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While crystallization abruptly transforms a mobile, low-viscosity liquid to a crystalline solid at Tf, near Tg the liquid viscosity increases continuously through a large range in the transformation to an amorphous solid.
μ is the coefficient of liquid viscosity.
Lohrenz Bray Clark (1964) for liquid viscosity calculation.
Liquid viscosity was found to have a negligible effect.
reciprocation frequency; reciprocation amplitude; temperature; liquid viscosity and headspace.
Results of liquid viscosity and conductivity measurements are presented.
Liquid viscosity was correlated with an excess-property approach based on the classical Eyring liquid viscosity model.
The influence of the liquid viscosity on the peak positions is also presented.
The similar qualitative result is observed if the liquid viscosity decreases.
(a) Influence of liquid viscosity and (b) influence of porous matrix permeability to liquids.
Increasing liquid viscosity reduces this wake acceleration effect.
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