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The static contact angle increases with increasing degree of surface roughness of the substrate.
With increasing degree of degradation, soil macropores quickly changed to mesopores or micropores.
The transport properties increased with increasing degree of sulfonation and temperature for all samples.
The results show that, with increasing degree of deformation, the mechanical properties of composites are improved.
The maximum volume of hydrogen generated decreased with increasing degree of quaternization.
Significant increases in polymerization rate also occur with increasing degree of clay exfoliation.
With increasing degree of disorder and Ga concentration, Mn may exchange with Ga as well.
Thermoresponsive behavior in solution and lowering of cloud points with increasing degree of methylation was observed.
procedure and found to decrease monotonically with increasing degree of work-hardening.
Various FE models are developed and evaluated, with increasing degree of complexity.
The observed anisotropy becomes more pronounced with increasing degree of inelasticity of the particles.
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