6.50 Water flows through this nozzle at a rate of 15 cfs and dis- charges into the atmosphere. D₁ = 12 in. and D₂ = 9 in. Deter- mine the force required at the flange to hold the nozzle in place. Assume irrotational flow. Neglect gravitational forces. 6.51 Solve Prob. 6.50 using the following values: Q = 0.30 m³/s, D₁ = 30 cm, and D₂ = 10 cm. 6.52 This "double" nozzle discharges water into the atmosphere at a rate of 16 cfs. If the nozzle is lying in a horizontal plane, what (2) PROBLEMS 6.50, 6.51 D2

Structural Analysis
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ISBN:9781337630931
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Chapter2: Loads On Structures
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6.51

6.50 Water flows through this nozzle at a rate of 15 cfs and dis-
charges into the atmosphere. D₁ = 12 in. and D₂ = 9 in. Deter-
mine the force required at the flange to hold the nozzle in place.
Assume irrotational flow. Neglect gravitational forces.
6.51 Solve Prob. 6.50 using the following values: Q = 0.30 m³/s,
D₁ = 30 cm, and D₂ = 10 cm.
6.52 This "double" nozzle discharges water into the atmosphere
at a rate of 16 cfs. If the nozzle is lying in a horizontal plane, what
Transcribed Image Text:6.50 Water flows through this nozzle at a rate of 15 cfs and dis- charges into the atmosphere. D₁ = 12 in. and D₂ = 9 in. Deter- mine the force required at the flange to hold the nozzle in place. Assume irrotational flow. Neglect gravitational forces. 6.51 Solve Prob. 6.50 using the following values: Q = 0.30 m³/s, D₁ = 30 cm, and D₂ = 10 cm. 6.52 This "double" nozzle discharges water into the atmosphere at a rate of 16 cfs. If the nozzle is lying in a horizontal plane, what
(2)
PROBLEMS 6.50, 6.51
D2
Transcribed Image Text:(2) PROBLEMS 6.50, 6.51 D2
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