Answer:
a)
, b)
![\rho_(sph) = 4897.795\,(kg)/(m^(3))](https://img.qammunity.org/2021/formulas/physics/college/ksfy04y9tobzc26rrkduxm3j7t6gjg6b5p.png)
Step-by-step explanation:
According to the Archimedes' Principle, the buoyancy force is equal the weight of the displaced fluid. Then, this equation of equilibrium is constructed by the Newton's Laws:
![\Sigma F = \rho_(w)\cdot V_(disp)\cdot g -\rho_(sph)\cdot V_(sph)\cdot g = 0](https://img.qammunity.org/2021/formulas/physics/college/fn1wd6035jzjcet9r0vyjvazzdufrx6jrw.png)
After some algebraic handling:
![\rho_(w)\cdot V_(disp) = \rho_(sph)\cdot V_(sph)](https://img.qammunity.org/2021/formulas/physics/college/loav6lip1ntxnhtoam63kaa0gw1vc7xs54.png)
a) The mass of the sphere is:
![m_(sph) = \rho_(w)\cdot V_(disp)](https://img.qammunity.org/2021/formulas/physics/college/3lfqh7f2m7x5h8m250rtbjj2glvvtztx7y.png)
![m_(sph) = (927\,(kg)/(m^(3)) )\cdot \left[(4)/(3)\pi\cdot (0.099\,m)^(3) \right]](https://img.qammunity.org/2021/formulas/physics/college/3nyo1vfrs02ngpo4je4swhbge3lr6u6z2b.png)
![m_(sph) = 3.768\,kg](https://img.qammunity.org/2021/formulas/physics/college/4n94igilraosulp2p70x2106pbfje63d3f.png)
b) The density of the sphere is:
![\rho_(sph) = (m_(sph))/(V_(sph))](https://img.qammunity.org/2021/formulas/physics/college/8yhz6lkb6rtoex6dkkxd15apo34yaokew6.png)
![\rho_(sph) = (3.768\,kg)/((4)/(3)\pi\cdot [(0.099\,m)^(3)-(0.087\,m)^(3)])](https://img.qammunity.org/2021/formulas/physics/college/ye7bq0a7akncpl25yln97nuvjv75dosiuo.png)
![\rho_(sph) = 4897.795\,(kg)/(m^(3))](https://img.qammunity.org/2021/formulas/physics/college/ksfy04y9tobzc26rrkduxm3j7t6gjg6b5p.png)