Question: (a) Derive an expression for the height h at which the weight W is supported by the jet of water. (b) Determine h if the

(a) Derive an expression for the height h at which the weight W is supported by the jet of water. (b) Determine h if the mass is 10kg The height of its nozzle is h = 2.2m. The pipe diameter is d=75mm, and the friction factor of the pipe is f-0.019. Question B1 H=20M 2 2 u and v are related by v =U -29s Impact velocity Exit velocity u Nozzle diameter d =45mm Pipe d=75mm f=0.019 Total length L-50m
 (a) Derive an expression for the height h at which the
weight W is supported by the jet of water. (b) Determine h

(a) Derive an expression for the height h at which the weight W is supported by the jet of water. (b) Determine h if the mass is 10kg The height of its nozzle is hw=2.2m. The pipe diameter is d=75mm, and the friction factor of the pipe is f=0.019. Question B1 (a) Derive an expression for the height h at which the weight W is supported by the jet of water. (b) Determine h if the mass is 10kg The height of its nozzle is hw=2.2m. The pipe diameter is d=75mm, and the friction factor of the pipe is f=0.019. Question B1 (a) Derive an expression for the height h at which the weight W is supported by the jet of water. (b) Determine h if the mass is 10kg The height of its nozzle is hw=2.2m. The pipe diameter is d=75mm, and the friction factor of the pipe is f=0.019. Question B1 (a) Derive an expression for the height h at which the weight W is supported by the jet of water. (b) Determine h if the mass is 10kg The height of its nozzle is hw=2.2m. The pipe diameter is d=75mm, and the friction factor of the pipe is f=0.019. Question B1

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