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. Ed(S): Massobrio, Carlo; Bulou, Herve; Goyhenex, Christine - Atomic-Scale Modeling of Nanosystems and Nanostructured Materials - 9783642046490 - V9783642046490
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Atomic-Scale Modeling of Nanosystems and Nanostructured Materials

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Description for Atomic-Scale Modeling of Nanosystems and Nanostructured Materials Hardback. This timely book covers a variety of applications of modern atomic-scale modelling of materials in the area of nanoscience and nanostructured systems. It successfully integrates physical basics, computational methods and nanosciences. Editor(s): Massobrio, Carlo; Bulou, Herve; Goyhenex, Christine. Series: Lecture Notes in Physics. Num Pages: 381 pages, 100 black & white illustrations, biography. BIC Classification: PHF; TBN. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 28. Weight in Grams: 813.
Understanding the structural organization of materials at the atomic scale is a lo- standing challenge of condensed matter physics and chemistry. By reducing the size of synthesized systems down to the nanometer, or by constructing them as collection of nanoscale size constitutive units, researchers are faced with the task of going beyond models and interpretations based on bulk behavior. Among the wealth of new materials having in common a “nanoscale” ngerprint, one can encounter systems intrinsically extending to a few nanometers (clusters of various compo- tions), systems featuring at least one spatial dimension not repeated periodically in space and assemblies ... Read more

Product Details

Format
Hardback
Publication date
2010
Publisher
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG Germany
Number of pages
381
Condition
New
Series
Lecture Notes in Physics
Number of Pages
371
Place of Publication
Berlin, Germany
ISBN
9783642046490
SKU
V9783642046490
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

About . Ed(S): Massobrio, Carlo; Bulou, Herve; Goyhenex, Christine
Carlo Massobrio, Hervé Bulou and Christine Goyhenex have established their reputations in the area of atomic-scale modelling of materials, with about 200 papers published in international journals. Areas covered by their research are the structural properties of nanosystems and disordered materials, with special interest for the mechanisms of diffusion and atomic migration at finite temperatures.

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