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The critical conversion of gelation for the A2 + CB2 type polymerization depends on the reactivity ratio.
Determination of the critical conversion point (pc=0.58) was obtained experimentally through rheological measurements.
The microphase separation transition (MST) occurred at a critical conversion of isocyanate functional groups.
It was found that the concentration of tertiary chlorines increases significantly with increase in monomer conversion after the critical conversion at which the reactor pressure starts to fall.
The model allows for changes in the particle size due to the disintegration of the solid structure at some critical conversion level.
During the rapid copolymerization of liquid reactants, incipient microphase separation was shown to occur at a critical conversion of isocyanate groups and to proceed via the kinetics associated with spinodal decomposition.
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The critical time for gelation is found to decrease when Z increases, and in all cases the actual critical conversions are larger than those calculated by the classical statistical Flory-Stockmayer relation.
The primary particle population balance model can predict the critical monomer conversion at which massive particle aggregation occurs leading to the formation of a continuous network of primary polymer particles inside the polymerizing monomer droplets.
A detailed investigation on the predicted critical monomer conversion is carried out including its dependence on the rate of agitation, temperature, electrolyte concentration, as well as the concentrations of the primary and secondary stabilizers.
More recently, it has been shown that thyroid-stimulating hormone (TSH) expressed in the pars tuberalis (PT) of the pituitary gland, induces type 2 deiodinase (DIO2), an enzyme that is critical for conversion of T4 into an active T3 form, in the hypothalamus of Japanese quails, Coturnix japonica [26].
Too much LRRK2 activity decreases the ratio of light chain 3II (LC3indicatorsindicatofs of autophagy, and reduces the level of lysosome-associated membrane protein 2 (LaMproteinprotein critical for conversion of early autophagic vacuoles to vacuoles which rapidly degrade their content, and increases p62 levels by blocking lysosomal degradation of autophagosomes.
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