For each problem, one curved surface is shown restraining a body of static fluid. Compute the magnitude of the horizontal component of the force, and compute the vertical component of the force exerted by the fluid on that surface. Then, compute the magnitude of the resultant force and its direction. Show the resultant force acting on the curved surface. In each case the surface of interest is a portion of a cylinder with the length of the surface given in the problem. 1. Referring to figure 5, the surface if 2.00 long.
For each problem, one curved surface is shown restraining a body of static fluid. Compute the magnitude of the horizontal component of the force, and compute the vertical component of the force exerted by the fluid on that surface. Then, compute the magnitude of the resultant force and its direction. Show the resultant force acting on the curved surface. In each case the surface of interest is a portion of a cylinder with the length of the surface given in the problem. 1. Referring to figure 5, the surface if 2.00 long.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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
Transcribed Image Text:For each problem, one curved surface is shown restraining a body of static fluid.
Compute the magnitude of the horizontal component of the force, and compute the
vertical component of the force exerted by the fluid on that surface. Then, compute the
magnitude of the resultant force and its direction. Show the resultant force acting on the
curved surface. In each case the surface of interest is a portion of a cylinder with the
length of the surface given in the problem.
1. Referring to figure 5, the surface if 2.00 long.
Ammonia
sg-0.826
Water
0.62 m
1.85 m
1.25 m
0.75-m radius
Figure 5:Prob. 1
Figure 6: Prob. 2
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