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Their high viscosity decreased with increasing pH.
Steady shear viscosity decreased with increasing shear rate.
The enhanced viscosity decreased as the shear rate and the temperature increased.
While Young's modulus slightly increased, viscosity decreased and consequently molecular weight decreased too.
Apparent foam viscosity decreased steeply at a "critical" oil saturation of 13%to15%5%.
Viscosity decreased with an increase in the heating rate and tended to saturate at 200 °C/min and above.
Intrinsic viscosity decreased with extended sonication time and at higher intensity, but increased as the PSP concentration increased.
Three different PLA polymers were employed, whose viscosity decreased in the following order: PLC ≈ PLA1 > PLA2 > PLA3.
Rheological results exhibited pseudoplastic or shear thinning flow behavior, where its viscosity decreased with increasing shear rate.
The viscosity decreased up to wCO2 levels of about 30% (w/w) then approaching a constant level.
The yield stress increase with silica fume content, while the plastic viscosity decreased at the beginning and then increased.
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