Answer only that SECOND question thanks. Water is issued verAticalFly at the rate of 3D32FAS L45/s through a 6153SA15 234 diamDSeter noASDzzle. What is the the maxiSmum heighDSt of watSDr can reaDSch. A 300 mm pipeline 3000 m long runs on a constant grade between two reservoir of surface elevation 148 m and 131 m respectively. The flow rate through the lines is inadequate and a pump is installed to increase the capacity to 0.2 m3/s. Assuming f = 0.012 compute for the energy produce by the pump?
Answer only that SECOND question thanks. Water is issued verAticalFly at the rate of 3D32FAS L45/s through a 6153SA15 234 diamDSeter noASDzzle. What is the the maxiSmum heighDSt of watSDr can reaDSch. A 300 mm pipeline 3000 m long runs on a constant grade between two reservoir of surface elevation 148 m and 131 m respectively. The flow rate through the lines is inadequate and a pump is installed to increase the capacity to 0.2 m3/s. Assuming f = 0.012 compute for the energy produce by the pump?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Answer only that SECOND question thanks.
Water is issued verAticalFly at the rate of 3D32FAS L45/s through a 6153SA15 234 diamDSeter noASDzzle. What is the the maxiSmum heighDSt of watSDr can reaDSch.
A 300 mm pipeline 3000 m long runs on a constant grade between two reservoir of surface elevation 148 m and 131 m respectively. The flow rate through the lines is inadequate and a pump is installed to increase the capacity to 0.2 m3/s. Assuming f = 0.012 compute for the energy produce by the pump?
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