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Titlebook: Nondestructive Characterization and Imaging of Wood; Voichita Bucur Book 2003 Springer-Verlag Berlin Heidelberg 2003 CT wood.Computertomog

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书目名称Nondestructive Characterization and Imaging of Wood
编辑Voichita Bucur
视频video
概述First book on nondestructive techniques for the evaluation of different wood products.More than 500 publications cited.Includes supplementary material:
丛书名称Springer Series in Wood Science
图书封面Titlebook: Nondestructive Characterization and Imaging of Wood;  Voichita Bucur Book 2003 Springer-Verlag Berlin Heidelberg 2003 CT wood.Computertomog
描述This book on the Nondestructive Characterization and Imaging of Wood by Professor Voichita Bucur is truly the most outstanding reference on the subject ever written. Since the origins of mankind, wood has played a key role in the history of humans and other living creatures, ranging from provision of life from trees giving air, heat, light, and food to nourish their bodies to structures to protect them from the elements. Wood has also played a key role in one of the world‘s primary religions. Nondestructive diagnostics methods have long found application in medi­ cal practice for examination of the human body in order to detect life­ threatening abnormalities and permit diagnosis to extend life. Nondestructive testing has been used for many years to insure the safety of machinery, air­ craft, railroads, tunnels, buildings and many other structures. Therefore, it is timely for a treatise, like the present one, to be written describing how wood can be characterized without employing destructive test methods. Since wood is so valuable to mankind, it is important to know the latest methods to nondestructively characterize wood for all practical applications.
出版日期Book 2003
关键词CT wood; Computertomographie, Holz; Holzstrukturen; Kernspintographie, Holz; Mikrowellendarstellung, Hol
版次1
doihttps://doi.org/10.1007/978-3-662-08986-6
isbn_softcover978-3-642-07860-6
isbn_ebook978-3-662-08986-6Series ISSN 1431-8563
issn_series 1431-8563
copyrightSpringer-Verlag Berlin Heidelberg 2003
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Thermal Imaging,-field temperature distribution. Active heating or passive heating procedures can be used for thermographic imaging of solids (Liezers et al. 1985; Puttick 1987; Vavilov 1992). Thermography provides a map of surface temperature distribution. It can be said that thermography is a noncontact and nonde
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Microwave Imaging,has been achieved in the design of scanning probes and in image interpretation (Martin et al. 1987; Filippini et al. 1990; Chazelas 1991; Yokoyama and Norimoto 1996; Golosovsky et al. 2000; Kaestner and Baath 2000).
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Ultrasonic Imaging,tic tomograms provide an excellent noninvasive means of obtaining information about inhomogeneous media as noted by many investigators (Kak 1979; Herman 1980; Greenleaf 1981; Crawford and Kak 1982; Devaney 1982, 1986; Dean 1983; Denis et al. 1986; Tomikawa et al. 1986; Dumoulin and de Belleval 1987;
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Nuclear Magnetic Resonance,d applications of this technique to materials science using standard NMR spectrometers, in which modifications had been made, and computing facilities had been adapted to produce images. Every measurement in conventional NMR spectroscopy, such as chemical shift, nuclear spin relaxation times, dipola
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