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THE SCHRODINGER EQUATION
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angular momentum applied field atomic orbitals axis basis bond calculation Chapter character table classical coefficients combinations commutation complex components configuration consider constant constructed coordinates corresponding deduce degeneracy degenerate density depends derivative determined diatomic molecule discussion effect eigenfunctions eigenvalue electron energy levels evaluated example excited expression frequency given by eqn group theory hamiltonian harmonic oscillator Hint hydrogen atom induced integral interaction inversion irreducible representations kinetic energy labelled linear magnetic field magnitude matrix elements molecular orbital momenta notation nuclear nucleus observed obtained occur operator optical orthogonal p-orbitals paramagnetic particle perturbation theory photon polarizability polarization position potential energy principle problem properties quantity quantum mechanics quantum number radiation refractive index repulsion resonance result rotation Schrodinger equation selection rule shown in Fig singlet solution spectra spectrum spherical spin spin-orbit coupling structure symmetry transformation theorem tion triplet vector vibrational wave function wavelength write written Z-direction zero