Situation 5 - An open cylindrical vessel 4 m in diameter and 6 m high is two-thirds full of water. The vessel is revolved about its own vertical axis at constant angular speed. 25. Calculate the peripheral velocity at the top rim of the vessel when the water starts to spill out. A. 10.25 m/s C. 7.56 m/s D. 8.86 m/s B. 9.37 m/s 26. Calculate the peripheral velocity at the top rim of the vessel when 3 m³ of water is spilled out. A. 8.86 m/s C. 9.37 m/s B. 7.56 m/s D. 10.25 m/s pressure at the bottom of the vessel. 27. What is the maximum A. 39.24 kPa C. 62.58 kPa B. 58.86 kPa D. 45.63 kPa

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Situation 5 - An open cylindrical vessel 4 m in diameter and 6 m
high is two-thirds full of water. The vessel is revolved about
its own vertical axis at constant angular speed..
25. Calculate the peripheral velocity at the top rim of the vessel
when the water starts to spill out.
A. 10.25 m/s
C. 7.56 m/s
B. 9.37 m/s
D. 8.86 m/sy to heninos A
26. Calculate the peripheral velocity at the top rim of the vessel
when 3 m³ of water is spilled out.
A. 8.86 m/s
C. 9.37 m/s
B. 7.56 m/s
D. 10.25 m/s
pressure at the bottom of the vessel.
27. What is the maximum
A. 39.24 kPa
C. 62.58 kPa
B. 58.86 kPa
D. 45.63 kPa
Transcribed Image Text:Situation 5 - An open cylindrical vessel 4 m in diameter and 6 m high is two-thirds full of water. The vessel is revolved about its own vertical axis at constant angular speed.. 25. Calculate the peripheral velocity at the top rim of the vessel when the water starts to spill out. A. 10.25 m/s C. 7.56 m/s B. 9.37 m/s D. 8.86 m/sy to heninos A 26. Calculate the peripheral velocity at the top rim of the vessel when 3 m³ of water is spilled out. A. 8.86 m/s C. 9.37 m/s B. 7.56 m/s D. 10.25 m/s pressure at the bottom of the vessel. 27. What is the maximum A. 39.24 kPa C. 62.58 kPa B. 58.86 kPa D. 45.63 kPa
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