TS EAMCET · Physics · Gravitation
In planetary motion the areal velocity of position vector of a planet depends on angular velocity \(\omega\) and the distance of the planet from sun \(r\). The correct relation for areal velocity is
- A \(\frac{d A}{d t} \propto \omega r\)
- B \(\frac{d A}{d t} \propto \omega^2 r\)
- C \(\frac{d A}{d t} \propto \omega r^2\)
- D \(\frac{d A}{d t} \propto \sqrt{\omega r}\)
Answer & Solution
Correct Answer
(C) \(\frac{d A}{d t} \propto \omega r^2\)
Step-by-step Solution
Detailed explanation
Areal velocity \(\frac{d A}{d t}\) depends on angular velocity \((\omega)\) and distance of the planet from sun. \(\frac{d A}{d t} \propto w^a r^b \Rightarrow \frac{d A}{d t}=K \omega^a r^b\) Writing the dimensional formula on both sides,…
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