02: Water is to be withdrawn from a 3 m high water reservoir by drilling a 1.5 cm diameter hole at the bottom surface. Disregarding the effect of the kinetic energy correction factor (a = 1), determine the flow rate of water through the hole if (a) the entrance of the hole is well-rounded (KL = 0.03) and (b) the entrance is sharp-edged (KL = 0.5).

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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02: Water is to be withdrawn from a 3 m high water reservoir by drilling a 1.5 cm diameter hole at the bottom surface. Disregarding the effect of the kinetic energy correction factor (a = 1). determine the flow rate of water through the hole if (a) the entrance of the hole is well-rounded (K. =0.03) and (b) the entrance is sharp-edged (K, = 0.5).
02: Water is to be withdrawn from a 3 m high water reservoir by drilling
a 1.5 cm diameter hole at the bottom surface. Disregarding the effect of
the kinetic energy correction factor (a = 1), determine the flow rate of
water through the hole if (a) the entrance of the hole is well-rounded (KL.
= 0.03) and (b) the entrance is sharp-edged (K = 0.5).
Transcribed Image Text:02: Water is to be withdrawn from a 3 m high water reservoir by drilling a 1.5 cm diameter hole at the bottom surface. Disregarding the effect of the kinetic energy correction factor (a = 1), determine the flow rate of water through the hole if (a) the entrance of the hole is well-rounded (KL. = 0.03) and (b) the entrance is sharp-edged (K = 0.5).
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