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Titlebook: Structural Integrity and Reliability in Electronics; Enhancing Performanc W. J. Plumbridge,R. J. Matela,A. Westwater Book 2003 Springer Sci

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书目名称Structural Integrity and Reliability in Electronics
副标题Enhancing Performanc
编辑W. J. Plumbridge,R. J. Matela,A. Westwater
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图书封面Titlebook: Structural Integrity and Reliability in Electronics; Enhancing Performanc W. J. Plumbridge,R. J. Matela,A. Westwater Book 2003 Springer Sci
描述Knowledge itself is soon obsolete; It is a blunt instrument. Only by understanding can problems be solved and progress achieved. Reliability in performance of electronic equipment, in the face of demands for continuing miniaturisation and the anticipated abolition of lead containing solders, represents a major engineering challenge. The involvement of numerous disciplines; such as electrical, electronic, mechanical, manufacturing, and materials engineering together with physicists and computer specialists, adds to the complexity of the situation. Nevertheless, with electronics being the World‘s largest industrial sector, the potential rewards to the winners are substantial. This book aims to provide the ingredients for understanding, together with knowledge of reliability in interconnection technology and of the implementation of lead free solders. It is strongly contended that such a combination forms the necessary basis for greater structural integrity and enhanced performance The text is essentially in three parts: The intentions of the Part I component {The Materials Perspective, Chapters 1 6) are to present a snapshot of the current, but rapidly changing, global scene and to e
出版日期Book 2003
关键词Statistica; alloy; calculus; circuit; communication; construction; design; electronics; environment; finite e
版次1
doihttps://doi.org/10.1007/1-4020-2611-0
isbn_softcover978-90-481-6495-0
isbn_ebook978-1-4020-2611-9
copyrightSpringer Science+Business Media Dordrecht 2003
The information of publication is updating

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Structural Integrity and Reliability in Electronics978-1-4020-2611-9
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ib. These agents are effective at reducing out-of-control cell cycling and tumor proliferation, but only if downstream signaling kinases and phosphatases are not mutated. Known oncogenes such as BRAF V600E and KRAS G12/13 that are constitutively activated render these treatments ineffective. The use
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. Affinity purification of these Ab fragments followed by their tagging with QDs results in QD-Ab conjugates with largely improved functionality compared to those obtained according to the standard procedures. The new approach can be extended to conjugation of any type of Abs with different semicond
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ent wavelengths. This chapter introduces important parameters for QDs’ biophotonic applications such as photostability, excitation and emission profiles, and quantum efficiency. We also present the perspectives for the use of QDs in fluorescence lifetime imaging (FLIM) and Förster resonance energy t
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al composition, solubility, etc.), high-throughput in vitro cytotoxicity assays represent a feasible means of determining effects of multiple variables and can inform design of lower-throughput in vivo cytotoxicity studies. Here, we describe the application of two commonly used assays, lactate dehyd
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