Pilar F. Elementary Quantum Chemistry 2ed 2001
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Pilar F. Elementary Quantum Chemistry 2ed 2001
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Textbook in PDF format
Useful introductory course and reference covers origins of quantum theory, Schrödinger wave equation, quantum mechanics of simple systems, electron spin and many-electron systems, the quantum states of atoms, the Hartree-Fock self-consistent field method, the electronic structure of molecules, semiempirical molecular orbital methods, more. Supplemented by 7 appendixes.
Origins of the Quantum Theory
The Schrodinger Wave Equation
The Quantum Mechanics of Some Simple Systems
Quantum Theory of Angular Momentum: The Rigid Rotator
The Hydrogen Atom
Approximate Solutions to the Schrödinger Equation
Electron Spin and Many-Electron Systems
The Quantum States of Atoms
The Algebra of Many-Electron Calculations
The Hartree-Fock Self-Consistent Field Method
Introduction to Molecular Structure
The Electronic Structure of Linear Molecules
The Electronic Structure of Nonlinear Molecules
Semiempirical Molecular Orbital Methods I: Pi Electron Systems
Semiempirical Molecular Orbital Methods II: All Valence-Electron Systems
Electronic Transitions in Molecules
Summary of the MO-LCAO Approximation
The Hydrogen Molecule Ion, image
Scaling and the Virial Theorem for Diatomic Molecules
The Hydrogen Molecule (Dihydrogen)
The Aufbau Principle for Homonuclear Diatomic Molecules
Heteronuclear Diatomic Molecules
Linear Polyatomic Molecules
Molecular Configuration-Interaction Calculations
Natural Orbital Analysis of Molecular Wavefunctions
Molecular Perturbation Calculations
The Electronic Structure of Nonlinear Molecules
 Semiempirical Molecular Orbital Methods I: Pi Electron Systems
 Semiempirical Molecular Orbital Methods II: All Valence-Electron Systems
Appendices
Values of Physical Constants
Electrostatic and Electromagnetic Units
Evaluation of Some Simple Helium Atom Integrals
Vector and Operator Algebra
Elements of Matrix Algebra
Molecular Symmetry
Character Tables for Some Common Molecular Point Groups