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Science/Engineering Properties of Materials: Anisotropy, Symmetry, Structure

Posted on 2010-03-15




Name:Science/Engineering Properties of Materials: Anisotropy, Symmetry, Structure
ASIN/ISBN:0198520751
Language:English
File size:2.5 Mb
ISBN: 0198520751
Pages: 390 pages
File Type: PDF
File Size: 2,5 Mb
Other Info: Oxford University Press, USA (January 4, 2005)
   Science/Engineering Properties of Materials: Anisotropy, Symmetry, Structure

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Robert E. Newnham, "Properties of Materials: Anisotropy, Symmetry, Structure"

Crystals are sometimes called 'Flowers of the Mineral Kingdom'. In addition to their great beauty, crystals and other textured materials are enormously useful in electronics, optics, acoustics and many other engineering applications. This richly illustrated text describes the underlying

principles of crystal physics and chemistry, covering a wide range of topics and illustrating numerous applications in many fields of engineering using the most important materials today. Tensors, matrices, symmetry and structure-property relationships form the main subjects of the book. While

tensors and matrices provide the mathematical framework for understanding anisotropy, on which the physical and chemical properties of crystals and textured materials often depend, atomistic arguments are also needed to quantify the property coefficients in various directions. The atomistic

arguments are partly based on symmetry and partly on the basic physics and chemistry of materials. After introducing the point groups appropriate for single crystals, textured materials and ordered magnetic structures, the directional properties of many different materials are described: linear and

nonlinear elasticity, piezoelectricity and electrostriction, magnetic phenomena, diffusion and other transport properties, and both primary and secondary ferroic behavior. With crystal optics (its roots in classical mineralogy) having become an important component of the information age, nonlinear

optics is described along with the piexo-optics, magneto-optics, and analogous linear and nonlinear acoustic wave phenomena. Enantiomorphism, optical activity, and chemical anisotropy are discussed in the final chapters of the book.

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