Answer: The mass of the second sphere is 8.76 kg
Step-by-step explanation:
The equation for a perfectly inelastic collision follows:
where,
are the mass and initial velocity of first sphere
are the mass and initial velocity of second sphere
v = final velocity of the system
We are given:
![m_1=4.38kg\\u_2=0m/s\\v=(u_1)/(3)](https://img.qammunity.org/2022/formulas/physics/college/grc2h3eo6t5rorgkl16cew4tw93gnzaw5c.png)
Rearranging the above equation, we get:
![m_1u_1-m_1v=m_2v\\\\m_2=m_1(u_1-v)/(v)\\\\m_2=m_1((u_1)/(v)-1)](https://img.qammunity.org/2022/formulas/physics/college/r4bbri2rh105taxg69dq2cb1g0ob9q2ai3.png)
Plugging values in the above equation, we get:
![m_2=4.38((3u_1)/(u_1)-1)\\\\m_2=(4.38* 2)=8.76kg](https://img.qammunity.org/2022/formulas/physics/college/js5h67zzxyhststem83qmtk6s9pxmg7v7c.png)
Hence, the mass of the second sphere is 8.76 kg