This pump is being used in a hydraulic system operating at 3000 psi. What is the Theoretical Drive Torque (TT) of this pump a. 350 in.lbs. b. 467 in.lbs. c. 597 in.lbs. d. 921 in.lbs.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Qt= 9.74gpm

Qa=8.28gpm

Comparing Qt and Qa determine the pump's case drain flow rate
a. 0.94 gpm
b. 1.20 gpm
с. 1.46 gpm
d. 1.94 gpm
This pump is being used in a hydraulic system operating at 3000 psi. What is the
Theoretical Drive Torque (TT) of this pump
а. 350 in.lbs.
b. 467 in.lbs.
c. 597 in.lbs.
d. 921 in.lbs.
Transcribed Image Text:Comparing Qt and Qa determine the pump's case drain flow rate a. 0.94 gpm b. 1.20 gpm с. 1.46 gpm d. 1.94 gpm This pump is being used in a hydraulic system operating at 3000 psi. What is the Theoretical Drive Torque (TT) of this pump а. 350 in.lbs. b. 467 in.lbs. c. 597 in.lbs. d. 921 in.lbs.
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