Elements Of Electromagnetics
Elements Of Electromagnetics
7th Edition
ISBN: 9780190698614
Author: Sadiku, Matthew N. O.
Publisher: Oxford University Press
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A jet impinges on a splitter block. The Incoming jet is horizontal and hasa flow rata of Q = 8000 cms anda cross-sactional area of A, = 40 cm?.
The block splits tha jat in to two amallarjets. Ona ls deflactad upward by 45°, and has a flow rate of 0: = 6000 cm/s anda cross-sectional araa of
A = 30 cm?. The other jat is deflacted downward by 45°, and has a flow rate of Q;= 2000 cm?/s and a cross-sectional area of Aa = 10 cm.
You may assuma that the pressure everywhere is aqual to atmospheric pressura, and the density of the fluld is 1000 kg/m2.
Find the horizontal momentum flux in, e
Q,= 6000 cm³/
A,= 30 cm²
Q,= 8000 cm³/s
e = 45°
e = 45°
A,= 40 cm²
Az= 10 cm²
Q3= 2000 cm³/s
. ON
b. 16N
O c.
-SN
d. -5.6 N
O. EN
-16 N
E 5.66N
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Transcribed Image Text:A jet impinges on a splitter block. The Incoming jet is horizontal and hasa flow rata of Q = 8000 cms anda cross-sactional area of A, = 40 cm?. The block splits tha jat in to two amallarjets. Ona ls deflactad upward by 45°, and has a flow rate of 0: = 6000 cm/s anda cross-sectional araa of A = 30 cm?. The other jat is deflacted downward by 45°, and has a flow rate of Q;= 2000 cm?/s and a cross-sectional area of Aa = 10 cm. You may assuma that the pressure everywhere is aqual to atmospheric pressura, and the density of the fluld is 1000 kg/m2. Find the horizontal momentum flux in, e Q,= 6000 cm³/ A,= 30 cm² Q,= 8000 cm³/s e = 45° e = 45° A,= 40 cm² Az= 10 cm² Q3= 2000 cm³/s . ON b. 16N O c. -SN d. -5.6 N O. EN -16 N E 5.66N
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