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Conformational Motion and Disorder in Low and High Molecular Mass Crystals (Paperback, Softcover reprint of the original 1st... Conformational Motion and Disorder in Low and High Molecular Mass Crystals (Paperback, Softcover reprint of the original 1st ed. 1988)
Bernhard Wunderlich, Martin Moeller, Janusz Grebowicz, Herbert Baur
R2,890 Discovery Miles 28 900 Ships in 10 - 15 working days

The broad field of conformational motion disorder in crystals is described with particular attention to the separation from the well known mesophases of liquid crystals and plastic crystals. Structure, thermodynamics and motion of a larger number of small and large molecules are discussed. Of special interest are the borderlines between smectic and high viscosity liquid crystals and condis crystals and between plastic crystals and condis crystals as complicated by pseudorotation, jumping between symmetry-related states and hindered rotation. This paper illustrates the wide distribution of conformational disorder in nature. Condis crystals and glasses ("Con"formational "Dis"order) can be found in small and large molecule systems made of organic, inorganic and biological compounds. The condis state was newly discovered only four years ago. In this article over 100 examples are discussed as example of the condis state. In many cases the condis state was suggested for the first time. Motion in the Condensed State, Condis Crystals and their Relation to Plastic Crystals, Condis Crystals of Flexible Macromolecules, Condis Crystals and their Relation to Liquid Crystals, Condis Crystals of Stiff Macromolecules.

Thermophysics of Polymers I - Theory (Paperback, Softcover reprint of the original 1st ed. 1999): Herbert Baur Thermophysics of Polymers I - Theory (Paperback, Softcover reprint of the original 1st ed. 1999)
Herbert Baur
R2,947 Discovery Miles 29 470 Ships in 10 - 15 working days

here, Herbert Baur provides a simple description of the theory of thermophysics of polymers. In order to illustrate the theoretical skeleton, he only treats the simple, easily comprehensible problems of polymer physics, yet, in detail. The main points covered are: thermally excited conformation isomery of polymers; phonon gas of ideal polymer crystals; the dissipative thermo-mechanical behaviour of polymers, new aspects of viscoelastic behavior, glass transistion, and crystallization.

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