*10. mmh A stream of water strikes a Stationary turbine "0 = +16.0 m/s stationary turbine blade horizontally, as the drawing illustrates. The inci- dent water stream has a velocity of +16.0 m/s, while the exiting water stream has a velocity of – 16.0 m/s. The mass of water per second that strikes the blade is 30.0 kg/s. Find the magnitude of the average force exerted on the water by the blade. blade Uf = -16.0 m/s

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Chapter8: Linear Momentum And Collisions
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*10. mmh A stream of water strikes a
Stationary
turbine
"0 = +16.0 m/s
stationary turbine blade horizontally,
as the drawing illustrates. The inci-
dent water stream has a velocity of
+16.0 m/s, while the exiting water
stream has a velocity of – 16.0 m/s.
The mass of water per second that
strikes the blade is 30.0 kg/s. Find
the magnitude of the average force exerted on the water by the blade.
blade
Uf = -16.0 m/s
Transcribed Image Text:*10. mmh A stream of water strikes a Stationary turbine "0 = +16.0 m/s stationary turbine blade horizontally, as the drawing illustrates. The inci- dent water stream has a velocity of +16.0 m/s, while the exiting water stream has a velocity of – 16.0 m/s. The mass of water per second that strikes the blade is 30.0 kg/s. Find the magnitude of the average force exerted on the water by the blade. blade Uf = -16.0 m/s
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