Consider a vertical pipe of diameter 3.136 mm. Through this pipe kerosene (density 963 kg/m3 and kinematic viscosity 2.547 10-6 m?/s) is flowing from the bottom towards the top, at a flow rate of 0.007427 I/s. A pressure gauge at the bottom of the pipe indicates that the pressure at the bottom is 3000000 Pa. Calculate what will be the pressure at 8 m above the measurement location. If needed, use that the acceleration of gravity is 9.81m/s2. O a. 2.863 106 Pa O b. 3000000 Pa O c. 6.141 104 Pa O d. 2.932 106 Pa
Consider a vertical pipe of diameter 3.136 mm. Through this pipe kerosene (density 963 kg/m3 and kinematic viscosity 2.547 10-6 m?/s) is flowing from the bottom towards the top, at a flow rate of 0.007427 I/s. A pressure gauge at the bottom of the pipe indicates that the pressure at the bottom is 3000000 Pa. Calculate what will be the pressure at 8 m above the measurement location. If needed, use that the acceleration of gravity is 9.81m/s2. O a. 2.863 106 Pa O b. 3000000 Pa O c. 6.141 104 Pa O d. 2.932 106 Pa
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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