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Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled Processes (Springer Series in Solid-State Sciences, 155)

Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled Processes (Springer Series in Solid-State Sciences, 155)

Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled
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Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled Processes (Springer Series in Solid-State Sciences, 155) Hardback - 2007 - 1st Edition

by Helmut Mehrer

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Springer-Verlag Publishing, 2007. 1. Hardcover. Good. Good+; Hardcover; Withdrawn library copy with the standard library markings; Light wear to the covers; Library stamps to the endpapers; Text pages are clean & unmarked; Binding is excellent with a straight spine; This book will be shipped in a sturdy cardboard box with foam padding; Medium Format (8.5" - 9.75" tall); 2.4 lbs; Dark blue covers with title in white lettering; 2007, Springer-Verlag Publishing; 673 pages; "Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled Processes (Springer Series in Solid-State Sciences, 155)," by Helmut Mehrer.
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Reader reviews for Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled Processes (Springer Series in Solid-State Sciences, 155)

From the publisher

Physicists, chemists, metallurgists and materials engineers in academic and industrial research laboratories will benefit from this book as will graduate students in solid state physics, physical metallurgy, materials science, physical and inorganic chemistry or geophysics.

From the rear cover

Diffusion is a vital topic in solid-state physics and chemistry, physical metallurgy and materials science. Diffusion processes are ubiquitous in solids at elevated temperatures. A thorough understanding of diffusion in materials is crucial for materials development and engineering. This book first gives an account of the central aspects of diffusion in solids, for which the necessary background is a course in solid state physics. It then provides easy access to important information about diffuson in metals, alloys, semiconductors, ion-conducting materials, glasses and nanomaterials. Several diffusion-controlled phenomena, including ionic conduction, grain-boundary and dislocation pipe diffusion, are considered as well.

Graduate students in solid-state physics, physical metallurgy, materials science, physical and inorganic chemistry or geophysics will benefit from this book as will physicists, chemists, metallurgists, materials engineers in academic and industrial research laboratories.

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