Indira Gandhi National Tribal University, Amarkantak

Prof. Ram Dayal Munda Central Library

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Fragmentation : toward accurate calculations on complex molecular systems / edited by Mark S. Gordon, Iowa State University, USA.

Contributor(s): Material type: TextTextPublisher: Hoboken, NJ : John Wiley & Sons, Inc., 2017Copyright date: ©2017Description: 1 online resource (xv, 358 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781119129257
  • 1119129257
  • 9781119129271
  • 1119129273
Subject(s): Genre/Form: Additional physical formats: Print version:: Fragmentation.DDC classification:
  • 547/.128 23
LOC classification:
  • QD281.F7 F738 2017
Online resources: Summary: Fragmentation: Toward Accurate Calculations on Complex Molecular Systems introduces the reader to the broad array of fragmentation and embedding methods that are currently available or under development to facilitate accurate calculations on large, complex systems such as proteins, polymers, liquids and nanoparticles. These methods work by subdividing a system into subunits, called fragments or subsystems or domains. Calculations are performed on each fragment and then the results are combined to predict properties for the whole system. Topics covered include: -Fragmentation methods -Embedding methods -Explicitly correlated local electron correlation methods -Fragment molecular orbital method -Methods for treating large molecules This book is aimed at academic researchers who are interested in computational chemistry, computational biology, computational materials science and related fields, as well as graduate students in these fields.
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Includes bibliographical references and index.

Description based on online resource; title from digital title page (viewed on August 17, 2017).

Fragmentation: Toward Accurate Calculations on Complex Molecular Systems introduces the reader to the broad array of fragmentation and embedding methods that are currently available or under development to facilitate accurate calculations on large, complex systems such as proteins, polymers, liquids and nanoparticles. These methods work by subdividing a system into subunits, called fragments or subsystems or domains. Calculations are performed on each fragment and then the results are combined to predict properties for the whole system. Topics covered include: -Fragmentation methods -Embedding methods -Explicitly correlated local electron correlation methods -Fragment molecular orbital method -Methods for treating large molecules This book is aimed at academic researchers who are interested in computational chemistry, computational biology, computational materials science and related fields, as well as graduate students in these fields.

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