A tumor is injected with 0.5 grams of lodine-125, which has a decay rate of 1.15% per day. Write an exponential model representing the amount of lodine-125 remaining in the tumor after t days. Then use the formula to find the amount of lodine-125 that would remain in the tumor after 60 days. Enter the exact answer Enclose arguments of functions in parentheses and include a multiplication sign between terms. For example, e log (h).

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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A tumor is injected with 0.5 grams of lodine-125, which has a decay rate of 1.15% per day. Write an exponential model
representing the amount of lodine-125 remaining in the tumor after t days. Then use the formula to find the amount of lodine-125
that would remain in the tumor after 60 days.
Enter the exact answer
Enclose arguments of functions in parentheses and include a multiplication sign between terms. For example, elog (h).
A (t)=
sin (a)
Round your answer to one decimal place.
There will be Number grams of lodine-125 after 60 days.
Transcribed Image Text:A tumor is injected with 0.5 grams of lodine-125, which has a decay rate of 1.15% per day. Write an exponential model representing the amount of lodine-125 remaining in the tumor after t days. Then use the formula to find the amount of lodine-125 that would remain in the tumor after 60 days. Enter the exact answer Enclose arguments of functions in parentheses and include a multiplication sign between terms. For example, elog (h). A (t)= sin (a) Round your answer to one decimal place. There will be Number grams of lodine-125 after 60 days.
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