The flow rate of the water entering the nozzle in the figure is 0.10 m/s and...
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The flow rate of the water entering the nozzle in the figure is 0.10 m³/s and it discharges into the atmosphere from the end of the nozzle at an angle of 30° with the horizontal. The effective pressure in the flange region of the nozzle was measured as 50 kPa. The weight of the bowl is 200 N and the volume of water in the pipe is 12 liters. Calculate the force that will hold the nozzle in place. Take the relative density of water as 1. Nozul P = 50 kPa 0.10 m³/s 18 30⁰ A1 = 0.01 m² A2 = 0.02 m² The flow rate of the water entering the nozzle in the figure is 0.10 m³/s and it discharges into the atmosphere from the end of the nozzle at an angle of 30° with the horizontal. The effective pressure in the flange region of the nozzle was measured as 50 kPa. The weight of the bowl is 200 N and the volume of water in the pipe is 12 liters. Calculate the force that will hold the nozzle in place. Take the relative density of water as 1. Nozul P = 50 kPa 0.10 m³/s 18 30⁰ A1 = 0.01 m² A2 = 0.02 m²
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