Description

Book Synopsis
This book provides the most recent developments in the field of materials science, with chapters focused on advances in thermoluminescence research; a new structural explanation for plastic deformation behavior, including yielding and necking, using in situ Raman spectroscopy to investigate the uniaxial drawing and stress relaxation processes; an examination of the fast pyrolysis of woody biomass carried out with and without a zeolite catalyst; a review of proposals that have been made for the assessment of geologic materials in relation to their contribution to external gamma dose radiation; a comprehensive summary of practical X-ray analysis applied to the study of welding fluxes at high temperatures; and state-of-the-art research on calcium orthophosphate-containing biocomposites and hybrid biomaterials suitable for biomedical applications.

Advances in Materials Science Research: Volume 20

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A Hardback by Maryann C Wythers

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    View other formats and editions of Advances in Materials Science Research: Volume 20 by Maryann C Wythers

    Publisher: Nova Science Publishers Inc
    Publication Date: 01/09/2015
    ISBN13: 9781634833813, 978-1634833813
    ISBN10: 1634833813

    Description

    Book Synopsis
    This book provides the most recent developments in the field of materials science, with chapters focused on advances in thermoluminescence research; a new structural explanation for plastic deformation behavior, including yielding and necking, using in situ Raman spectroscopy to investigate the uniaxial drawing and stress relaxation processes; an examination of the fast pyrolysis of woody biomass carried out with and without a zeolite catalyst; a review of proposals that have been made for the assessment of geologic materials in relation to their contribution to external gamma dose radiation; a comprehensive summary of practical X-ray analysis applied to the study of welding fluxes at high temperatures; and state-of-the-art research on calcium orthophosphate-containing biocomposites and hybrid biomaterials suitable for biomedical applications.

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