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Nano-engineering in science and technology an introduction to the world of nano-design

Author: Michael Rieth; World Scientific (Firm)
Publisher: Singapore River Edge, N.J World Scientific Pub. Co ©2003
Series: Series on the foundations of natural science and technology, v. 6
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Ch. 1. Introduction -- ch. 2. Interatomic potentials. 2.1. Quantum mechanical treatment of the many-particle problem. 2.2. Potential energy surface. 2.3. Pair potential approximation. 2.4. Advantages and limitations of the pair potential approximation. 2.5. Phenomenological potentials. 2.6. Pseudo potentials. 2.7. Many-body potentials -- ch. 3. Molecular dynamics. 3.1. Models for molecular dynamics calculations.
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Genre/Form: Electronic books
Additional Physical Format: Erscheint auch als:
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Erscheint auch als:
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Erscheint auch als:
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Material Type: Document, Internet resource
Document Type: Book, Computer File, Internet Resource
All Authors / Contributors: Michael Rieth; World Scientific (Firm)
ISBN: 9812380736 9789812380739 9812380744 9789812380746 9789812560032 9812560033 9812380744
OCLC Number: 1005231789
Description: 1 Online-Ressource (xi, 151 Seiten) Illustrationen (some color)
Series Title: Series on the foundations of natural science and technology, v. 6
Responsibility: Michael Rieth

Abstract:

Ch. 1. Introduction -- ch. 2. Interatomic potentials. 2.1. Quantum mechanical treatment of the many-particle problem. 2.2. Potential energy surface. 2.3. Pair potential approximation. 2.4. Advantages and limitations of the pair potential approximation. 2.5. Phenomenological potentials. 2.6. Pseudo potentials. 2.7. Many-body potentials -- ch. 3. Molecular dynamics. 3.1. Models for molecular dynamics calculations. 3.2. Visualization techniques. 3.3. Solution of the equations of motion. 3.4. Efficient force field computation. 3.5. Implementation -- ch. 4. Characterization of nano-systems. 4.1. Thermal stability. 4.2. Basic material properties. 4.3. Wear at the nanometer level. 4.4. Mean values and correlation functions -- ch. 5. Nano-engineering - studies and conclusions. 5.1. Functional nanostructures. 5.2. Nano-machines. 5.3. Nano-clusters. 5.4. Stimulated nano-cluster transformations. 5.5. Analogy considerations. 5.6. The bifurcation phenomenon at the nanometer scale. 5.7. Analogies to biology. 5.8. Final considerations

This important book provides a vivid introduction to the procedures, techniques, problems and difficulties of computational nano-engineering and design. The reader is given step by step the scientific background information, for an easy reconstruction of the explanations. The focus is laid on the molecular dynamics method, which is well suited for explaining the topic to the reader with just a basic knowledge of physics. Results and conclusions of detailed nano-engineering studies are presented in an instructive style. In summary, the book puts readers immediately in a position to take their first steps in the field of computational nano-engineering and design

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