NCERT Exemplar · Q12
Q.The Earth moves once around the Sun in an elliptical orbit. Consider how its kinetic energy (K.E.) changes with time over one complete revolution. Which of the following kinetic-energy-versus-time curves most closely represents this variation?
(a) A constant horizontal line (kinetic energy stays the same at all times).
(b) A single hump that rises from zero, peaks, and falls back to zero within the orbit.
(c) A sinusoidal curve that rises above and falls below zero (kinetic energy becoming negative for part of the orbit).
(d) A wavy curve that oscillates once about a positive mean value while always staying above zero.
Madhya Pradesh MpbseMCQ· 1mImportance★★★★★est
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Start your 14-day free trial to unlock the full solution →On an elliptical orbit the Earth speeds up near the Sun (perihelion) and slows down far away (aphelion), so its kinetic energy rises and falls once per revolution but is never zero and never negative. That matches a curve oscillating about a positive mean — option (D).
Reasoning
By Kepler's second law (equal areas in equal times), the Earth moves fastest at perihelion (closest) and slowest at aphelion (farthest). Hence:
- KE is maximum at perihelion, minimum at aphelion — it varies periodically, completing one cycle per orbit.
- The Earth never stops, so always.
Why the others are wrong …
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