ||
|Items5 = [[Harmonic oscillator spectrum and eigenstates]]<br /> [[Analytical Method for Solving the Simple Harmonic Oscillator]]<br /> [[Coherent states]]<br /> [[Feynman path integral evaluation of the propagator]] | |Items5 = [[Harmonic oscillator spectrum and eigenstates]]<br /> [[Analytical Method for Solving the Simple Harmonic Oscillator]]<br /> [[Coherent states]]<br /> [[Feynman path integral evaluation of the propagator]] |