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Modern Quantum Chemistry

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Modern Quantum Chemistry

The aim of this graduate-level textbook is to present and explain, at other than a superficial level, modem ab initio approaches to the calculation of the electronic structure and properties of molecules. The first three chapters contain introductory material culminating in a thorough discussion of the Hartree-Fock approximation.The remaining four chapters describe a variety of more sophisticated approaches, which improve upon this approximation.
Among the highlights of the seven chapters are (1) a review of the mathematics (mostly matrix algebra) required for the rest of the book, (2) an introduction to the basic techniques, ideas, and notations of quantum chemistry, (3) a thorough discussion of the Hartree-Fock approximation, (4) a treatment of configuration interaction (Cl) and approaches incorporating electron correlation, (5) a description of the independent electron pair approximation and a variety of more sophisticated approaches that incorporate coupling between pairs, (6) a consideration of the perturbative approach to the calculation of the correlation energy of many-electron systems and (7) a brief introduction to the use of the one-particle many-body Green's function in quantum chemistry.
Over 150 exercises, designed to help the reader acquire a working knowledge of the material, are embedded in the text. The book is largely self-contained and requires no prerequisite other than a solid undergraduate physical chemistry course; however, some exposure to quantum chemistry will enhance the student's appreciation of the material. Clear and well-written, this text is ideal for the second semester of a two-semester course in quantum chemistry, or for a special topics course.


Reprint of the McGraw-Hill Publishing Company, New York, 1989 edition.

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The aim of this graduate-level textbook is to present and explain, at other than a superficial level, modem ab initio approaches to the calculation of the electronic structure and properties of molecules. The first three chapters contain introductory material culminating in a thorough discussion of the Hartree-Fock approximation.The remaining four chapters describe a variety of more sophisticated approaches, which improve upon this approximation.
Among the highlights of the seven chapters are (1) a review of the mathematics (mostly matrix algebra) required for the rest of the book, (2) an introduction to the basic techniques, ideas, and notations of quantum chemistry, (3) a thorough discussion of the Hartree-Fock approximation, (4) a treatment of configuration interaction (Cl) and approaches incorporating electron correlation, (5) a description of the independent electron pair approximation and a variety of more sophisticated approaches that incorporate coupling between pairs, (6) a consideration of the perturbative approach to the calculation of the correlation energy of many-electron systems and (7) a brief introduction to the use of the one-particle many-body Green's function in quantum chemistry.
Over 150 exercises, designed to help the reader acquire a working knowledge of the material, are embedded in the text. The book is largely self-contained and requires no prerequisite other than a solid undergraduate physical chemistry course; however, some exposure to quantum chemistry will enhance the student's appreciation of the material. Clear and well-written, this text is ideal for the second semester of a two-semester course in quantum chemistry, or for a special topics course.


Reprint of the McGraw-Hill Publishing Company, New York, 1989 edition.

computational chemistry;kinetic theory;chemistry texts;mathematical treatments;chemistry textbook;chem text;chemistry courses;wave functions;inorganic chemistry;chemistry student;statistical mechanics;linus pauling;linear algebra;mathematical background;physical chemistry;organic chemistry;chemistry class;classic text;graduate level;quantum mechanics;matrices;chromatography;oxides;fock;metallurgical;initio;molar;perturbation;boltzmann;oxtoby;spectroscopy;orbitals;derivations;electron;thermodynamics;chemists;approximation;notations;operators;atkins;calculate;molecular;calculus;symmetry;fundamentals;levine;representations;applications;chemical;delivery;physics;books on physical chemistries;books on perturbations;books on inorganic chemistries;books on matrices;books on classic texts;books on graduate levels;books on computational chemistries;books on spectroscopies;books on linear algebras;books on orbitals;books on initios;books on notations;books on fock;books on operators;books on chemistry texts;books on thermodynamics;books on kinetic theories;books on mathematical treatments;books on boltzmanns;books on calculus;books on chemistry classes;books on oxtoby;books on chemistry textbooks;books on fundamentals;books on organic chemistries;books on chemistry students;books on wave functions;books on statistical mechanics;books on oxides;books on linus paulings;books on electrons;books on chromatographies;books on chemistry courses;books on quantum mechanics