Molecular Quantum Mechanics (inbunden)
Format
Häftad (Paperback)
Språk
Engelska
Antal sidor
560
Utgivningsdatum
2010-11-11
Upplaga
5
Förlag
OUP Oxford
Medarbetare
Friedman, Ronald S.
Illustratör/Fotograf
330
Illustrationer
330
Dimensioner
265 x 195 x 22 mm
Vikt
1320 g
Antal komponenter
1
Komponenter
,
ISBN
9780199541423

Molecular Quantum Mechanics

Häftad,  Engelska, 2010-11-11
1038
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Quantum mechanics embraces the behaviour of all known forms of matter, including the atoms and molecules from which we, and all living organisms, are composed. Molecular Quantum Mechanics leads us through this absorbing yet challenging subject, exploring the fundamental physical principles that explain how all matter behaves.
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Recensioner i media

Rebecca Ingle, Times Higher Education Supplement An ideal purchase for undergraduates as it gives a comprehensive coverage of all the topics at this level, offering a great deal of additional insight for those captivated by the quantum world... For those enthusiastic about this field and looking for a more rigorous approach, this text is absolutely superb. The impressive range and depth of topics covered make it a very worthwhile purchase.

Claire Pickering, student, University of Central Lancashire A must have book that's ideal for every chemistry student to have on their shelf.

Stephen H. Ashworth, Contemporary Physics Although this is an undergraduate textbook it constitutes quite an advanced course in molecular quantum mechanics. It makes a good introduction to a novice, be they undergraduate or postgraduate, to a wide variety of specialist areas within molecular quantum mechanics.

Övrig information

<br>Professor Peter W. Atkins is Professor of Chemistry, and fellow of Lincoln College at University of Oxford, UK. <br>Professor Ronald S. Friedman is of the Department of Chemistry at Indiana University Purdue University, Fort Wayne, USA.<br>

Innehållsförteckning

0. Introduction and orientation; 1. The foundations of quantum mechanics; 2. Linear motion and the harmonic oscillator; 3. Rotational motion and the hydrogen atom; 4. Angular momentum; 5. Group theory; 6. Techniques of approximation; 7. Atomic spectra and atomic structure; 8. An introduction to molecular structure; 9. Computational chemistry; 10. Molecular rotations and vibrations; 11. Molecular electronic transitions; 12. The electric properties of molecules