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. OA. None of these B. W 1000 9.8 c. W D. W E. W 1000-9.8 1000-9.8 1000-9.8 S.. T 16y dy 16(6-y) dy 16(6-y) dy 16(6-y) dy preview answer

Elementary Geometry For College Students, 7e
7th Edition
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 14CR: a For the through in the shape of half-cylinder, find the volume of water it will hold Use 3.14 and...
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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.
OA. None of these.
B. W 1000 9.8
c. W
D. W
E. W
1000 9.8
S..
1000-9.8.
1000-9.8
T
16y dy
16(6-y) dy
16(6-y) dy
16(6-y) dy
preview answer
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. OA. None of these. B. W 1000 9.8 c. W D. W E. W 1000 9.8 S.. 1000-9.8. 1000-9.8 T 16y dy 16(6-y) dy 16(6-y) dy 16(6-y) dy preview answer
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