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Applying Molecular and Materials Modeling
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Applying Molecular and Materials Modeling - pocketboek

2010, ISBN: 9789048161348

Editor: Westmoreland, Phillip R. Editor: Kollman, Peter A. Editor: Chaka, Anne M. Editor: Cummings, Peter T. Editor: Morokuma, Keiji, Editor: Neurock, Matthew, Editor: Stechel, Ellen B. E… Meer...

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Applying Molecular and Materials Modeling - pocketboek

2010, ISBN: 9789048161348

Editor: Westmoreland, Phillip R. Editor: Kollman, Peter A. Editor: Chaka, Anne M. Editor: Cummings, Peter T. Editor: Morokuma, Keiji, Editor: Neurock, Matthew, Editor: Stechel, Ellen B. E… Meer...

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Applying Molecular and Materials Modeling - pocketboek

2002

ISBN: 9789048161348

*Applying Molecular and Materials Modeling* - Softcover reprint of the original 1st ed. 2002 / Taschenbuch für 213.99 € / Aus dem Bereich: Bücher, English,, International, Gebundene, Ausg… Meer...

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Westmoreland, Phillip R.:
Applying Molecular and Materials Modeling - pocketboek

2002, ISBN: 9789048161348

Springer Netherlands, 2002. Paperback. New. 587 pages. 8.90x6.22x1.73 inches., Springer Netherlands, 2002, 6

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Applying Molecular and Materials Modeling - pocketboek

2010, ISBN: 9048161347

[EAN: 9789048161348], Used, as new, [SC: 8.0], [PU: Springer], Like New, Books

NOT NEW BOOK. Verzendingskosten: EUR 8.00 Mispah books, Redhill, SURRE, United Kingdom [82663586] [Rating: 3 (of 5)]

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Applying Molecular and Materials Modeling

Computational molecular and materials modeling has emerged to deliver solid technological impacts in the chemical, pharmaceutical, and materials industries. It is not the all-predictive science fiction that discouraged early adopters in the 1980s. Rather, it is proving a valuable aid to designing and developing new products and processes. People create, not computers, and these tools give them qualitative relations and quantitative properties that they need to make creative decisions. With detailed analysis and examples from around the world, Applying Molecular and Materials Modeling describes the science, applications, and infrastructures that have proven successful. Computational quantum chemistry, molecular simulations, informatics, desktop graphics, and high-performance computing all play important roles. At the same time, the best technology requires the right practitioners, the right organizational structures, and - most of all - a clearly understood blend of imagination and realism that propels technological advances. This book is itself a powerful tool to help scientists, engineers, and managers understand and take advantage of these advances.

Gedetalleerde informatie over het boek. - Applying Molecular and Materials Modeling


EAN (ISBN-13): 9789048161348
ISBN (ISBN-10): 9048161347
Gebonden uitgave
pocket book
Verschijningsjaar: 2010
Uitgever: Springer Netherlands
604 Bladzijden
Gewicht: 0,900 kg
Taal: eng/Englisch

Boek bevindt zich in het datenbestand sinds 2011-06-18T03:13:15+02:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2023-11-21T23:22:38+01:00 (Amsterdam)
ISBN/EAN: 9789048161348

ISBN - alternatieve schrijfwijzen:
90-481-6134-7, 978-90-481-6134-8
alternatieve schrijfwijzen en verwante zoekwoorden:
Auteur van het boek: cummings, west anne, anne cumming, westmoreland, peter wes, ellen, kollman


Gegevens van de uitgever

Auteur: Phillip R. Westmoreland; Peter A. Kollman; Anne M. Chaka; Peter T. Cummings; Keiji Morokuma; Matthew Neurock; Ellen B. Stechel; Priya Vashishta
Titel: Applying Molecular and Materials Modeling
Uitgeverij: Springer; Springer Netherland
574 Bladzijden
Verschijningsjaar: 2010-12-09
Dordrecht; NL
Gedrukt / Gemaakt in
Taal: Engels
213,99 € (DE)
219,99 € (AT)
236,00 CHF (CH)
POD
XXIV, 574 p.

BC; Hardcover, Softcover / Chemie/Theoretische Chemie; Chemoinformatik; Verstehen; catalysis; chemistry; graphics; modeling; pharmaceutical; simulation; Computational Chemistry; Industrial Chemistry; Inorganic Chemistry; Pharmacy; Industrielle Chemie und Chemietechnologie; Anorganische Chemie; Pharmazie, Apotheke; BB; EA

1. Introduction.- 2. Science: Electronic Structure, Thermochemistry and Kinetics.- 3. Science: Molecular Simulations and Mesoscale Methods.- 4. Science: Information Technologies.- 5. Applications: The Chemical Industry.- 6. Applications: Pharmaceuticals and Life Sciences.- 7. Applications: Physical and Electronic Materials.- 8. Applications: Catalysis.- 9. Infrastructure Issues for Applying Molecularly Based Modeling.- 10. International Comparison.- 11. Summary and Vision.- Appendices.- A. Biographical Sketches of Panel Members and other Traveling-Team Members.- B.1. Site Reports—Europe.- Air Liquide.- BASF AG.- Bayer AG.- Belgium: University of Antwerp, Janssen Pharmaceutica, Solvay.- BG Technology Ltd. (now Advantica Technologies Ltd.).- Center for Atomic-Scale Materials Physics (CAMP Denmark).- Centre Européen de Calcul Atomique et Moléculaire (CECAM).- Centre National de la Recherche Scientifique (CNRS).- Daresbury Laboratory.- Degussa-Hüls AG (now Degussa).- DSM Research.- EniChem S.p.A.- EniTecnologie SpA.- GdR 12090 Project.- Glaxo Wellcome plc (now GlaxoSmithKline).- Hoffmann-La Roche Ltd..- Novartis Pharmaceuticals AG.- IBM Zürich Research Laboratory.- Institut Français du Pétrole (IFP).- The Netherlands, including TU Eindhoven, Royal Dutch Shell, Philips.- Rhône-Poulenc Industrialisation SA (now Rhodia).- Royal Society of Chemistry Molecular Modeling Group.- SmithKline Beecham Pharmaceuticals (now GlaxoSmithKline).- TotalFina (now TotalFinaElf).- Unilever.- B.2. Site Reports—Japan.- Asahi Chemical Industry Co., Ltd..- “The Doi Project” Nagoya University.- Eisai Co. Ltd. Tsukuba Research Laboratories.- Fujitsu Ltd. and Fujitsu Laboratories.- Institute for Molecular Science (IMS).- Institute for Solid State Physics (ISSP).- Japanese governmentorganizations funding molecular and material modeling.- Joint Research Center for Atom Technology (JRCAT).- Angstrom Technology Partnership (ATP).- National Institute for Advanced Interdisciplinary Research (NAIR).- Tsukuba Advanced Computing Center (TACC).- Mitsubishi Chemicals, Yokohama Research Center.- NEC Tsukuba Laboratories.- Nagoya University.- RIKEN—The Institute of Physical and Chemical Research.- Taisho Pharmaceutical Co., Ltd..- Takeda Chemical Industries Ltd..- Toshiba Corporation, Research & Development Center.- Toyota Central Research & Development Laboratories, Inc..- Short reports from other Japanese companies.- Fuji Photo Film Co., Ltd..- Japan Polyolefms, Ltd. (Showa Denko K.K.).- JSR Corporation.- Mitsui Chemicals.- Nippon Zeon Co., Ltd..- Sumitomo Chemical Co., Ltd..- UBE Industries, LTD..- B.3. Site Reports—United States.- 3M, Inc..- Air Products and Chemicals, Inc..- BP p.l.c. (Amoco).- CambridgeSoft.com.- Chevron Corporation.- The Dow Chemical Company.- Dow-Corning Corporation.- DuPont Pharmaceuticals (now part of Bristol-Myers Squibb).- E. I. du Pont de Nemours and Company.- Eastman Chemical Company.- Ford Motor Company.- General Electric Corporation.- HRL Laboratories, LLC.- Louisiana State University.- Lucent Technology / Bell Laboratories.- Marathon Oil Company.- Merck & Co., Inc..- Molecular Simulations, Inc. (MSI; now Accelrys).- Motorola, Inc..- National Institute of Standards and Technology (NIST).- Owens Corning, Inc..- Pharmacopeia, Inc..- Phillips Petroleum Company/Chevron Phillips Chemical Company.- Rohm and Haas Company.- Sandia National Laboratories.- Solutia Inc..- University of Minnesota Supercomputing Institute.- C. Observations on Funding Estimates for Molecular Modeling.- D. Glossary.- E. Index of Companies.

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