Consider the smooth vane shown which diverts the open stream of fluid of cross-sectional area A, mass density P, and velocity v. If the vane is moving at constant velocity and the velocity of the stream of fluid has the same velocity, which form of the linear momentum equation shown below is valid OA. dP sys dt OC. OB. dP sys=0 dt dP sys dt = OD. dP sys dt Constant =msysac =msysc = centre of mass
Consider the smooth vane shown which diverts the open stream of fluid of cross-sectional area A, mass density P, and velocity v. If the vane is moving at constant velocity and the velocity of the stream of fluid has the same velocity, which form of the linear momentum equation shown below is valid OA. dP sys dt OC. OB. dP sys=0 dt dP sys dt = OD. dP sys dt Constant =msysac =msysc = centre of mass
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Transcribed Image Text:Consider the smooth vane shown which diverts the open stream of fluid of cross-sectional area A, mass density p, and velocity v. If the
vane is moving at constant velocity and the velocity of the stream of fluid has the same velocity, which form of the linear momentum
equation shown below is valid
OA. dP sys
dt
O B.
dP sys
dt
O D.
oc. dP sys = m sys@G
dt
dP
= Constant
Psys
dt
=0
=msys VG
= centre of mass
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