Because virtually all of the properties of solids are determined by the valence electrons, the author devotes the first third of the book to electron states, including solid types and symmetry, band structure, electron dynamics, the self-consistent-field approximation, energy-band calculations, semi-conductor and semi-metal bands, impurity states, the electronic structure of liquids, and other topics. At least one year of quantum mechanics is required however, the author introduces more advanced methods as needed. This feature makes the book especially useful to specialists in other fields who many encounter solid state problems in their own work. While presenting a broad overview of the fundamental concepts and methods of solid state physics, including the basic quantum theory of solids, it surpasses more theoretical treatments in its practical coverage of physical applications. Professor Harrison's well-known text offers an excellent one-year graduate course in this active and important area of research. The field of solid state theory, including crystallography, semi-conductor physics, and various applications in chemistry and electrical engineering, is highly relevant to many areas of modern science and industry. should find a wide readership, especially among graduate students.
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