Answer:
a.0.25 g
b.0.16 g
Explanation:
We are given that
Half-life of the element radon=3.8 days
Mass of sample of radon=1 g
The amount of radon left after t days is given by
![A(t)=(0.5)^{(t)/(3.8)}](https://img.qammunity.org/2022/formulas/mathematics/high-school/h9hrh3kfb92l5db0dbcho4s6topa4nql34.png)
a.
We have to find the amount of radon left after 7.6 days.
Substitute t=7.6 in the equation
Then, we get
![A(7.6)=(0.5)^{(7.6)/(3.8)}](https://img.qammunity.org/2022/formulas/mathematics/high-school/ijdmgm0t1mwmfrgzq8s3nd8zjyfl9cvq9k.png)
![A(7.6)=0.25 g](https://img.qammunity.org/2022/formulas/mathematics/high-school/uexzcfh7hfucjkr2l94q3fei9sqq1fiao1.png)
Hence, the amount of radon will be present after 7.6 days=0.25 g
b. We have to find the amount of radon left after 10 days.
Substitute t=10 in the equation
Then, we get
![A(10)=(0.5)^{(10)/(3.8)}](https://img.qammunity.org/2022/formulas/mathematics/high-school/caqja4l97bm51moa1h9wgqrj6cyi3zprmu.png)
![A(10)=0.16g](https://img.qammunity.org/2022/formulas/mathematics/high-school/d5hklq957nsfpmshet6rzdivk5duzn6k9k.png)
Hence, the amount of radon will be present after 10 days=0.16 g