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Solid State Physics
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Solid State Physics/ by Vimal Kumar Jain.
Author:
Jain, Vimal Kumar.
Description:
XXI, 542 p. 225 illus., 1 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Optical materials. -
Online resource:
https://doi.org/10.1007/978-3-030-96017-9
ISBN:
9783030960179
Solid State Physics
Jain, Vimal Kumar.
Solid State Physics
[electronic resource] /by Vimal Kumar Jain. - 3rd ed. 2022. - XXI, 542 p. 225 illus., 1 illus. in color.online resource.
Crystal Structure -- Chemical Bonding in Solids -- Defects in Solids -- Elecments of Quantum Mechanics -- X-Ray Diffraction -- Lattice Vibrations -- Thermal Properties of Solids -- Free Electron Theory of Metals -- Band Theory -- Semiconductors -- Dielectric Properties of Solids -- Magnetic Properties of Matter -- Magnetic Resonance -- Superconductivity -- Nanomaterials -- Optical Properties -- Semiconductor Devices.
The book has been designed as a textbook for graduate and postgraduate students of physics, material science, and engineering. This is the third edition of the textbook, that is updated to reflect recent works in the field. In this edition, some new topics have been introduced while some of the existing topics like phonons, Drude –Lorentz model, Fermi levels, electrons, and holes, etc. are modified. Moreover, the book has complete information on semiconductor devices like tunnel diode, Gunn diode, photodiode, photoconductive diode, varactor diode, solar cell, LED, semiconductor lasers, and semiconductor detectors. All the chapters have been supplemented by solved and unsolved examples. Some of the chapters illustrate areas of current interest in solid-state physics to give the student practical working knowledge of the subject text in a simple and lucid manner. There is a fair amount of detail in the examples and derivations given in the text. Each section of the book has exercises to reinforce the concepts, and problems have been added at the end of each chapter. The detailed coverage and pedagogical tools make this an ideal textbook for students and researchers enrolled in graduate and postgraduate courses of physics, material science, and engineering.
ISBN: 9783030960179
Standard No.: 10.1007/978-3-030-96017-9doiSubjects--Topical Terms:
672695
Optical materials.
LC Class. No.: QC374-379
Dewey Class. No.: 620.11295
Solid State Physics
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Crystal Structure -- Chemical Bonding in Solids -- Defects in Solids -- Elecments of Quantum Mechanics -- X-Ray Diffraction -- Lattice Vibrations -- Thermal Properties of Solids -- Free Electron Theory of Metals -- Band Theory -- Semiconductors -- Dielectric Properties of Solids -- Magnetic Properties of Matter -- Magnetic Resonance -- Superconductivity -- Nanomaterials -- Optical Properties -- Semiconductor Devices.
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The book has been designed as a textbook for graduate and postgraduate students of physics, material science, and engineering. This is the third edition of the textbook, that is updated to reflect recent works in the field. In this edition, some new topics have been introduced while some of the existing topics like phonons, Drude –Lorentz model, Fermi levels, electrons, and holes, etc. are modified. Moreover, the book has complete information on semiconductor devices like tunnel diode, Gunn diode, photodiode, photoconductive diode, varactor diode, solar cell, LED, semiconductor lasers, and semiconductor detectors. All the chapters have been supplemented by solved and unsolved examples. Some of the chapters illustrate areas of current interest in solid-state physics to give the student practical working knowledge of the subject text in a simple and lucid manner. There is a fair amount of detail in the examples and derivations given in the text. Each section of the book has exercises to reinforce the concepts, and problems have been added at the end of each chapter. The detailed coverage and pedagogical tools make this an ideal textbook for students and researchers enrolled in graduate and postgraduate courses of physics, material science, and engineering.
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