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A centripetal force of 185 N acts on a 1,050-kg satellite moving with a speed of 4,800 m/s in a circular orbit around a planet.

What is the radius of its orbit?

______ m

Answer :

If a centripetal force of 185 N acts on a 1,050-kg satellite moving with a speed of 4,800 m/s in a circular orbit around a planet, then the radius of its orbit would be 1.3×10⁸ meters.

What is Newton's second law?

Newton's Second Law states that The resultant force acting on an object is proportional to the rate of change of momentum.

As given in the problem If a centripetal force of 185 N acts on a 1,050-kg satellite moving with a speed of 4,800 m/s in a circular orbit around a planet, then we have to find the radius of its orbit,

The centripetal force acting on the satellite = m×v² / r

185 =1050× 4800² / r

r =1.3×10⁸ meters

Thus, the radius of the orbit would be 1.3×10⁸ meters.

To learn more about Newton's second law here, refer to the link;

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