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Selected Papers of Robert S. Mulliken

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ISBN-10: 0226548473

ISBN-13: 9780226548470

Edition: 1975

Authors: Robert S. Mulliken, J. Hinze, D. A. Ramsay

List price: $105.00
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Description:

This book brings together in one volume the most important papers of Robert S. Mulliken, who was awarded the 1966 Nobel Prize in chemistry for his seminal work on chemical bonds and the electronic structures of molecules. The papers collected here range from suggestive to closely detailed analyses of various topics in the theory of spectra and electronic structure of diatomic and polyatomic molecules. Professor Mulliken has written introductory commentaries on each of the volume's seven parts. Included in the volume are essays of general as well as scientific interest; they are grouped under thematic headings. Part I contains those papers which are of historical significance. An…    
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Book details

List price: $105.00
Copyright year: 1975
Publisher: University of Chicago Press
Publication date: 8/1/1975
Binding: Hardcover
Pages: 1144
Size: 7.00" wide x 10.00" long x 2.60" tall
Weight: 4.532
Language: English

Foreword
Foreword
Preface
General and Historical
Introduction
Electrons—what they are and what they do
Science and the Scientific Attitude
Molecular Scientists and Molecular Science: Some Reminiscences
Spectroscopy, Molecular Orbitals, and Chemical Bonding [Nobel Lecture]
Interpretation of Band Spectra
Introduction
Band Spectra and Chemistry
The Assignment of Quantum Numbers for Electrons in Molecules
Interpretation of Band Spectra
Theory of Energy States of Molecule Regarded as Rotating Anharmonic Oscillator
Interpretation of Band Spectra
Theory of Molecular Energy States for the Case of Fixed Nuclei
Interpretation of Band Spectra
Theory of Molecular Energy Levels; Effects of Molecular Rotation
Interpretation of Band Spectra
Empirical Band Types
Interpretation of Band Spectra
Electron Quantum Numbers and States of Molecules and Their Atoms
Interpretation of Band Spectra: Additions and Corrections to Parts I, IIa, and IIb
A-type Doubling and Electron Configurations in Diatomic Molecules
The Halogen Molecules and Their Spectra. J-J-Like Coupling. Molecular Ionization Potentials
The Low Electronic States of Simple Heteropolar Diatomic Molecules. I. General Survey
Electronic States of Diatomic Carbon and the Carbon-Carbon Bond
Some Neglected Cases of Predissociation in Diatomic Molecules
Electronic Structures of Polyatomic Molecules and Valence
Introduction
Bonding Power of Electrons and Theory of Valence
Electronic Structures of Polyatomic Molecules and Valence
Electronic Structures of Polyatomic Molecules and Valence
General Considerations
Electronic Structures of Polyatomic Molecules and Valence
Quantum Theory of the Double Bond
Electronic Structures of Polyatomic Molecules and Valence
Electronic States, Quantum Theory of the Double Bond
Electronic Structures of Polyatomic Molecules and Valence
Molecules RXn
Electronic Structures of Polyatomic Molecules and Valence
On the Method of Molecular Orbitals
Structure, Ionization and Ultraviolet Spectra of Methyl Iodide and Other Molecules
Electronic Structures of Polyatomic Molecules and Valence
Ammonia and Water Type Molecules and Valence
Electronic Structures of Polyatomic Molecules and Valence
Ionization Potentials
Electronic Structures of Polyatomic Molecules and Valence
Methane, Ethane, Ethylene, Acetylene
Electronic Structures of Polyatomic Molecules and Valence
Aldehydes, Ketones and Related Molecules
Electronic Structures of Polyatomic Molecules and Valence
Electroaffinity, Molecular Orbitals and Dipole Moments
Electronic Structures of Polyatomic Molecules and Valence
Electroaffinity and Molecular Orbitals, Polyatomic Applications
Electronic Structures of Polyatomic Molecules and Valence
Linear Triatomic Molecules, Especially Carbon Dioxide
A New Electroaffinity Scale; Together with Data on Valence States and on Valence Ionization Potentials and Electron Affinities
Intensities of Electronic Transitions in Molecular Spectra
Introduction
Intensities of Electronic Transitions in Molecular Spectra
Introduction
Intensities of Electronic Transitions in Molecular Spectra
Charge-Transfer Spectra
Intensities of Electronic Transitions in Molecular Spectra
Organic Molecules with Double Bonds. Conjugated Dienes
Intensities of Electronic Transitions in Molecular Spectra
Cyclic Dienes and Hyperconjugation
Intensities of Electronic Transitions in Molecular Spectra
Benzene
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