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□-» Introduction to the Electron Theory of Metals

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Title:  Introduction to the Electron Theory of Metals
Division:  General Inorganic / Cambridge Univ P / 英文版
Author/Editor:  Uichiro Mizutani    Star:  
ISBN: 0521583349
Introduce Date:  2006年07月06日19:47 , Release Date:  2006年07月06日23:37
Introducer:  choscar , Rate: 4/221  
Format:  pdf(editorial)  Download 

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Appraiser: mszhou2002  Grade: +1  Reason: ( 这本书很棒 )
Description:

Introduction to the Electron Theory of Metals
Uichiro Mizutani
Nagoya University, Japan
ISBN-10: 0521583349

The electron theory of metals describes how electrons are responsible for the bonding of metals and subsequent physical, chemical and transport properties. This textbook gives a complete account of electron theory in both periodic and non-periodic metallic systems. The author presents an accessible approach to the theory of electrons, comparing it with experimental results as much as possible. The book starts with the basics of one-electron band theory and progresses to cover up-to-date topics such as high Tc superconductors and quasicrystals. The relationship between theory and potential applications is also emphasized. The material presented assumes some knowledge of elementary quantum mechanics as well as the principles of classical mechanics and electromagnetism. This textbook will be of interest to advanced undergraduates and graduate students in physics, chemistry, materials science and electrical engineering. The book contains numerous exercises and an extensive list of references and numerical data.


• An accessible introduction
• Compares theory and experiment as much as possible
• Numerous exercises with hints and answers
Contents

1. Introduction to electron theory of metals; 2. Bonding styles and the free electron model; 3. Electrons in a metal at finite temperatures; 4. Periodic lattice and lattice vibrations in crystals; 5. Conduction electrons in a periodic potential; 6. Electronic structure of pure elements in periodic table; 7. Principles of measuring electronic structure related phenomena; 8. Electronic structure calculations; 9. Electronic structure of alloys; 10. Electron transport properties in periodic systems (I); 11. Electronic transport properties in crystal metals (II); 12. Superconductivity; 13. Magnetism, electronic structure and electron transport properties in magnetic metals; 14. Electronic structure of strongly correlated electron systems; 15. Electronic structure and electron transport properties of liquid metals, amorphous metals and quasicrystals.


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