A water jet of velocity 4.2 m/s and a cross-sectional area of 0.50 m2 strikes a curved vane, as shown above. 75% of the flow exits at the top and the remaining 25% from the bottom. The flow velocity...


A water jet of velocity 4.2 m/s and a cross-sectional area of 0.50 m2 strikes a<br>curved vane, as shown above. 75% of the flow exits at the top and the remaining<br>25% from the bottom. The flow velocity in each exit stream has the same magnitude<br>as the flow entering. The vane is stationary. The vane deflects the jet through an<br>angle e of 54°, Determine the reaction forces Fy and Fy. Enter your answers in the<br>order shown to two decimal places in units of kN.<br>

Extracted text: A water jet of velocity 4.2 m/s and a cross-sectional area of 0.50 m2 strikes a curved vane, as shown above. 75% of the flow exits at the top and the remaining 25% from the bottom. The flow velocity in each exit stream has the same magnitude as the flow entering. The vane is stationary. The vane deflects the jet through an angle e of 54°, Determine the reaction forces Fy and Fy. Enter your answers in the order shown to two decimal places in units of kN.

Jun 10, 2022
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