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019 ▼a 1285256671 ▼a 1285278698
020 ▼a 9781003147046 ▼q (electronic bk.)
020 ▼a 1003147046 ▼q (electronic bk.)
020 ▼a 1000346374 ▼q (electronic bk. : EPUB)
020 ▼a 9781000346350 ▼q (electronic bk. : PDF)
020 ▼a 1000346358 ▼q (electronic bk. : PDF)
020 ▼a 9781000346367 ▼q (electronic bk. : Mobipocket)
020 ▼a 1000346366 ▼q (electronic bk. : Mobipocket)
020 ▼a 9781000346374 ▼q (electronic bk.)
020 ▼z 9814877743
020 ▼z 9789814877749
035 ▼a 3096001 ▼b (N$T)
035 ▼a (OCoLC)1273728863 ▼z (OCoLC)1285256671 ▼z (OCoLC)1285278698
037 ▼a 9781003147046 ▼b Taylor & Francis
040 ▼a TYFRS ▼b eng ▼e rda ▼e pn ▼c TYFRS ▼d YDX ▼d EBLCP ▼d N$T ▼d TYFRS ▼d 248032
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072 7 ▼a TBN ▼2 bicssc
08204 ▼a 620.5 ▼2 23
1001 ▼a Amer, Maher S., ▼e author.
24510 ▼a Gigantic challenges, nano solutions : ▼b the science and engineering of nanoscale systems / ▼c Maher S. Amer.
264 1 ▼a New York : ▼b Jennt Stanford Publishing, ▼c 2021.
300 ▼a 1 online resource
336 ▼a text ▼b txt ▼2 rdacontent
337 ▼a computer ▼b c ▼2 rdamedia
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520 ▼a For the past three decades, nanoscale science and engineering have provided many systems with unique and unprecedented properties illustrating that nanoscale science and engineering will definitely determine the trajectory of science and technology for decades to come. This book is the first textbook to introduce nanoscale systems in a pedagogical, and not research, style with many examples and problems. With ample examples and problems, it emphasizes the difference between bulk and nanoscale systems from a thermodynamic viewpoint and illustrates when a bulk system enters the nanoscale domain. The book also combines results of state-of-the-art research and provides the reader with the scientific foundations of such results. The book introduces the basic fundamental thermodynamic treatment of nanoscale systems and the structure, properties, and performance of the three different types of fullerenes, namely, spherical, cylindrical, and planar or graphene. In addition, it discusses 2D material systems based on such building blocks. Finally, it shows the thermodynamic criteria allowing nanoscale performance in physically huge systems.
5450 ▼a Maher S. Amer is professor of materials science and engineering, a senior von Humboldt Fellow of Max Planck Society, Germany, and a former visiting fellow of the Fitzwilliam College, University of Cambridge, England. He is a member of a number of national and international committees focused on nanomanufacturing and higher education accreditation. He received his PhD from Drexel University in 1995 and served as US Fulbright Core Scholar at KAUST, KSA. Prof. Amer has authored over 55 publications, 4 book chapters, and 2 books on Raman spectroscopy, fullerenes, and assembly of nano-films for optical, electrical, and environmental applications.
5880 ▼a Print version record.
590 ▼a WorldCat record variable field(s) change: 050
650 0 ▼a Nanotechnology.
650 0 ▼a Nanoscience.
650 0 ▼a Nanostructured materials.
650 0 ▼a Thermodynamics.
650 0 ▼a Fullerenes.
650 7 ▼a SCIENCE / Chemistry / General ▼2 bisacsh
650 7 ▼a SCIENCE / Physics ▼2 bisacsh
650 7 ▼a SCIENCE / Life Sciences / General ▼2 bisacsh
650 7 ▼a Fullerenes. ▼2 fast ▼0 (OCoLC)fst00936022
650 7 ▼a Nanoscience. ▼2 fast ▼0 (OCoLC)fst01032629
650 7 ▼a Nanostructured materials. ▼2 fast ▼0 (OCoLC)fst01032630
650 7 ▼a Nanotechnology. ▼2 fast ▼0 (OCoLC)fst01032639
650 7 ▼a Thermodynamics. ▼2 fast ▼0 (OCoLC)fst01149832
655 0 ▼a Electronic books.
655 4 ▼a Electronic books.
77608 ▼i Print version: ▼a AMER, MAHER S. ▼t GIGANTIC CHALLENGES, NANO-SOLUTIONS. ▼d [Place of publication not identified] : JENNY STANFORD PUB, 2021 ▼z 9814877743 ▼w (OCoLC)1195920638
85640 ▼3 EBSCOhost ▼u https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=3096001
938 ▼a EBSCOhost ▼b EBSC ▼n 3096001
990 ▼a 관리자
994 ▼a 92 ▼b N$T