Q.State and explain Kepler's three laws of planetary motion.
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Start your 14-day free trial to unlock the full solution →Kepler's three laws describe planetary orbits: they are ellipses with the Sun at a focus (1st law), sweep equal areas in equal times (2nd law), and have T² ∝ a³ (3rd law).
1. Law of Orbits: Every planet revolves around the Sun in an elliptical orbit, with the Sun situated at one of the two foci of the ellipse (not at the centre). This replaced the earlier assumption of perfectly circular orbits.
2. Law of Areas: The line joining a planet to the Sun (the radius vector) sweeps out equal areas in equal intervals of time — i.e., the areal velocity of a planet is constant.
Consequence: since the planet is closer to the Sun at perihelion and farther at aphelion, it must move FASTER near perihelion and SLOWER near aphelion to sweep out equal areas in equal times. This law is a direct consequence of the conservation of angular momentum, since gravity is a central force exerting zero torque about the Sun.
3. Law of Periods: The square of the orbital time period of a planet is directly proportional to the cube of the semi-major axis of its elliptical orbit:
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