19. A cylindrical aquarium tank has a radius of 10 meters and a depth of 2 meters, and is filled with water. Assume that the density of the water is 1000 kg/m³ and that the acceleration due to gravity is g = 10 m/s². Calculate precisely the work energy, in joules, needed to pump all of the water out of the tank.

Mathematics For Machine Technology
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Chapter65: Achievement Review—section Six
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Problem 42AR: Solve these prism and cylinder exercises. Where necessary, round the answers to 2 decimal places...
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19. A cylindrical aquarium tank has a radius of 10 meters and a depth of 2 meters, and
is filled with water. Assume that the density of the water is 1000 kg/m³ and that the
acceleration due to gravity is g = 10 m/s². Calculate precisely the work energy, in
joules, needed to pump all of the water out of the tank.
Transcribed Image Text:19. A cylindrical aquarium tank has a radius of 10 meters and a depth of 2 meters, and is filled with water. Assume that the density of the water is 1000 kg/m³ and that the acceleration due to gravity is g = 10 m/s². Calculate precisely the work energy, in joules, needed to pump all of the water out of the tank.
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