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Q. An engine pump is used to pump a liquid of density $\rho$ continuously through a pipe of cross-sectional area A. If the speed of flow of the liquid in the pipe is $\upsilon$, then the rate at which kinetic energy is being imparted to the liquid is

Work, Energy and Power

Solution:

Volume of liquid flowing per second $A\upsilon$
Mass of liquid flowing per second, $m = A\upsilon\rho$
The rate at which kinetic energy is being imparted to the liquid is
$=\frac{1}{2}m\upsilon^{2}=\frac{1}{2}\left( A\upsilon\rho \right)\upsilon^{2}=\frac{1}{2} A\rho\upsilon^{3} $