Introduction to Solid State Physics (Record no. 3338)

MARC details
000 -LEADER
fixed length control field 08437nam a2200181Ia 4500
003 - CONTROL NUMBER IDENTIFIER
control field OSt
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20200114104803.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 140801s2005 xx 000 0 und d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9788126535187
082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number 530.41 KIT-I
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Kittel, Charles
245 ## - TITLE STATEMENT
Title Introduction to Solid State Physics
250 ## - EDITION STATEMENT
Edition statement 8th
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Name of publisher, distributor, etc JOHN WILEY & SONS
Date of publication, distribution, etc 2005
Place of publication, distribution, etc New Delhi
500 ## - GENERAL NOTE
General note Chapter 1: Crystal Structure. <br/><br/>Periodic Array of Atoms. <br/>Fundamental Types of Lattices. <br/>Index System for Crystal Planes. <br/>Simple Crystal Structures. <br/>Direct Imaging of Atomic Structure. <br/>Nonideal Crystal Structures. <br/>Crystal Structure Data. <br/> <br/><br/>Chapter 2: Wave Diffraction and The Reciprocal Lattice. <br/><br/>Diffraction of Waves by Crystals.<br/>Scattered Wave Amplitude. <br/>Brillouin Zones. <br/>Fourier analysis of the Basis. <br/> <br/><br/>Chapter 3: Crystal Binding and Elastic Constants. <br/><br/>Crystals of Inert Gases. <br/>Ionic Crystals. <br/>Covalent Crystals. <br/>Metals. <br/>Hydrogen Bonds. <br/>Atomic Radii. <br/>Analysis of Elastic Strains. <br/>Elastic Compliance and Stiffness Constants. <br/>Elastic Waves in Cubic Crystals. <br/> <br/><br/>Chapter 4: Phonons I. Crystal Vibrations. <br/><br/>Vibrations of Crystals with Monatomic Basis. <br/>Two Atoms per Primitive Basis. <br/>Quantization of Elastic Waves. <br/>Phonon Momentum. <br/>Inelastic Scattering by Phonons. <br/> <br/><br/>Chapter 5: Phonons II. Thermal Properties. <br/><br/>Phonon Heat Capacity. <br/>Anharmonic Crystal Interactions. <br/>Thermal Conductivity. <br/> <br/><br/>Chapter 6: Free Electron Fermi Gas. <br/><br/>Energy Levels in One Dimension. <br/>Effect of Temperature on the Fermi-Dirac Distribution. <br/>Free Electron Gas in Three Dimensions. <br/>Heat Capacity of the Electron Gas. <br/>Electrical Conductivity and Ohm's Law. <br/>Motion in Magnetic Fields. <br/>Thermal Conductivity of Metals. <br/> <br/><br/>Chapter 7: Energy Bands. <br/><br/>Nearly Free Electron Model. <br/>Bloch Functions. <br/>Kronig-Penney Model. <br/>Wave Equation of Electron in a Periodic Potential. <br/>Number of Orbitals in a Band. <br/> <br/><br/>Chapter 8: Semiconductor Crystals. <br/><br/>Band Gap. <br/>Equations of Motion. <br/>Intrinsic Carrier Concentration. <br/>Impurity Conductivity. <br/>Thermoelectric Effects. <br/>Semimetals. <br/>Superlattices. <br/> <br/><br/>Chapter 9: Fermi Surfaces and Metals. <br/><br/>Construction of Fermi Surfaces. <br/>Electron Orbits, Hole Orbits and Open Orbits. <br/>Calculation of Energy Bands. <br/>Experimental Methods in Fermi Surface Studies. <br/> <br/><br/>Chapter 10: Superconductivity. <br/><br/>Experimental Survey. <br/>Theoretical Survey. <br/>High-Temperature Superconductors. <br/> <br/><br/>Chapter 11: Diamagnetism And Paramagnetism. <br/><br/>Langevin Diamagnetism Equation. <br/>Quantum Theory of Diamagnetism of Mononuclear Systems.<br/>Paramagnetism. <br/>Quantum Theory of Paramagnetism. <br/>Cooling by Isentropic Demagnetization. <br/>Paramagnetic Susceptibility of Conduction Electrons. <br/> <br/><br/>Chapter 12: Ferromagnetism and Antiferromagnetism. <br/><br/>Ferromagnetic Order. <br/>Magnons. <br/>Neutron Magnetic Scattering. <br/>Ferrimagnetic Order. <br/>Antiferromagnetic Order. <br/>Ferromagnetic Domains. <br/>Single Domain Particles. <br/> <br/><br/>Chapter 13: Magnetic Resonance. <br/><br/>Nuclear Magnetic Resonance. <br/>Line Width. <br/>Hyperfine Splitting. <br/>Nuclear Quadrupole Resonance. <br/>Ferromagnetic Resonance. <br/>Antiferromagnetic Resonance. <br/>Electron Paramagnetic Resonance. <br/>Principle of Maser Action. <br/> <br/><br/>Chapter 14: Plasmons, Polaritons and Polarons. <br/><br/>Dielectric Function of the Electron Gas. <br/>Plasmons. <br/>Electrostatic Screening. <br/>Polaritons. <br/>Electron-Electron Interaction. <br/>Electron-Phonon Interaction: Polarons. <br/>Peierls Instability of Linear Metals. <br/> <br/><br/>Chapter 15: Optical Processes and Excitons. <br/><br/>Optical Reflectance. <br/>Excitons. <br/>Raman Effects in Crystals. <br/>Energy Loss of Fast Particles in a Solid. <br/> <br/><br/>Chapter 16: Dielectrics and Ferroelectrics.<br/><br/>Macroscopic Electric Field. <br/>Local Electric Field at an Atom. <br/>Dielectric Constant and Polarizability. <br/>Structural Phase Transitions. <br/>Ferroelectric Crystals. <br/>Displacive Transitions. <br/> <br/><br/>Chapter 17: Surface and Interface Physics. <br/><br/>Surface Crystallography. <br/>Surface Electronic Structure. <br/>Magnetoresistance in a Two-Dimensional Channel. <br/>p-n Junctions. <br/>Heterostructures. <br/>Semiconductor Lasers. <br/>Light-Emitting Diodes. <br/> <br/><br/>Chapter 18: Nanostructures.<br/><br/>Imaging Techniques for Nanostructures.<br/>Electronic Structure of 1D Systems.<br/>Electrical Transport in 1D.<br/>Electronic Structure of 0D Systems.<br/>Electrical Transport in 0D.<br/>Vibrational and Thermal Properties of Nanostructures.<br/> <br/><br/>Chapter 19: Noncrystalline Solids.<br/><br/>Diffraction Pattern.<br/>Glasses.<br/>Amorphous Ferromagnets.<br/>Amorphous Semiconductors.<br/>Low Energy Excitations in Amorphous Solids.<br/>Fiber Optics.<br/> <br/><br/>Chapter 20: Point Defects.<br/><br/>Lattice Vacancies.<br/>Diffusion.<br/>Color Centers.<br/> <br/><br/>Chapter 21: Dislocations.<br/><br/>Shear Strength of Single Crystals.<br/>Dislocations.<br/>Strength of Alloys.<br/>Dislocations and Crystal Growth.<br/>Hardness of Materials.<br/> <br/><br/>Chapter 22: Alloys.<br/><br/>General Consideration.<br/>Substitutional Solid Solutions -- Hume-Rotherby Rules.<br/>Order-Disorder Transformation.<br/>Phase Diagrams.<br/>Transition Metal Alloys.<br/>Kondo Effect.
856 ## - ELECTRONIC LOCATION AND ACCESS
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    Dewey Decimal Classification     Amity Central Library Amity Central Library Applied Physics 29/01/2013 499.00 22 530.41 KIT-I 17185 27/04/2023 05/04/2023 https://epgp.inflibnet.ac.in/Home/Download 29/01/2013 Books  
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