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Titlebook: Nanotechnology Research Directions: IWGN Workshop Report; Vision for Nanotechn M. C. Roco (IWGN Chair),R. S. Williams (private se Book 2000

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發(fā)表于 2025-3-21 17:42:24 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱(chēng)Nanotechnology Research Directions: IWGN Workshop Report
副標(biāo)題Vision for Nanotechn
編輯M. C. Roco (IWGN Chair),R. S. Williams (private se
視頻videohttp://file.papertrans.cn/662/661075/661075.mp4
圖書(shū)封面Titlebook: Nanotechnology Research Directions: IWGN Workshop Report; Vision for Nanotechn M. C. Roco (IWGN Chair),R. S. Williams (private se Book 2000
描述energy production, environmental management, transportation, communication, computation, and education. As the twenty-first century unfolds, nanotechnology‘s impact on the health, wealth, and security of the world‘s people is expected to be at least as significant as the combined influences in this century of antibiotics, the integrated circuit, and human-made polymers. Dr. Neal Lane, Advisor to the President for Science and Technology and former National Science Foundation (NSF) director, stated at a Congressional hearing in April 1998, "If I were asked for an area of science and engineering that will most likely produce the breakthroughs of tomorrow, I would point to nanoscale science and engineering. " Recognizing this potential, the White House Office of Science and Technology Policy (OSTP) and the Office of Management and Budget (OMB) have issued a joint memorandum to Federal agency heads that identifies nanotechnology as a research priority area for Federal investment in fiscal year 2001. This report charts "Nanotechnology Research Directions," as developed by the Interagency W orking Group on Nano Science, Engineering, and Technology (IWGN) of the National Science and Techno
出版日期Book 2000
關(guān)鍵詞RSI; Sensor; integrated circuit; materials science; modeling; nanoelectronics; nanotechnology; polymer; supr
版次1
doihttps://doi.org/10.1007/978-94-015-9576-6
isbn_softcover978-90-481-5416-6
isbn_ebook978-94-015-9576-6
copyrightSpringer Science+Business Media B.V. 2000
The information of publication is updating

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D. Dixon,P. Cummings,K. Hessn astronomy and space technology.This book takes a close look at our relationship with the sky, the stars, light and darkness. In particular, it examines how light pollution has interfered with the culture of astronomy and our ability to appreciate this essential facet of our natural world...The sky
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R. W. Siegel,B. Kearhite lies are so common, are they still lies? I tackle this question from the perspective of speech act theory, using the case of white lies to shed light on the broader question of whether lying itself can be considered a type of speech act. Adopting Sbisà’s (Uptake and Conventionality in Illocutio
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Fundamental Scientific Issues for Nanotechnology,ron-size) structures. They contain a countable number of atoms, and are, as a result, uniquely suited for detailed atomic-level engineering. They are chameleons: viewed as molecules, they are so large that they provide access to realms of quantum behavior that are not otherwise accessible; viewed as
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Investigative Tools: Theory, Modeling, and Simulation,le understanding. The particles are too small for direct measurements, too large to be described by current rigorous first principle theoretical and computational methods, exhibit too many fluctuations to be treated monolithically in time and space, and are too few to be described by a statistical e
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Investigative Tools: Experimental Methods and Probes,lution microscopy, (b) a substantial program in electron microscopy and scanning tip techniques would strengthen U.S. competitiveness, and (c) many user-friendly, low-cost, fast-turnaround compact microscopes were important for rapid progress in much of materials science (Cohen 1993). These conclusi
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Applications: Dispersions, Coatings, and Other Large Surface Area Structures,rdered or patterned at the micro- and nano-levels. Similarly, dispersions, powders, and macroscopic bodies with unique morphologies and ordered structures will be discovered. These materials will revolutionize industries dealing with paints, corrosion protection, environmental remediation, drug deli
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Applications: Nanodevices, Nanoelectronics, and Nanosensors,, magnetic, mechanical, and biological systems. While the best examples of nanodevices at present are clearly associated with the information technology industry, the potential for such devices is much broader. Nanodevices will ultimately have an enormous impact on our ability to enhance energy conv
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Applications: Consolidated Nanostructures,actured in the future. Our increasing ability to synthesize and assemble nanoscale building blocks with precisely controlled sizes and chemistries into consolidated nanostructures and nanocomposites with unique properties and functionalities likely will lead to revolutionary changes in industry.
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