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Published **1967**
by Pergamon Press in Oxford, New York .

Written in English

- Energy-band theory of solids.

**Edition Notes**

Other titles | Electron theory of solids. |

Series | The Commonwealth and international library. |

Classifications | |
---|---|

LC Classifications | QC176.8.E4 S79 1967 |

The Physical Object | |

Pagination | ix, 246 p. |

Number of Pages | 246 |

ID Numbers | |

Open Library | OL5997134M |

LC Control Number | 66029606 |

Additional Physical Format: Online version: Stringer, John, Introduction to the electron theory of solids. Oxford, New York, Pergamon Press [] Unlike other solid state physics texts, this book does not begin with complex crystallography, but instead builds up from the simplest possible model of a free electron in a box. The approach is to introduce the subject through its historical development, and to show how quantum mechanics is necessary for an understanding of the properties of Get this from a library! Introduction to the physics of electrons in solids. [B K Tanner] -- Unlike other solid state physics texts, this book does not begin with complex crystallography, but instead builds up from the simplest possible model of a free electron in a box. The approach is to 8 Introduction to Theory of Solids where a 1 a 2 ×a 3 =V is the volume of the elementary cell of the real lattice. Given the primitive (basic) vectors of the reciprocal lattice b 1 b 2 b 3 one can write each vector of reciprocal lattice as G=hb 1 +kb 2 +lb 3 () where hkl are integers. The scalar product of an arbitrary vector in a real

Aimed at graduate students and researchers, this book covers the key aspects of the modern quantum theory of solids, including up-to-date ideas such as quantum fluctuations and strong electron correlations. It presents the main concepts of the modern quantum theory of solids, as well as a general description of the essential theoretical methods required when working with these :// here exists a gap in the present literature on quantum mechanics T and its application to solids. It has been difficult to find an intro ductory textbook which could take a student from the elementary quan tum mechanical ideas of the single-particle Schrodinger equations, through the formalism and new physical concepts of many-body theory, to the level where the student would be equipped Aimed at graduate students and researchers, this book covers the key aspects of the modern quantum theory of solids, including up-to-date ideas such as quantum ﬂuctuations and strong electron correlations. It presents the main concepts of the modern quantum theory of solids, as well as a general description of the The theory of perfectly plastic solids: W. Prager and P.G. Hodge Jr.: John Wiley and Sons, Inc., New York ; Chapman and Hall Ltd., London. , pp. + x, $ or

1 Introduction 1 What is the electron theory of metals? 1 Historical survey of the electron theory of metals 3 Outline of this book 8 2 Bonding styles and the free-electron model 10 Prologue 10 Concept of an energy band 10 Bonding styles 13 Motion of an electron Optical Properties of Solids covers the important concepts of intrinsic optical properties and photoelectric emission. The book starts by providing an introduction to the fundamental optical spectra of solids. The text then discusses Maxwell's equations and the dielectric function; absorption and dispersion; and the theory of free-electron ://?id=UBQAAQBAJ. Principles of the Theory of Solids To cite this article: George Saunders Phys. Bull. 16 View the article online for updates and enhancements. Related content Introduction to the Physics of Fluids and Solids R M Wood-An Introduction to the Electron Theory of Solids B Donovan-Electrons in Metals. A Short Guide to the Fermi Surface C A many body theory of solids an introduction bibliographies and reviews or search worldcat find items in libraries near you best book many body theory of solids an introduction uploaded by jeffrey archer many body gedankenwelt vielfalt an introduction to the electron theory of solids introduces the reader to the electron

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