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Titlebook: Biological and Synthetic Polymer Networks; O. Kramer Book 1988 Elsevier Applied Science Publishers Ltd 1988 Elastomer.Polyacrylamid.Polyme

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,Parosteale und extraskelettale Läsionen, 0–60 vol. % of xylene (diluent), were compared with theoretical predictions of the branching theory based on the spanning-tree approximation to ring formation. For dilutions ranging from 0 to 60%, the fraction of bonds lost in elastically inactive cycles increases from 2·5% to 5–7·5%, depending on
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,Parosteale und extraskelettale Läsionen, investigated operating in homogeneous solution, phase transfer catalysis conditions and bulk. Two kinds of principal unsaturation, monitored by FT-IR and .H-NMR spectrometry, -CH=CF- and (CF.)C=CH-, have been detected. The former seems to be the curing site in the nucleophilic crosslinking of the f
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Normale Anatomie und Histologie,ngth. The ionomers of one-end tagged polystyrene chains show in cyclohexane inverse micelle formation with an aggregation number of 11–12. The both-end tagged ionomers form clear gels which become liquefied on sonification but are reformed on standing..Finally, the properties of entangled networks a
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,Parosteale und extraskelettale Läsionen,r elasticity is not rubber-like and is tentatively ascribed to bending of the fibrils. At very long times, the clot undergoes creep and creep recovery with some irrecoverable deformation; the Boltzmann superposition principle is obeyed and there is no net structural damage, as evidenced by constant
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