In Exercises 5–8, assume that the radius r of a sphere is expanding at a rate of 30 cm/min. 4 Tr³ and its surface area is 4 r². Determine the given rate. 3 The volume of a sphere is V = Volume with respect to time when e 6. Volume with respect to time at t = 2 min, assuming that r = 0 at t = 0
In Exercises 5–8, assume that the radius r of a sphere is expanding at a rate of 30 cm/min. 4 Tr³ and its surface area is 4 r². Determine the given rate. 3 The volume of a sphere is V = Volume with respect to time when e 6. Volume with respect to time at t = 2 min, assuming that r = 0 at t = 0
Mathematics For Machine Technology
8th Edition
ISBN:9781337798310
Author:Peterson, John.
Publisher:Peterson, John.
Chapter63: Volumes Of Pyramids And Cones
Section: Chapter Questions
Problem 22A: Solve these exercises. Where necessary, round the answers to 2 decimal places unless otherwise...
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![In Exercises 5–8, assume that the radius r of a sphere is expanding at a rate of 30 cm/min.
4
The volume of a sphere is V
=
Tr³ and its surface area is 4 r². Determine the given rate.
3
spect to tim
6. Volume with respect to time at t = 2 min, assuming that r = = 0 at t = 0](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff24651e9-0a43-4fcf-8170-c5e34dc6dcab%2Fadac3abf-1934-4aa6-b6c4-1b6346ba4955%2F2nlonpn_processed.png&w=3840&q=75)
Transcribed Image Text:In Exercises 5–8, assume that the radius r of a sphere is expanding at a rate of 30 cm/min.
4
The volume of a sphere is V
=
Tr³ and its surface area is 4 r². Determine the given rate.
3
spect to tim
6. Volume with respect to time at t = 2 min, assuming that r = = 0 at t = 0
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