Advances in Materials Science Research by Maryann C. Wythers (2015, Hardcover)
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Advances in Materials Science Research, Hardcover by Wythers, Maryann C. (EDT), ISBN 1634835476, ISBN-13 9781634835473, Brand New, Free shipping in the US
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About this product
Product Identifiers
PublisherNOVA Science Publishers, Incorporated
ISBN-101634835476
ISBN-139781634835473
eBay Product ID (ePID)219901255
Product Key Features
Book TitleAdvances in Materials Science Research
Number of Pages202 Pages
LanguageEnglish
TopicMaterials Science / General
Publication Year2015
GenreTechnology & Engineering
AuthorMaryann C. Wythers
Book SeriesAdvances in Materials Science Research Ser.
FormatHardcover
Dimensions
Item Weight21.2 Oz
Item Length10.2 in
Item Width7.1 in
Additional Product Features
Dewey Edition22
Volume NumberVol. 21
Dewey Decimal620.11
Table Of ContentFor Complete Table of Contents, please visit our website at: https://www.novapublishers.com/catalog/product_info.php'products_id=55788
SynopsisThis book presents a comprehensive review of recent advances in materials science research. The chapters included in this volume are conductive composites as versatile substrates for modeling of interfaces and sensors; the use of fiber reinforced polymers to improve load carrying capacity of damaged concrete; functionally graded materials in dentistry; electrochemical synthesis and characterization of electroactive copolymers deriving from five-ring with six-ring aromatic compounds and their perspectives for cost-effective optoelectronic applications; structural health monitoring of composite aircraft; semiconductor nanomaterials for water splitting; dendrimer and its role for the advancement of nanotechnology and bioengineering; parametric identification of nonlinear model of hydrogen thermal desorption from structural materials; testing 1D ternary photonic band gap material structure for use in temperature unstable environments; the effect of temperature variation on transmission properties of 1D photonic band gap material structure and random multilayer structure; and altering spectrum tuning capability, and temperature sensitivity in 1D ternary photonic band gap material structures.