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Titlebook: Micromechanics and Nanoscale Effects; MEMS, Multi-Scale Ma Vasyl Michael Harik (Senior Staff Scientist),Li-Sh Book 2004 Kluwer Academic Pub

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書目名稱Micromechanics and Nanoscale Effects
副標(biāo)題MEMS, Multi-Scale Ma
編輯Vasyl Michael Harik (Senior Staff Scientist),Li-Sh
視頻videohttp://file.papertrans.cn/634/633325/633325.mp4
叢書名稱ICASE LaRC Interdisciplinary Series in Science and Engineering
圖書封面Titlebook: Micromechanics and Nanoscale Effects; MEMS, Multi-Scale Ma Vasyl Michael Harik (Senior Staff Scientist),Li-Sh Book 2004 Kluwer Academic Pub
描述This volume consists of the state-of-the-art reports on new developments in micromechanics and the modeling of nanoscale effects, and is a companion book to the recent Kluwer volume on nanomechanics and mul- scale modeling (it is entitled Trends in Nanoscale Mechanics). The two volumes grew out of a series of discussions held at NASA Langley Research Center (LaRC), lectures and other events shared by many researchers from the national research laboratories and academia. The key events include the 2001 Summer Series of Round-Table Discussions on Nanotechnology at ICASE Institute (NASA LaRC) organized by Drs. V. M. Harik and M. D. Salas and the 2002 NASA LaRC Workshop on Multi-scale Modeling. The goal of these interactions was to foster collaborations between academic researchers and the ICASE Institute (NASA LaRC), a universi- based institute, which has pioneered world-class computational, theoretical and experimental research in the disciplines that are important to NASA. Editors gratefully acknowledge help of Ms. E. Todd (ICASE, NASA LaRC), the ICASE Director M. D. Salas and all reviewers, in particular, Dr. B. Diskin (ICASE/NIA, NASA LaRC), Prof. R. Haftka (University of Florida)
出版日期Book 2004
關(guān)鍵詞cells; composite; crystal; deformation; experimental mechanics; mechanics; microelectromechanical system (
版次1
doihttps://doi.org/10.1007/978-94-007-1013-9
isbn_softcover978-94-010-3767-9
isbn_ebook978-94-007-1013-9Series ISSN 1381-1339
issn_series 1381-1339
copyrightKluwer Academic Publishers 2004
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Deformation of Composite Micro-Rodsmportant role in MEMS performance. Many MEMS structures are made of either silicon or nickel, however, novel designs may also include more complex multifunctional components made of composite materials. This chapter reviews research in the area of composite micro-rods, which are composed of a coated
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Electrokinetic Transport Phenomena in Micro-Fluidicsed for flow, species and particle transport control applications in micro-fluidic systems. Hence, these transport mechanisms can be used for processing of biological and chemical species, new materials and nano-scale particles for nanotechnology applications. For each effect, we introduce the govern
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Dissipative Particle Dynamics and Other Fluid Particle Modelsgo it has been applied to a large variety of different complex fluid systems. At the same time, generalizations of the model have been introduced in order to refine the concept of dissipative particle. Here, I offer my personal view about the status of DPD as a model for simulating complex fluids, r
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