Q2) Water at 4°C enters a tank of diameter DT = 50 cm at a constant mass flow rate of min= 1 kg/s. An orifice at the bottom with diameter Do = 10 mm allows water to drain. The frictional losses can be negligible. If the tank is initially empty, determine the maximum height that the water will reach in the tank and derive the integration relation to calculate the time that is needed to reach this height. m DT Do

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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Q2) Water at 4°C enters a tank of diameter DT = 50 cm at
a constant mass flow rate of min= 1 kg/s. An orifice
at the bottom with diameter Do = 10 mm allows water
to drain. The frictional losses can be negligible. If the
tank is initially empty, determine the maximum
height that the water will reach in the tank and derive
the integration relation to calculate the time that is
needed to reach this height.
m
DT
Do
Transcribed Image Text:Q2) Water at 4°C enters a tank of diameter DT = 50 cm at a constant mass flow rate of min= 1 kg/s. An orifice at the bottom with diameter Do = 10 mm allows water to drain. The frictional losses can be negligible. If the tank is initially empty, determine the maximum height that the water will reach in the tank and derive the integration relation to calculate the time that is needed to reach this height. m DT Do
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