Water at 40 F (p=62.42 lbm/ft and p=1.038x103 Ibm/ft-s) is flowing steadily through a 0.12-in-(30.01 ft) diameter 30-ft-long horizontal pipe at an average velocity of 3 ft/s. Determine the pumping power requirement to overcome this pressure drop in Watt. 1W=0.737lbf.ft/s 3.0 ft/s 0.12 In 30 ft Select one: O a. 0.6 W Ob.0.9 W O c. 0.1 W O d. 0.3 W

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Water at 40 F (p=62.42 lbm/ft and p=1.038x103 Ibm/ft-s) is flowing steadily through a 0.12-in-(%3D0.01 ft) diameter
30-ft-long horizontal pipe at an average velocity of 3 ft/s. Determine the pumping power requirement to
overcome this pressure drop in Watt.
ut of
1W=0.737lbf.ft/s
3.0 ft/s 0.12 In
30 ft
Select one:
O a. 0.6 W
O b. 0.9 W
Oc.0.1 W
O d. 0.3 W
Transcribed Image Text:Water at 40 F (p=62.42 lbm/ft and p=1.038x103 Ibm/ft-s) is flowing steadily through a 0.12-in-(%3D0.01 ft) diameter 30-ft-long horizontal pipe at an average velocity of 3 ft/s. Determine the pumping power requirement to overcome this pressure drop in Watt. ut of 1W=0.737lbf.ft/s 3.0 ft/s 0.12 In 30 ft Select one: O a. 0.6 W O b. 0.9 W Oc.0.1 W O d. 0.3 W
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