Jee Main
Gravitation
JEE Main 2024 (Online) 5th April Morning Shift
Match List I with List II :
.tg {border-collapse:collapse;border-spacing:0;}
.tg td{border-color:black;border-style:solid;border-width:1px;font-family:Arial, sans-serif;font-size:14px;
overflow:hidden;padding:10px 5px;word-break:normal;}
.tg th{border-color:black;border-style:solid;border-width:1px;font-family:Arial, sans-serif;font-size:14px;
font-weight:normal;overflow:hidden;padding:10px 5px;word-break:normal;}
.tg .tg-c3ow{border-color:inherit;text-align:center;vertical-align:top}
.tg .tg-7btt{border-color:inherit;font-weight:bold;text-align:center;vertical-align:top}
.tg .tg-0pky{border-color:inherit;text-align:left;vertical-align:top}
| LIST I | LIST II | ||
|---|---|---|---|
| A. | Kinetic energy of planet | I. | \( -\mathrm{GMm} / \mathrm{a} \) |
| B. | Gravitation Potential energy of sun-planet system | II. | \( \mathrm{GMm} / 2 \mathrm{a} \) |
| C. | Total mechanical energy of planet | III. | \( \frac{\mathrm{Gm}}{\mathrm{r}} \) |
| D. | Escape energy at the surface of planet for unit mass object | IV. | \( -\mathrm{GMm} / 2 \mathrm{a} \) |
(Where \(\mathrm{a}=\) radius of planet orbit, \(\mathrm{r}=\) radius of planet, \(\mathrm{M}=\) mass of Sun, \(\mathrm{m}=\) mass of planet)
Choose the correct answer from the options given below :
