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The Intercommunication of Structures in Diluted Solution and Polymers Condensed State

6 THE INTERCOMMUNICATION OF STRUCTURES IN DILUTED SOLUTION AND POLYMERS CONDENSED STATE [Pg.117]

As it has been shown above, both solvent type and polymer chain stmcture will influence on solid-phase polymer stmcture and, hence, its properties. Both indicated factors have an influence on value and it is obvious, that the chain stmcture will have main influence on the dimension variation, since the data only for PESF solutions in tetrachloroethane [Pg.117]

The Fractal Physical Chemistry of Polymer Solutions and Melts [Pg.118]

FIGURE 48 The dependence of intrinsic viscosity [t ] on sulfone fragments contents for PESF solutions in tetrachloroethane. [Pg.118]

Z) calculation according to the Eq. (11) confirms this supposition. The dependence of on formal fragments eontents in PESF, shown in Fig. 30, is also nonadditive and copol5miers Devalues are disposed below the additive dependence. Thus, the data of Figs. 30 and 48 allow one to trace PESF macromolecular coil structure in tetrachloroethane solution change as a function of either chain fragments contents. [Pg.118]




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Condensation polymers

Condensation polymers, solution

Condensation structures

Condensed states

Dilute polymer solutions

Diluted solutions

In dilute polymer solution

Intercommunication of structural

Polymer condensation polymers

Polymers dilute

Polymers diluted solutions

Polymers in solutions

Solute structure

Solution diluting

Solution state

Solutions dilution

Solutions of polymers

States of solution

Structural solutions

Structure in polymers

Structure in solution

Structure of solutions

Structure states

The Dilute Solution

The Polymer Solution

The structure of polymers

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