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OverviewNanotechnology is the study of the controlling of matter on an atomic and molecular scale, ranging from extensions of conventional device physics to completely new approaches based on molecular self-assembly. This book gathers and presents data on nanotechnology, including fourier diffusion and special relativity in nanotechnology; ion-synthesis of silver nanoparticles; self-organised meso-structures in confined soft materials; synthesis, properties and applications of germanium nanocrystals; optical characterisation of nanoscale materials and structural transformation of CdS nanoparticles upon annealing. Full Product DetailsAuthor: Zacharie Bartul , Jérôme TrenorPublisher: Nova Science Publishers Inc Imprint: Nova Science Publishers Inc Weight: 0.664kg ISBN: 9781613244807ISBN 10: 1613244800 Publication Date: 01 July 2011 Audience: Professional and scholarly , Professional & Vocational Format: Hardback Publisher's Status: Unknown Availability: Awaiting stock Table of ContentsPreface; Fourier Diffusion & Special Relativity in Nanotechnology; Permeation Properties of Castings of Epoxy & Polyurethane Layered Silicate Nanocomposites; Ion-Synthesis of Silver Nanoparticles & Their Optical Properties; Generation of Micropatterns on Side Surfaces of Polymer & Si Substrates Using a Micropunching Lithography Approach; Preparation of Biocompatible Ferrofluids for Magnetic Hyperthermia Studies; Nanotechnology: A Policy Primer; Novel Growth of Ag Islands on Si (111) Surfaces by Molecular Beam Epitaxy: Plateaus with Atomic Scale Preferred Heights; Synthesis, Properties & Applications of Germanium Nanocrystals; Self-Organized Meso-Structures in Confined Soft Materials; Quantum Point Contacts & Beyond: New Results on Mesoscopic Conductance & Fluctuations; Optical Characterization of Nanoscale Materials; Synthesis & Characterization of Nanofluid for Advanced Heat-Transfer Applications; Structural Transformation of CdS Nanoparticles upon Annealing; Electron Mobility in a InP/InxGa1-xAs Delta-doped Double Quantum Well System; Evaluation of the Thermodynamic Properties of Nano Phases in the Bi - Sn System; Tight-Binding Molecular Dynamics Study of Copper Clusters; Index.ReviewsAuthor InformationTab Content 6Author Website:Countries AvailableAll regions |
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