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{"ops":[{"insert":"A Pelton wheel of 1.2 m mean bucket diameter works under a head of 650 m. The jet deflection"},{"attributes":{"header":1},"insert":"\n"},{"insert":"is 1650 and its relative velocity is reduced over the buckets by 15% due to friction. If the water is"},{"attributes":{"header":1},"insert":"\n"},{"insert":"to leave the bucket without whirl, determine the rotational speed of the wheel. The coefficient of"},{"attributes":{"header":1},"insert":"\n"},{"insert":"velocity is C, 50.98"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(a) 786.38 rpm"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(b) 1425.36 rpm"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(c) 320.2 rpm"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(d) 480.6 rpm"},{"attributes":{"header":1},"insert":"\n\n"},{"insert":"In the above problem, the ratio of bucket to jet speed can be calculated as"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(a) 0.1"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(b) 1.5"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(c) 0.45"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(d) 2.52"},{"attributes":{"header":1},"insert":"\n\n"},{"insert":"In the above problem, for a jet diameter of 100 cm, the impulsive force on a bucket of the Pelton"},{"attributes":{"header":1},"insert":"\n"},{"insert":"wheel can be calculated as"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(a) 12.26 kN"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(b)"},{"attributes":{"header":1},"insert":"\n"},{"insert":"62.36 kN"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(c) 32.36 kN"},{"attributes":{"header":1},"insert":"\n"},{"insert":"(d) 94.26 kN"},{"attributes":{"header":1},"insert":"\n"},{"insert":"\n"}]}
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