217. A 20C water jet leaves the nozzle shown in Fig. P4.217 with velocity V =...
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217. A 20C water jet leaves the nozzle shown in Fig. P4.217 with velocity V = 3.0 m/s through area A, = 0.125 m. The jet is directed downward against the wedge of weight W = 100 N. The wedge deflects the jet stream equally to the right and to the left and is long enough (perpendicular to the page) that end effects are negligible. The water density is constant. Write the linear momentum equation for the control volume shown to find the force F for 5 = 1.0 m. Neglect the weight of any water in the control volume and change in the height of the water as it flows through the control volume. I 10 Ao V An W A = 0.50 AM tan 8 = 0.50 h 217. A 20C water jet leaves the nozzle shown in Fig. P4.217 with velocity V = 3.0 m/s through area A, = 0.125 m. The jet is directed downward against the wedge of weight W = 100 N. The wedge deflects the jet stream equally to the right and to the left and is long enough (perpendicular to the page) that end effects are negligible. The water density is constant. Write the linear momentum equation for the control volume shown to find the force F for 5 = 1.0 m. Neglect the weight of any water in the control volume and change in the height of the water as it flows through the control volume. I 10 Ao V An W A = 0.50 AM tan 8 = 0.50 h 217. A 20C water jet leaves the nozzle shown in Fig. P4.217 with velocity V = 3.0 m/s through area A, = 0.125 m. The jet is directed downward against the wedge of weight W = 100 N. The wedge deflects the jet stream equally to the right and to the left and is long enough (perpendicular to the page) that end effects are negligible. The water density is constant. Write the linear momentum equation for the control volume shown to find the force F for 5 = 1.0 m. Neglect the weight of any water in the control volume and change in the height of the water as it flows through the control volume. I 10 Ao V An W A = 0.50 AM tan 8 = 0.50 h 217. A 20C water jet leaves the nozzle shown in Fig. P4.217 with velocity V = 3.0 m/s through area A, = 0.125 m. The jet is directed downward against the wedge of weight W = 100 N. The wedge deflects the jet stream equally to the right and to the left and is long enough (perpendicular to the page) that end effects are negligible. The water density is constant. Write the linear momentum equation for the control volume shown to find the force F for 5 = 1.0 m. Neglect the weight of any water in the control volume and change in the height of the water as it flows through the control volume. I 10 Ao V An W A = 0.50 AM tan 8 = 0.50 h
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Thermodynamics An Interactive Approach
ISBN: 978-0130351173
1st edition
Authors: Subrata Bhattacharjee
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