Introduction to the physics and chemistry of materials / Robert J. Naumann.

By: Naumann, Robert J
Publisher: Boca Raton : CRC Press, c2009Description: xxv, 546 p. : ill. ; 27 cmContent type: text Media type: unmediated Carrier type: volumeISBN: 9781420061338 (alk. paper); 142006133X (alk. paper)Subject(s): Materials scienceDDC classification: 620.1/1 LOC classification: TA403 | .N3325 2009
Contents:
Introduction to materials science -- Fundamental principles -- Chemical bonding -- Crystals and crystallography -- The structure of matter -- Reciprocal lattice and X-ray diffraction -- Theory of elasticity -- Defects in crystals -- Mechanical properties of materials -- Composites -- Phase equilibria in single component systems -- Phase equilibria in multicomponent systems -- Alloy solidification -- Transformation kinetics -- Distribution functions -- Lattice vibrations and phonons -- Thermal properties of solids -- Free electrons in metals -- Band theory of metals -- Semiconductors -- Theory and applications of junctions -- Transistors, quantum wells, and superlattices -- Dielectrics and the dielectric function -- Optical properties of materials -- Magnetism and magnetic materials -- Superconductivity.
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Item type Current location Home library Call number Status Date due Barcode Item holds
BOOK BOOK GRADUATE LIBRARY
GRADUATE LIBRARY
SUBJECT REFERENCE
620.11 N224 2009 (Browse shelf) Available CITU-CL-39402
Total holds: 0

Includes bibliographical references and index.

Introduction to materials science -- Fundamental principles -- Chemical bonding -- Crystals and crystallography -- The structure of matter -- Reciprocal lattice and X-ray diffraction -- Theory of elasticity -- Defects in crystals -- Mechanical properties of materials -- Composites -- Phase equilibria in single component systems -- Phase equilibria in multicomponent systems -- Alloy solidification -- Transformation kinetics -- Distribution functions -- Lattice vibrations and phonons -- Thermal properties of solids -- Free electrons in metals -- Band theory of metals -- Semiconductors -- Theory and applications of junctions -- Transistors, quantum wells, and superlattices -- Dielectrics and the dielectric function -- Optical properties of materials -- Magnetism and magnetic materials -- Superconductivity.

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