Fr. 153.60

Orbitals: With Applications in Atomic Spectra - With Applications in Spectroscopy and Paramagnetism

English · Hardback

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Description

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"This clearly written and elegantly presented short textbook will meet essential needs in diverse undergraduate Chemistry courses, covering orbitals in simple hydrogen - like atoms, multi-electron atoms and in molecules in a mathematically rigorous yet simultaneously physically insightful manner. I will certainly recommend the text to my undergraduates. In excess of 100 problems with full worked answers at all levels are provided and will certainly become a major teaching resource."
Richard G Compton

Tutor in Chemistry

St John's College

Oxford University, UK

This book describes atomic orbitals at a level suitable for undergraduates in chemistry. The mathematical treatment is brought to life by many illustrations rendered from mathematical functions (no artists' impressions), including three-dimensional plots of angular functions, showing orbital phase, and contour plots of the wavefunctions that result from orbital hybridisation.
Orbitals extends the key fundamental quantum properties to many-electron atoms, linear combinations of atomic orbitals, simple molecules, delocalised systems and atomic spectroscopy. By focusing on simple model systems, use of analogies and avoiding group theory the results are obtained from initial postulates without the need for sophisticated mathematics.

List of contents

Fundamentals; Orbitals in the Hydrogen Atom; Wave Functions in Multi-Electron Atoms; Orbitals in Molecules; Electronic Transitions and Selection Rules; Russell-Saunders Terms and Atomic Spectroscopy; Paramagnetism; Solutions to Exercises.

Summary

This book, suitable for undergraduates in chemistry, describes atomic orbitals in detail and is illustrated by three-dimensional plots of the mathematical functions (no artists' impressions). It then extends the key fundamental quantum properties to many-electron atoms, linear combinations of atomic orbitals, simple molecules, delocalised systems, atomic spectroscopy and paramagnetism.

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