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Computer-Based Modeling of Novel Carbon Systems and Their Properties
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Computer-Based Modeling of Novel Carbon Systems and Their Properties : Beyond Nanotubes

Book Details

Format Hardback or Cased Book
ISBN-10 1402097174
ISBN-13 9781402097171
Publisher Springer-Verlag New York Inc.
Imprint Springer-Verlag New York Inc.
Country of Manufacture GB
Country of Publication GB
Publication Date Jul 1st, 2010
Print length 250 Pages
Weight 574 grams
Dimensions 16.80 x 24.30 x 2.30 cms
Ksh 16,200.00
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Synthesizing the current research on carbon materials, this volume explores how varying methods can be combined while presenting how new carbon structures are predicted. The text serves as an up-to-date survey on the theoretical and computational research on novel carbon systems.
During the last twenty years, the multiplicity of potential carbon structures has consistently posed a formidable challenge to theoretical and computational physicists. Several different methods are currently being used to study the structure and the properties of such systems. These methods include simulations based on empirical potentials, tight-binding calculations and density functional theory (DFT). A combination of these methods is needed to make significant progress in the carbon field. This volume provides the reader with a survey of state-of-the-art theoretical and computational contributions featuring novel carbon systems (excluding nanotubes). The chapters are authored by leading researchers who are all actively involved with different aspects of carbon structure and property elucidation. Consequently, a variety of methods are presented to the reader. The editors have successfully compiled an informative book that:•  Showcases the latest results in carbon materials •  Demonstrates how different theoretical methods are combined •  Explains how new carbon structures are predicted Computer-Based Modeling of Novel Carbon Systems and Their Properties is aimed at advanced undergraduates, graduates, and researchers with an interest in computational nanomaterials.

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