A. There is no head loss along an 'infinitely' long, perfectly smooth, uniform pipe. B. A pipe conveys water from one tank to another. If the diameter of the pipe is increased, the flowrate between the two tanks will increase. C. There is more flow separation in flow through an expansion than there is in flow through the equivalent contraction.

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

State whether statement is true or false

A. There is no head loss along an 'infinitely' long, perfectly smooth,
uniform pipe.
B. A pipe conveys water from one tank to another. If the diameter of
the pipe is increased, the flowrate between the two tanks will
increase.
C. There is more flow separation in flow through an expansion than
there is in flow through the equivalent contraction.
To answer the following two questions, note that the intake into a
pump is known as the 'suction' and the outlet is known as the
'discharge':
IMPELLER
IMPELLER EYE
SUCTION
VOLUTE
D. If the pipes at the suction and discharge of a pump have the same
diameters, the pressure in the discharge of a pump is the same as
that in the pump suction.
E. If the pipes at the suction and discharge of a pump have the same
diameters, the flowrate in the discharge of a pump is the same as
that in the pump suction.
Transcribed Image Text:A. There is no head loss along an 'infinitely' long, perfectly smooth, uniform pipe. B. A pipe conveys water from one tank to another. If the diameter of the pipe is increased, the flowrate between the two tanks will increase. C. There is more flow separation in flow through an expansion than there is in flow through the equivalent contraction. To answer the following two questions, note that the intake into a pump is known as the 'suction' and the outlet is known as the 'discharge': IMPELLER IMPELLER EYE SUCTION VOLUTE D. If the pipes at the suction and discharge of a pump have the same diameters, the pressure in the discharge of a pump is the same as that in the pump suction. E. If the pipes at the suction and discharge of a pump have the same diameters, the flowrate in the discharge of a pump is the same as that in the pump suction.
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