A spherical balloon is being inflated at a constant rate, such that the volume of the balloon changes from 367 in³ to 972n in³ between time t = 30 and t = 90 seconds. a) If you had an expression for dr ", the rate of change of the radius with respect to time, how would you calculate the net change in the radius during that interval? (Hint: consult the Net Change Theorem.) b) Alas, you do not have such expression! Still, you can find the net change in the radius of the balloon during that time. Hint: what does “net change" mean? Find its value.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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A spherical balloon is being inflated at a constant rate, such that the volume of the balloon
changes from 36n in³ to 972n in³ between time t = 30 and t = 90 seconds.
dr
a) If you had an expression for
dt'
the rate of change of the radius with respect to time, how would
calculate the net change in the radius during that interval? (Hint: consult the Net Change
you
Theorem.)
b) Alas, you do not have such expression! Still, you can find the net change in the radius of the
balloon during that time. Hint: what does “net change" mean? Find its value.
Transcribed Image Text:A spherical balloon is being inflated at a constant rate, such that the volume of the balloon changes from 36n in³ to 972n in³ between time t = 30 and t = 90 seconds. dr a) If you had an expression for dt' the rate of change of the radius with respect to time, how would calculate the net change in the radius during that interval? (Hint: consult the Net Change you Theorem.) b) Alas, you do not have such expression! Still, you can find the net change in the radius of the balloon during that time. Hint: what does “net change" mean? Find its value.
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