Problem Statement: A flow of water passes through a pipe and out of a nozzle as shown in the figure. The pipe has diameter d = diameter is d2= 3.7 cm. A manometer 6.8(cm], the nozzle placed in the free jet as shown has a reading of h2 = 3.8(cm]. Answer the following: |3D
Problem Statement: A flow of water passes through a pipe and out of a nozzle as shown in the figure. The pipe has diameter d = diameter is d2= 3.7 cm. A manometer 6.8(cm], the nozzle placed in the free jet as shown has a reading of h2 = 3.8(cm]. Answer the following: |3D
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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![Problem Statement:
A flow of water passes through a pipe and
out of a nozzle as shown in the figure. The
pipe has diameter di = 6.8[cm], the nozzle
diameter is d2
3.7(cm]. A manometer
h2.
placed in the free jet as shown has a reading
of h2
3.8(cm). Answer the following:
Free
d1
d2
Find the height h1 of the first manometer.
ст
Find the velocity of the liquid exiting the nozzle at (2).
m/s
Find the velocity of the liquid in the pipe at (1).
m/s
Find the pressure in the pipe at (1).
kPa](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe2ca40f7-a335-4ed3-b9a4-e2685a39b45e%2F389b58f7-adbf-4b2a-be7c-3f852d5aa413%2Fc0jssmj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem Statement:
A flow of water passes through a pipe and
out of a nozzle as shown in the figure. The
pipe has diameter di = 6.8[cm], the nozzle
diameter is d2
3.7(cm]. A manometer
h2.
placed in the free jet as shown has a reading
of h2
3.8(cm). Answer the following:
Free
d1
d2
Find the height h1 of the first manometer.
ст
Find the velocity of the liquid exiting the nozzle at (2).
m/s
Find the velocity of the liquid in the pipe at (1).
m/s
Find the pressure in the pipe at (1).
kPa
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