(g) Using the exponential model that you determined in part (d), calculate the average annual percentage decrease in the mass of the radioactive substance.

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Do g
74
mo Va
(d) Determine the equation of the exponential model in the form m(t) = axb' where a and bare
constants
(e) Using your equation from (d) Calculate the mass remaining after 100 years of decay
20.0610 aso)
= 0.12
magg
mit axe
⇒min -20.80610.431 ²
t
miled
100
(g) Using the exponential model that you determined in part (d), calculate the average annual
percentage decrease in the mass of the radioactive substance.
Transcribed Image Text:74 mo Va (d) Determine the equation of the exponential model in the form m(t) = axb' where a and bare constants (e) Using your equation from (d) Calculate the mass remaining after 100 years of decay 20.0610 aso) = 0.12 magg mit axe ⇒min -20.80610.431 ² t miled 100 (g) Using the exponential model that you determined in part (d), calculate the average annual percentage decrease in the mass of the radioactive substance.
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