Consider a hemispherical tank that is completely filled with water. The water exits the tank from the spout as shown. If R = 5 m, and L = 2 m, calculate the work in megajoules (1 MJ = 1 × 10° J) required to pump all water out of the tank. The density of water is 1000 kg/m³, and g = 9.8 m/s². (Use decimal notation. Give your answer to three decimal places.)

Mathematics For Machine Technology
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Chapter65: Achievement Review—section Six
Section: Chapter Questions
Problem 43AR: Solve these prism and cylinder exercises. Where necessary, round the answers to 2 decimal places...
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Consider a hemispherical tank that is completely filled with water. The water exits the tank from the spout as shown.
R
If R = 5 m, and L = 2 m, calculate the work in megajoules ( 1 MJ = 1 × 10° J) required to pump all water out of the tank. The
density of water is 1000 kg/m', and g
9.8 m/s?.
(Use decimal notation. Give your answer to three decimal places.)
17978
work:
MJ
Incorrect
Transcribed Image Text:Consider a hemispherical tank that is completely filled with water. The water exits the tank from the spout as shown. R If R = 5 m, and L = 2 m, calculate the work in megajoules ( 1 MJ = 1 × 10° J) required to pump all water out of the tank. The density of water is 1000 kg/m', and g 9.8 m/s?. (Use decimal notation. Give your answer to three decimal places.) 17978 work: MJ Incorrect
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