5. If the smaller pipe of Fig. A is cut off a short distance past reducer so that the jet springs free into air as in Fig. B, compute the pressure at 1 if Q in., and D2 4 in. Assume that the jet has the diameter D2, that. the pressure in the jet is stmospheric, and that the loss of head from point 1 to point 2 is 5 ft of water. 5.0 cfs of water, Di is 12
5. If the smaller pipe of Fig. A is cut off a short distance past reducer so that the jet springs free into air as in Fig. B, compute the pressure at 1 if Q in., and D2 4 in. Assume that the jet has the diameter D2, that. the pressure in the jet is stmospheric, and that the loss of head from point 1 to point 2 is 5 ft of water. 5.0 cfs of water, Di is 12
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question

Transcribed Image Text:100
12" Pipe
4* Pipe
•2
Fig. A
5. If the smaller pipe of Fig. A is cut off a short distance past h.
reducer so that the jet springs free into air as in l'ig. B, compute the
pressure at 1 if Q
in., and D2 4 in. Assume that the jet has the
diameter D2, that, the pressure in the jet is
stmospheric, and that the loss of head from
point 1 to point 2 is 5 ft of water.
5.0 cfs of water, Di is 12
%3D
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