Two containers designed to hold water are side by side, both in the shape of a cylinder. Container A has a diameter of 12 feet and a height of 10 feet. Container B has a diameter of 8 feet and a height of 17 feet. Container A is full of water and the water is pumped into Container B until Containter B is completely full. After the pumping is complete, what is the volume of the empty space inside Container A, to the nearest tenth of a cubic foot?

Mathematics For Machine Technology
8th Edition
ISBN:9781337798310
Author:Peterson, John.
Publisher:Peterson, John.
Chapter63: Volumes Of Pyramids And Cones
Section: Chapter Questions
Problem 34A
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Two containers designed to hold water are
side by side, both in the shape of a
cylinder. Container A has a diameter of 12
feet and a height of 10 feet. Container B
has a diameter of 8 feet and a height of 17
feet. Container A is full of water and the
water is pumped into Container B until
Containter B is completely full.
After the pumping is complete, what is the
volume of the empty space inside
Container A, to the nearest tenth of a
cubic foot?
Container A
play
Container B
d = 8
d = 12
h = 17
h = 10
Transcribed Image Text:Two containers designed to hold water are side by side, both in the shape of a cylinder. Container A has a diameter of 12 feet and a height of 10 feet. Container B has a diameter of 8 feet and a height of 17 feet. Container A is full of water and the water is pumped into Container B until Containter B is completely full. After the pumping is complete, what is the volume of the empty space inside Container A, to the nearest tenth of a cubic foot? Container A play Container B d = 8 d = 12 h = 17 h = 10
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