MHT CET · Physics · Gravitation
Two particles of masses \(m\) and \(9 m\) are separated by a distance \(r\). At a point on the line joining them, the gravitational field is zero. The gravitation potential at that point is (\(G=\) Universal constant of gravitation)
- A
- B
- C
- D
Answer & Solution
Correct Answer
(C)
Step-by-step Solution
Detailed explanation
For the system described above
\(F=0, \frac{G m}{r_1^2}=\frac{G(9 m)}{r_2^2} \Rightarrow \frac{r_2}{r_1}=3\)
\(r_2=\frac{3}{4} r\) and \(r _1=\frac{1}{4} r\)
\(V=-\frac{G m}{r_1}-\frac{G(9 m)}{r_2}\)
\(V=-\frac{G m}{r_1}-\frac{G(9 m)}{r_2}\)
\(=-\frac{4 G m}{r}-12 \frac{G m}{r}=-\frac{16 G m}{r}\)
\(F=0, \frac{G m}{r_1^2}=\frac{G(9 m)}{r_2^2} \Rightarrow \frac{r_2}{r_1}=3\)
\(r_2=\frac{3}{4} r\) and \(r _1=\frac{1}{4} r\)
\(V=-\frac{G m}{r_1}-\frac{G(9 m)}{r_2}\)
\(V=-\frac{G m}{r_1}-\frac{G(9 m)}{r_2}\)
\(=-\frac{4 G m}{r}-12 \frac{G m}{r}=-\frac{16 G m}{r}\)
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