Water flows through a circular nozzle, exits into the air as a jet, and strikes a plate. The force required to hold the plate steady is 30 N. Assuming frictionless one dimensional flow, estimate the velocity of the water jet at (2) (V2=?). Assume water density is 998 kg/m3. D; = 10 cm (1) D2 = 3 cm Water at 20°C (2) Air V2=10.65 m/s V2=14.09 m/s V2=16.41 m/s V2=6.52 m/s

Elements Of Electromagnetics
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Water flows through a circular nozzle, exits into the air as a jet, and strikes a plate. The force required to hold the plate steady is 30 N. Assuming frictionless one
dimensional flow, estimate the velocity of the water jet at (2) (V2=?).
Assume water density is 998 kg/m3.
D = 10 cm
(1)
D, = 3 cm
F
Water at 20°C
(2)
Air
V2=10.65 m/s
V2=14.09 m/s
V2=16.41 m/s
V2=6.52 m/s
Transcribed Image Text:Water flows through a circular nozzle, exits into the air as a jet, and strikes a plate. The force required to hold the plate steady is 30 N. Assuming frictionless one dimensional flow, estimate the velocity of the water jet at (2) (V2=?). Assume water density is 998 kg/m3. D = 10 cm (1) D, = 3 cm F Water at 20°C (2) Air V2=10.65 m/s V2=14.09 m/s V2=16.41 m/s V2=6.52 m/s
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