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Polymer Yearbook

Autor Gennady Zaikov, C. Sirghie, R. M. Kozlowski
en Limba Engleză Hardback – 30 noi 2011
This book examines the chemistry and physical properties of polymers and composites within the framework of chemical kinetics, chemical physics and quantum calculations. Such an approach allows for quantitative estimation and physical treatment of oligomers, polymers and composites on the basis of polymers and filled polymers. In addition, information about calculations of bond energy in cluster aqueous nanostructures, mathematical modelling dependence of thermodynamic characteristics upon spatial-energy parameter of free atoms, exchange spatial-energy interactions and cyclohexane oxidation activated by glyoxal are a few of the topics discussed in this book.
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Specificații

ISBN-13: 9781612096452
ISBN-10: 161209645X
Pagini: 266
Ilustrații: Illustrations
Dimensiuni: 261 x 185 x 20 mm
Greutate: 0.67 kg
Editura: Nova Science Publishers Inc

Cuprins

Introduction; Calculations of bond energy in cluster aqueous nanostructures; Mathematical modeling dependence of thermodynamic characteristics upon spatial-energy parameter of free atoms; Exchange spatial-energy interactions; Cyclohexane oxidation activated by glyoxal: elucidation of the activator impact; To a question of liquid components capsuling; The study properties of fire-retardant coating; Physical principles of the conductivity of electrical conducting polymer composites (Review); Electric conductivity of polymer composites at mechanical relaxation; Diffusion behaviour of trivalent metal ions in aqueous solutions; Potassium & sodium 2,6-di-tert-butyl phenoxides & their properties; Reactions of diethyl N-acetylamino (3,5-di-tert-butyl-4-hydroxybenzyl) malonate in alkaline solution; Mechanism of catalytic alkylation of 2,6-di-tert-butylphenol by methyl acrylate"; The theoretical structural model of nanocomposites polymer/organoclay reinforcement; The nanocomposites polyethylene/organoclay permeability to gas description within the frameworks of percolation & multifractal models; The rheology of particulate-filled polymer nanocomposites.