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Physics, 13.12.2019 18:31 meandmycousinmagic

Suppose a radioactive sample initially contains n0unstable nuclei. these nuclei will decay into stable nuclei, and as they do, the number of unstable nuclei that remain, n(t), will decrease with time. although there is no way for us to predict exactly when any one nucleus will decay, we can write down an expression for the total number of unstable nuclei that remain after a time t:

n(t)=n0e−λt,

where λ is known as the decay constant. note that at t=0, n(t)=n0, the original number of unstable nuclei. n(t) decreases exponentially with time, and as t approaches infinity, the number of unstable nuclei that remain approaches zero.

part (a) since at t=0, n(t)=n0, and at t=[infinity], n(t)=0, there must be some time between zero and infinity at which exactly half of the original number of nuclei remain. find an expression for this time, thalf. express your answer in terms of n0 and/or λ.
part (b) how many nuclei are left after a time 2thalf?

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