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As a result, the local Nusselt number, local Sherwood number, and local nanoparticle Sherwood number increase nonlinearly with the momentum slip parameter but decrease with increases in the solute slip coefficient.
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Inhibition was found to increase with increasing concentration of the extract but decrease with increasing time and temperature.
The values of r(t) tend to increase with α or β but decrease with increase in λ when other two parameters are kept fixed.
Both orientation and crystallinity increase with increasing draw ratio and draw rate, but decrease with increasing draw temperature in the temperature range of 90 114°C.
The growth rate ((Gamma )) increases with increasing (mu _p) but decreases with increasing (beta ) (Fig. 7).
In that approach the user utility increases with throughput but decreases with increased transmitted power.
Degradation reaction rates of PBDEs increased with increasing ozone concentration but decreased with increasing soil depth.
Inhibition efficiency increases with the increase of inhibitor concentration but decreases with increasing temperature.
Similarly, viscosity of nanofluid increases with increase of volume concentrations but decreases with increase of temperatures.
Boron removal increased with increasing pH and adsorbent dosage, but decreased with increasing temperature.
COP improvement increased with lowering the expander inlet temperature, but decreased with increasing the suction pressure.
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