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Chapter II The Elements of Wave Mechanics
Chapter III The Hydrogenlike Atom and the Diatomic Molecule
3 other sections not shown
2p orbitals angular momentum antisymmetric approximation arise atomic orbitals axis Bohr bond energy bond orbital bond orbital method calculation cell classical coefficient complete wave function complex atoms component Consequently consider constant coordinates corresponding covalent bond degenerate diatomic molecule dipole discussion distance distribution law electron orbitals emission energy difference energy levels entropy exchange integral exclusion principle experimental frequency give given Heitler and London helium hence hydrogen atom ionic James and Coolidge kinetic energy lowest energy mass mathematical molecular orbitals normalized nucleii nucleus number of particles obtain operator orthogonal Pauli Exclusion Principle perfect gas phase space photons postulates potential barrier potential energy principal quantum probability of finding problem properties quantity quantum theory radiation region repulsion result Schrodinger equation selection rules shell singlet solution stationary symmetry theorem thermodynamic total number transition triplet uncertainty principle values variation method velocity wave function wave length zero