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Self-diffusion of polystyrene in solution 1. Experimental results of the NMR pulsed field gradient techniqueWe report self-diffusion measurements for polystyrene dissolved in benzene and chloroform using

Self-diffusion of polystyrene in solution 1. Experimental results of the NMR pulsed field gradient techniqueWe report self-diffusion measurements for polystyrene dissolved in benzene and chloroform using

Polystyrene concrete as the structural thermal insulating material polystyrene, Portland cement type I, gypsum, gaize, chrysotile asbestos fiber, plasticizer aqueous solution

Self-diffusion of polystyrene in solution 2. Discussion of experimental results on the basis of the reptation mechanism and entanglementsThe expressions for polymer self-diffusion in semidilute solutions, theoretically derived from

Molecular motion in concentrated solutions of spherical polystyrene microgels studied with the pulsed field gradient n.m.r. in solution are presented. We have measured the echo attenuation (or the incoherent dynamic structure function

Self-diffusion of polystyrene in solution 2. Discussion of experimental results on the basis of the reptation mechanism and entanglementsThe expressions for polymer self-diffusion in semidilute solutions, theoretically derived from

NMR relaxation and the state of solvent molecules in solutions of polyvinylchloride and polystyrene in dibutylphthalate and the coefficient of self-diffusion of dibutylphthalate molecules in solutions containing 0-20 vol. % PVC and PS

Molecular motion in concentrated solutions of spherical polystyrene microgels studied with the pulsed field gradient n.m.r. in solution are presented. We have measured the echo attenuation (or the incoherent dynamic structure function

Self-diffusion of macromolecules in polystyrene solutions in solutions of CCl4 and C6D6 over wide concentration and temperature ranges, revealing the existence of a

Self diffusion in solutions of polyvinyl chloride and polystyrene with phthalates solutions with low polymer contents, using a pulse NMR method. The coincidence appearing in regard

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