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Experimental results show enhancement of particle deposition; besides, pressure drop rises with increase of particle size.
CW rises with increase in link quality and decrease in mobility of coordinator.
WAT rises with increase in shear rate which can be induced by the vertical mass transfer of the building material (wax molecules).
It is seen that fluid velocity rises with increase in λ T whereas temperature and nanoparticle concentration reduce as Gr increases.
At any displacement amplitude, the damping of the composites rises with increase in CNF content – with the highest damping seen in PLA with 10 wt% CNF.
The resistivity rises with increase in the band gap indicating formation of a continuous solid solution of CdTe and ZnTe in the ternary phase Cd1−xZnxTe.
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Precompression stress rises with increasing dry bulk density.
Our first observation is that the viscosity rises with increasing PC1 values and decreasing PC2 values.
On the other hand, Rn activity rises with increasing atmospheric pressure and higher water concentrations.
Furthermore, the NSR value rises with increasing the RY content or elevating the test temperature.
The additional computational effort rises with increasing the number of particles.
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