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Twisting increases with increase in slope of the die cavity.
Generally, Li cycling efficiency increases with increase in electrolyte conductivity.
Impact strength of material increases with increase in percentage of MWCNT.
On the other-hand hardness increases with increase in solid inclusion of carbon black.
However, the CO level also increases with increase in equivalence ratio for same separation distance.
It was found that the overall heat transfer coefficient U increases with increase in temperature difference.
The deflagration index increases with increase in size of the test vessel.
Similarly, viscosity of nanofluid increases with increase of volume concentrations but decreases with increase of temperatures.
The results indicate that the heat transfer coefficient increases with increase in tube inclination angle.
Results show that the cross-sectional plume area increases with increase in distance away from tailpipe.
Bubble diameter during detachment increases with increase in gas flow rates.
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