Answer:
1.6 x 10^21 N
Step-by-step explanation:
The gravitational force can be calculated as
![F=G(M_1\cdot M_2)/(r^2)](https://img.qammunity.org/2023/formulas/physics/college/1xfdi0zsgti9zfgtmntcjq4vz2jzpliqax.png)
Where G = 6.674 x 10^(-11) m³/kg s². M1 and M2 are the mass and r is the distance between the objects. So, first, we need to convert 143.82 million miles to meters as
![143.82*10^6\text{ miles}*\frac{1609\text{ m}}{1\text{ mile}}=2.31*10^(11)m](https://img.qammunity.org/2023/formulas/physics/college/rdrfcr766o4gebd3t4zkwgu5rziabcsp9t.png)
Then, we can replace M1 = 1.99 x 10^30 kg, M2 = 6.42 x 10^23 kg, and r = 2.31 x 10^11 m to get
![\begin{gathered} F=(6.674*10^(-11))((1.99*10^(30))(6.42*10^(23)))/((2.31*10^(11))) \\ \\ F=1.6*10^(21)\text{ N} \end{gathered}](https://img.qammunity.org/2023/formulas/physics/college/4r80fsvt1sm3etpud2naeos1g3es4jzyfr.png)
Therefore, the gravitational force is 1.6 x 10^21 N