1. Consider a rectangular tank that is standing on its square base of length 4 meters and a height of 6 meters. Using 9.8m/s² for the acceleration due to gravity and 1, 000kg/m³ as the density of water, set up the integral for the work required to pump the water out of the tank if the tank is half full of water. O O A. W 1000-9.8 O B. W 1000-9.8. OC. None of these. O D. W 1000-9.8 E. W 1000-9.8. S. S 16(6-y) dy 16y dy 6.².₁ 160 16(6y) dy 16(6-y) dy

Elementary Geometry For College Students, 7e
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ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
Chapter9: Surfaces And Solids
Section9.CR: Review Exercises
Problem 13CR: The radius length of the base of a right circular cylinder is 6 in. The height of the cylinder is 10...
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1. Consider a rectangular tank that is standing on its square base of length 4 meters and a height of 6 meters. Using 9.8m/s² for the acceleration due to gravity and 1,000kg/m³ as the density of
water, set up the integral for the work required to pump the water out of the tank if the tank is half full of water.
O
O
A. W 1000-9.8
O
B. W 1000 9.8.
OC. None of these
O
S
D. W 1000-9.8-
E. W 1000-9.8-
160
16(6-y) dy
S²₁
1010
16y dy
16(6-y) dy
16(6- y) dy
Transcribed Image Text:1. Consider a rectangular tank that is standing on its square base of length 4 meters and a height of 6 meters. Using 9.8m/s² for the acceleration due to gravity and 1,000kg/m³ as the density of water, set up the integral for the work required to pump the water out of the tank if the tank is half full of water. O O A. W 1000-9.8 O B. W 1000 9.8. OC. None of these O S D. W 1000-9.8- E. W 1000-9.8- 160 16(6-y) dy S²₁ 1010 16y dy 16(6-y) dy 16(6- y) dy
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