4. Now let's write the above model for radioactive decay as an exponential rate of change. Define m' (t)= -e-t/10, t≥ 0. mo 10 (a) Write the general form of the Net Change Theorem, and provide an interpretation of this general result. (b) Suppose the initial mass is mo = 20 grams. Use the Net Change Theorem to determine m (4), the mass after 4 hours.
4. Now let's write the above model for radioactive decay as an exponential rate of change. Define m' (t)= -e-t/10, t≥ 0. mo 10 (a) Write the general form of the Net Change Theorem, and provide an interpretation of this general result. (b) Suppose the initial mass is mo = 20 grams. Use the Net Change Theorem to determine m (4), the mass after 4 hours.
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
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Chapter1: Functions And Models
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![4. Now let's write the above model for radioactive decay as an exponential rate of change. Define
m' (t) =
mo-t/10
10
2
t≥ 0.
(a) Write the general form of the Net Change Theorem, and provide an interpretation of this general result.
(b) Suppose the initial mass is mo 20 grams. Use the Net Change Theorem to determine m (4), the mass
after 4 hours.
=](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6484a2ba-7b6c-4144-bd9b-1f2d784a131b%2Feb9e38aa-1a8c-4909-92f6-8de9b9a06ca6%2Fehrrlpv_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4. Now let's write the above model for radioactive decay as an exponential rate of change. Define
m' (t) =
mo-t/10
10
2
t≥ 0.
(a) Write the general form of the Net Change Theorem, and provide an interpretation of this general result.
(b) Suppose the initial mass is mo 20 grams. Use the Net Change Theorem to determine m (4), the mass
after 4 hours.
=
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