Problem 2: The figure below shows two reservoirs containing water. The water in the upper reservoir is to be drained to the lower one as shown. The total length of the commercial steel pipe is 150 ft, and its diameter is 5 in. What should be the elevation of the upper reservoir if the flow rate of water is to be maintained at 5 L/s? Water Elevation = ??? 90° elbow I Q=5 l/s $ wide-open globe valve Water Elevation 15 m

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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In this problem should we add the friction losses in Bernoullis equation ? also, shouldnt we divide by gc=32.17? Please help, I'm confused ​​​​​​​
Problem 2:
The figure below shows two reservoirs containing water. The water in the upper reservoir is
to be drained to the lower one as shown. The total length of the commercial steel pipe is 150
ft, and its diameter is 5 in.
What should be the elevation of the upper reservoir if the flow rate of water is to be
maintained at 5 L/s?
Water
Elevation
= ???
90° elbow
I
Q = 5 L/s
wide-open globe valve
Water
Elevation
15 m
Transcribed Image Text:Problem 2: The figure below shows two reservoirs containing water. The water in the upper reservoir is to be drained to the lower one as shown. The total length of the commercial steel pipe is 150 ft, and its diameter is 5 in. What should be the elevation of the upper reservoir if the flow rate of water is to be maintained at 5 L/s? Water Elevation = ??? 90° elbow I Q = 5 L/s wide-open globe valve Water Elevation 15 m
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