Molecular Quantum Mechanics: An Introduction to Quantum Chemistry, Volume 1 |
Contents
THE SCHRÖDINGER EQUATION | 26 |
EXACT SOLUTIONS | 46 |
OPERATORS | 101 |
Copyright | |
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A₁ A₂ angular momentum Appendix applied basis functions Calculate Chapter character table classical mechanics classical physics coefficients components consider constant construct coordinates coupled representation deduce degeneracy degenerate derived determined diagonal discussion effect eigenfunctions eigenvalue electron energy levels example expressed frequency group C3 group theory hamiltonian harmonic oscillator Hermitian Hermitian operators Hint hydrogen atom infinitesimal integral irreducible representations j₁ j₂ kinetic energy linear m₁ m₂ magnitude matrix elements molecule momenta multiplied notation nucleus observe obtained one-dimensional orbitals orthogonal particle path perturbation position postulate potential energy probability of finding problem properties quantity quantization quantum mechanics quantum number radiation representatives result rotation Schrödinger equation shown in Fig solution span spherical harmonics square symmetry transformation theorem time-dependent tion transition uncertainty principle vector virial theorem wave equation wave functions wave packet wavelength write written zero zero-point energy