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Results on the effect of ascorbic addition on rate, molecular weight and livingness are presented.
The effects of the previous cooling rate, molecular weight of the polymer, filler addition and crosslinking on the characteristics of d.s.c.s.c
Additional information on the tensile properties of pericardium tissue, adhesive curing rate, molecular weight between cross-links, adhesion data, and UV vis data.
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The viscosity of the reaction medium appears to control the polymerization rate and molecular weight distribution.
The results further indicated that SBF flow decreased the degradation rate of molecular weight and compressive strength significantly.
The experiments were run through the full conversion range in order to collect composition, rate and molecular weight data.
The effect of stabilizer concentration and controller structure and concentration on polymerization rate and molecular weight development was analyzed.
After 6 months, it was seen that the scaffold in the loop set up presented a slower rate of molecular weight loss compared to the control samples.
Least affected by sterilization were the poly LLA) samples, which subsequently showed low mass loss rate and molecular weight decrease during hydrolysis.
The reaction rate and molecular weight of polymer can be controlled by the number of ether oxygen atoms in the initiator molecule.
Pressurization with CO2 leads to an increase in particle size (∼1 μm in the corresponding CO2-free system), and a decrease in both polymerization rate and molecular weight.
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