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Q.Case study: We have learnt that the earth attracts objects towards it. This is due to the gravitational force. Whenever objects fall towards the earth under this force alone, we say that the objects are in free fall. Is there any change in the velocity of falling objects? While falling, there is no change in the direction of motion of the objects. But due to earth's attraction, there will be a change in the magnitude of velocity. Any change in the velocity involves acceleration; whenever an object falls towards the earth, an acceleration is involved. Escape velocity of a body does not depend on:

(a) Mass of body
(b) Mass of Earth
(c) Radius of Earth
(d) Universal Gravitational Constant
Haryana BsehBoard of School Education Haryana (Senior Secondary Part-I / Class 11) 2026MCQ· 1mImportance★★★★★
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Setting the escaping body's total energy to zero, 12mve2=GMmR\tfrac12mv_e^2=\dfrac{GMm}{R}, the mass mm of the body cancels — escape velocity is independent of it.

Escape velocity is the minimum launch speed for a body to just escape a planet's gravitational pull, reaching infinity with zero residual kinetic energy. Setting the body's total mechanical energy at launch equal to zero (the energy required to 'just escape'):

12mve2−GMmR=0⇒12mve2=GMmR\frac12 m v_e^2 - \frac{GMm}{R} = 0 \quad\Rightarrow\quad \frac12 m v_e^2 = \frac{GMm}{R}

The mass mm of the escaping body appears on both sides and cancels completely:

ve=2GMRv_e = \sqrt{\frac{2GM}{R}}

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