Q.State Kepler's law of areas.
Kepler's second law, the law of areas, states that the line (radius vector) joining a planet to the Sun sweeps out EQUAL areas in EQUAL intervals of time, no matter which part of the orbit the planet is currently in. Because the orbit is an ellipse with the Sun at one focus, this means the planet must move FASTER when it is closer to the Sun (near perihelion, where a shorter arc still sweeps the same area since the radius is shorter) and SLOWER when farther away (near aphelion, where a longer arc is needed to sweep the same area with a longer radius). This law is a direct consequence of the conservation of angular momentum for gravity, which is a central force (always directed along the line joining planet and Sun, producing zero torque about the Sun and hence constant angular momentum , which is proportional to the areal velocity ). [!ANSWER] Kepler's law of areas: the radius vector from the Sun to a planet sweeps equal areas in equal time intervals, a consequence of the conservation of angular momentum since gravity is a central force.
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