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Episodes


L24.1 Symmetrizer and antisymmetrizer for N particles

L23.2 Permutation operators acting on operators

L16.4 Landau-Zener transitions

L4.3 The Pauli equation for the electron in an electromagnetic field

L11.2 Transition rates for stimulated emission and absorption processes

L8.2 Asymptotic expansions of Airy functions

L2.2 Anharmonic Oscillator via a quartic perturbation

L17.2 Berry's phase and Berry's connection

L7.3 Validity of the WKB approximation

L9.4 Setting up perturbation theory

L20.3 Scattering amplitude in terms of phase shifts

L22.4 Identical particles and exchange degeneracy

L20.5 Identification of phase shifts. Example: hard sphere

L18.1 Born-Oppenheimer approximation: Hamiltonian and electronic states

L12.4 Einstein's argument: B and A coefficients

L12.1 Ionization rate for hydrogen: final result

L20.4 Cross section in terms of partial cross sections. Optical theorem

L24.2 Symmetrizer and antisymmetrizer for N particles (continued)

L11.3 Ionization of hydrogen: conditions of validity, initial and final states
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