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As PEG molecular weight increases, volume of the as-prepared microstructures increases but density decreases.
The polymer molecular weight increases with decreasing dose rate and increasing monomer concentration.
Additionally, the resistance to extinction decreases as the fuel molecular weight increases.
The molecular weight increases continuously with increasing EA content in the two copolymers.
The interfacial tension becomes lower as the polydispersity of polystyrenes having the same number-average molecular weight increases.
Analysis by size exclusion chromatography shows that, depending on temperature and reaction time, the molecular weight increases, the molecule become branched and ultimately cross-linked compounds are formed.
Similar(29)
The number-average molecular weight increased with decreasing UV intensity.
Retention times increased as PEG molecular weight increased from 10 kDa to 40 kDa, while selectivities decreased as PEG molecular weight increased.
At higher levels, however, the molecular weight increased with increasing bisimide concentrations, contrary to our expectations.
The molecular weight increased steadily at low conversion and leveled off at high conversion.
This behavior can be explained by the stiffness decrease according to the PEGDA molecular weight increase.
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