6.61 Water (at 50°F) flows through this nozzle at a rate of 15 and discharges into the atmosphere. D Determine the force required at the flange to hold the nozzle place. Assume irrotational flow. Neglect gravitational forces. 6.62 Solve Prob. 6.61 using the following values: Q=0.30 m D=30 cm, and D,= 10 cm. (p 1000 kg/m) , = 12 in., and D, =9 %23

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Answer 6.61
we-
PROBLEMS 6.58, 6.59, 6.60
6.61 Water (at 50 F) flows through this nozzle at a rate of 15 cfs
the
and discharges into the atmosphere. D
Determine the force required at the flange to hold the nozzle in
ss-
12 in., and D, =9 in.
place. Assume irrotational flow. Neglect gravitational forces.
6.62 Solve Prob. 6.61 using the following values: ) =0.30 m/s,
D=30 cm, and D,
10 cm. (p 1000 kg/m)
m.
nal
de-
In-
a on
PROBLEMS 6.61, 6,62
pli-
6.63 This "double" nozzle discharges water (p 62.4 lbm/ft')
hring
Transcribed Image Text:we- PROBLEMS 6.58, 6.59, 6.60 6.61 Water (at 50 F) flows through this nozzle at a rate of 15 cfs the and discharges into the atmosphere. D Determine the force required at the flange to hold the nozzle in ss- 12 in., and D, =9 in. place. Assume irrotational flow. Neglect gravitational forces. 6.62 Solve Prob. 6.61 using the following values: ) =0.30 m/s, D=30 cm, and D, 10 cm. (p 1000 kg/m) m. nal de- In- a on PROBLEMS 6.61, 6,62 pli- 6.63 This "double" nozzle discharges water (p 62.4 lbm/ft') hring
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