9780521152914-0521152917-Polymer Dynamics and Relaxation

Polymer Dynamics and Relaxation

ISBN-13: 9780521152914
ISBN-10: 0521152917
Edition: 1
Author: Richard Boyd, Grant Smith
Publication date: 2010
Publisher: Cambridge University Press
Format: Paperback 266 pages
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Book details

ISBN-13: 9780521152914
ISBN-10: 0521152917
Edition: 1
Author: Richard Boyd, Grant Smith
Publication date: 2010
Publisher: Cambridge University Press
Format: Paperback 266 pages

Summary

Polymer Dynamics and Relaxation (ISBN-13: 9780521152914 and ISBN-10: 0521152917), written by authors Richard Boyd, Grant Smith, was published by Cambridge University Press in 2010. With an overall rating of 4.3 stars, it's a notable title among other Materials & Material Science (Organic, Chemistry, Engineering) books. You can easily purchase or rent Polymer Dynamics and Relaxation (Paperback) from BooksRun, along with many other new and used Materials & Material Science books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

Polymers exhibit a range of physical characteristics, from rubber-like elasticity to the glassy state. These particular properties are controlled at the molecular level by the mobility of the structural constituents. Remarkable changes in mobility can be witnessed with temperature, over narrow, well defined regions, termed relaxation processes. This is an important, unique phenomenon controlling polymer transition behaviour and is described here at an introductory level. The important types of relaxation processes from amorphous to crystalline polymers and polymeric miscible blends are covered, in conjunction with the broad spectrum of experimental methods used to study them. In-depth discussion of molecular level interpretation, including atomistic level computer simulations and applications to molecular mechanism elucidation, are discussed. The result is a self-contained approach to polymeric interpretation suitable for researchers in materials science, physics and chemistry interested in the relaxation processes of polymeric systems.

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