Orbital Approach to the Electronic Structure of Solids
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Book Details:
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Publisher: Oxford University Press
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Author: Enric Canadell
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Language: English
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Binding: Paperback
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ISBN: 9780198767053
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Pages: 366
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Edition: Reprint
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Release Date: 24-03-2016
About The Book:
"Band Theory and the Electronic Properties of Solids" by Enric Canadell provides a comprehensive, intuitive approach to understanding the relationship between the structure and properties of solids. This insightful book builds on the band theory of solids, offering a unique perspective that integrates orbital interaction and the electronic structure to explain the physical properties of materials.
The author seamlessly connects concepts from chemistry and physics to offer a deep yet accessible exploration of the solid-state. Throughout the book, Canadell uses the orbital interaction approach, a key method for linking crystal structures with electronic properties, making complex theories more understandable and applicable.
Key features of the book include:
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A comprehensive explanation of band theory and its application to understanding solid-state physics.
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In-depth discussions on how orbital interaction shapes the electronic properties of materials.
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Coverage of essential tools like density of states, the Fermi surface, and their use in understanding material properties.
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Insights into the relationship between the crystal structure and electronic behavior, bridging the gap between chemistry and physics.
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Useful for both undergraduate and graduate students in solid-state physics, as well as researchers in materials science and condensed matter physics.
This book is an invaluable resource for anyone looking to deepen their understanding of the fundamental principles that govern the behavior of solids, from basic theory to practical applications. Whether you're a student, researcher, or scientist in the fields of material science or physics, this book will provide you with the tools and knowledge to better understand the relationship between structure and electronic properties in solids.