Xem 1-7 trên 7 kết quả Basic nanotechnology science
  • This is believed to be the first book that takes a view of nanotechnology from a telecommunications and networking perspective. Nanotechnology refers to the manipulation of materials at the atomic or molecular level. Nanotechnology is getting a lot of attention of late not only in academic settings and in laboratories around the world, but also in government and venture capitalists’ initiatives. There now is a major drive to commercialize the technology by all sorts of firms, ranging from startups to Fortune 100 companies.

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  • In this Eighth Edition we have retained the objectives and approaches for teaching materials science and engineering that were presented in previous editions. The first, and primary, objective is to present the basic fundamentals on a level appropriate for university/college students who have completed their freshmen calculus, chemistry, and physics courses.

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  • In April 2000, the Japanese government established the National Strategy for Industrial Technology in order to identify challenges and solutions for Japanese industrial technology in the twenty-first century. The Second Science and Technology Basic Plan, a five year plan that started in 2001, is a part of this national strategy. According to this plan, a total of approximately $200 billion will be invested in governmental research and development.

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  • Have you been reading the latest science magazines and noticed that the word “nano” has become as ubiquitous as the word “calorie” in a diet book? Are you looking for the latest hot investment opportunity and you’ve heard that something called nanotechnology will someday revolutionize our lives, and quite possibly your portfolio? Well, you’ve come to the right place! Nanotechnology For Dummies is a fantastic way to get beyond all the hype and really understand what nanotechnology is and where it’s headed.

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  • The Third InternationalWorkshop of the Croucher Advanced Study Institute (ASI) on Nano Science and Technology: from Basic Science to Device Applications, was held at Hong Kong University of Science and Technology from 8 January to 12 January 2007. The first and second workshops took place in January 1999, and January 2002, respectively. Collected in this volume are 20 articles, 16 from invited talks and four from contributed presentations. The speakers are from the United States, Europe, Japan, Korea, Chinese Mainland, Taiwan, and Hong Kong.

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  • The dissemination of micro-electronics during the 1980s led to innovation. On the leading edge of these technologies was the machine tool subsector. However, the Japanese were the first to apply advanced controls and gained shares in global markets propelled by their lead. Since then Europe has caught up and ME competes at eye level with Japan. 10 A detailed assessment of the technological position in this area and other fields of relevance for ME, such as nanotechnology, optics, new materials and composites, is performed in Chapter 0.

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  • .microtechnology and mems .microtechnology and mems Series Editor: H. Fujita D. Liepmann The series Microtechnology and MEMS comprises text books, monographs, and state-of-the-art reports in the very active field of microsystems and microtechnology. Written by leading physicists and engineers, the books describe the basic science, device design, and applications. They will appeal to researchers, engineers, and advanced students. Mechanical Microsensors By M. Elwenspoek and R. Wiegerink CMOS Cantilever Sensor Systems Atomic Force Microscopy and Gas Sensing Applications By D. Lange, O.

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