i) ii) the tension (lbf) in the string the gauge pressure (lbf/ft²) at the bottom of the pail due to the water

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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A cylindrical pail which is 1 ft in diameter and 1 ft deep weighs 3 lbf and contains
8 in. of water (p = 1.94 slugs/ft') when at rest. The pail is then swung around a
vertical circle of 3 ft radius (i.e., the center of mass of the pail and water is located
at r = 3 ft) at a constant velocity of 15 ft/s. Assume solid body rotation with no
spilling or sloshing. At the instant when the pail is at the top of its trajectory,
determine the following:
5.
||
the tension (lbf) in the string
i)
ii)
the gauge pressure (lbf/ft²) at the bottom of the pail due to the water
V= 15
8 in.
3ft
Transcribed Image Text:A cylindrical pail which is 1 ft in diameter and 1 ft deep weighs 3 lbf and contains 8 in. of water (p = 1.94 slugs/ft') when at rest. The pail is then swung around a vertical circle of 3 ft radius (i.e., the center of mass of the pail and water is located at r = 3 ft) at a constant velocity of 15 ft/s. Assume solid body rotation with no spilling or sloshing. At the instant when the pail is at the top of its trajectory, determine the following: 5. || the tension (lbf) in the string i) ii) the gauge pressure (lbf/ft²) at the bottom of the pail due to the water V= 15 8 in. 3ft
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