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average molecular weight between consecutive crosslinks.
The network structure was elucidated through the determination of the molecular weight between crosslinks.
The specimens differ in total molecular weight as well as molecular weight between entanglements.
The molecular weight between crosslinks was kept at 22 000 g mol−1.
The average molecular weight between consecutive crosslinks (Mc) is another structural parameter characterizing the three-dimensional network structure.
This corresponds to a molecular weight that is 40 times higher than the molecular weight between entanglements.
Swelling studies were carried out to determine the molecular weight between crosslinks and polymer networks made from wholly synthetic polyols were shown to have higher molecular weight between crosslinks.
For one of the polymers, the characteristic molecular weight between entanglements, Mc, is determined from Newtonian viscosities of isotropic solutions.
The interaction parameter, permeability, sorption coefficient and molecular weight between crosslinks have been evaluated using the diffusion data.
The effect of molecular weight between crosslinks, Mc, on the fracture toughness and fracture behaviour of diallylterephthalate resin was investigated.
The Mc (molecular weight between cross-links) ranged from 1776 to 1887 compared with the theoretical Mc of 1638 Da.
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