A tank has a hole in the bottom with a cross-sectional area of 0.0025 m and...
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A tank has a hole in the bottom with a cross-sectional area of 0.0025 m and an inlet on one side with a cross- sectional area of 0.0025 m", as shown in Fig. 6. The cross-sectional area of the tank is 0.1 m2. The velocity of the liquid flowing out of the bottom hole is V = 2gh where h is the height of the water surface in the tank above the outlet. At a certain time the surface level in the tank is Im and rising at the rate of 0.1 cm/s. The liquid is incompressible. Find the velocity of the liquid through the inlet. 4 0.1 m3 %3D h = 1 m %3D in A = 0.0025m2 %3D A = 0.0025m2 F= V2gh %3D %3D Fig. 6 A tank has a hole in the bottom with a cross-sectional area of 0.0025 m and an inlet on one side with a cross- sectional area of 0.0025 m", as shown in Fig. 6. The cross-sectional area of the tank is 0.1 m2. The velocity of the liquid flowing out of the bottom hole is V = 2gh where h is the height of the water surface in the tank above the outlet. At a certain time the surface level in the tank is Im and rising at the rate of 0.1 cm/s. The liquid is incompressible. Find the velocity of the liquid through the inlet. 4 0.1 m3 %3D h = 1 m %3D in A = 0.0025m2 %3D A = 0.0025m2 F= V2gh %3D %3D Fig. 6
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Related Book For
Fundamentals of Thermodynamics
ISBN: 978-0471152323
6th edition
Authors: Richard E. Sonntag, Claus Borgnakke, Gordon J. Van Wylen
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