Polymer Motion in Dense Systems: Proceedings of the Workshop, Grenoble, France, September 23-25, 1987Dieter Richter |
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Page 106
... radii of gyration given by the Zimm plots are plotted as a function of channel number . These were fitted with a function containing the radius of gyration as function of the extension , as given by the phantom model with a phase ...
... radii of gyration given by the Zimm plots are plotted as a function of channel number . These were fitted with a function containing the radius of gyration as function of the extension , as given by the phantom model with a phase ...
Page 118
... radius of gyration ( very likely meaningless here ) is therefore increased even if the isointensity curve anisotropy would suggest an orientation in the perpendicular direction . The reason for this paradoxical situation is the strong ...
... radius of gyration ( very likely meaningless here ) is therefore increased even if the isointensity curve anisotropy would suggest an orientation in the perpendicular direction . The reason for this paradoxical situation is the strong ...
Page 278
... radii of gyration , and degree of polymerisation of the components and of X12 for the special case mentioned above where B = 1 . 2 The method employed by BENOIT et.al for determining the interaction parameter is to calculate the ...
... radii of gyration , and degree of polymerisation of the components and of X12 for the special case mentioned above where B = 1 . 2 The method employed by BENOIT et.al for determining the interaction parameter is to calculate the ...
Contents
Local Motions in Bulk Polymers By L Monnerie J L Viovy | 2 |
Large Scale Motion Near the Glass Transition | 18 |
SynchrotronExcited Fluorescence Study of Local Dynamics in Bulk | 37 |
Copyright | |
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anisotropy autocorrelation function behaviour bond calculated Chem components concentration fluctuations conformational constraints copolymer correlation function corresponding crosslinking curve decay deformation density deuterated diffusion coefficient dynamic light scattering dynamics effect elastic energy entanglement equation experimental Figure fluorescence anisotropy frequency friction Fytas glass transition incoherent incoherent scattering interaction isotropic lattice length Lett light scattering linear lineshape Macromolecules matrix measurements mixture modes molecular weight molecules monomer motion neutron scattering observed obtained orientation P.G. de Gennes parameter PDMS Phys plot polybutadiene polymer blends polymer chain polymeric polystyrene predicted protonated quasielastic radius of gyration range rods rotational Rouse model rubber sample scale scattered intensity scattering experiments scattering function segments shows simulations small angle solid solution spectra spectrum spin spinodal spinodal decomposition structure factor T₁ techniques temperature dependence theoretical theory tion tube values vector viscoelastic volume