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This maximum possible velocity increases with the power of transmission.
For I category, the wind velocity increases with height monotonously.
Experimental results showed that the critical sticking velocity increases with the porosity of the fouling layer.
For smaller fin spacing, induced velocity increases with the decreasing variable fin height.
During the night, especially a rainy night, sap flow may stop; velocity increases with daylight, peak rates being found in the early afternoon.
The results show that the minimum spouting velocity increases with cone angle, particle diameter and static bed height.
The proppant settling velocity increases with the slick-water elasticity; this phenomenon is more pronounced for large proppant particles.
The frost spreading velocity increases with decreasing substrate temperature on the smooth surfaces and the wettability patterned surfaces.
For non-Newtonian fluids the transition velocity increases with liquid elasticity.
It is found that maximum laminar flame propagation velocity increases with tube diameter.
The maximum velocity increases with the extent of the movement, being 300° per second for 10° and 500° per second for 30°.
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