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THE BASIC CONCEPTS OF QUANTUM MECHANIC 1 The uncertainty principle
2 The principle of superposition
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angle antisymmetrical approximation asymptotic atom axes axis calculated classical mechanics co-ordinates coefficients collision commute complex conjugate components condition constant continuous spectrum corresponding definite values degeneracy degenerate denote derivative determined direction discrete spectrum distances effective cross-section eigenfunctions eigenvalues electron terms energy levels expression factor finite follows formula given gives Hamiltonian Hence identical particles infinite infinity integral interaction intersection inversion irreducible representations Let us consider linear matrix elements mean value molecule momenta motion multiplied non-zero normalised nuclei obtain operator orbital angular momentum orthogonal parity particle perturbation theory physical quantity plane potential energy probability Problem quantum mechanics quantum number quasi-classical region relation result rotation scattering Schrodinger's equation solution spherical spinor spinor of rank stationary Substituting suffixes symmetry symmetry group tion total angular momentum total spin transformation transitions vanishes variables vector velocity vibrations wave function Young diagrams zero