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Question

A system consists of two small spheres of mass 1 kg and 2 kg interconnected by a weightless spring. At t=0, the spheres are set in motion with initial velocities as shown in the figure. The position vector of centre of mass at t=0 is (20 ^j) m. Initially, spring is in its natural length. The system moves in earth's gravitational field. The position vector of centre of mass of the system in m at t=1 s is

[g=10 m/s2, com is initial centre of mass]


A
4 ^i+2425 ^j
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B
6 ^i+392 ^j
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C
4 ^i+233 ^j
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D
6 ^i+413 ^j
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Solution

The correct option is D 6 ^i+413 ^j

Momentum of system at t=0 is,

pi=1(8^i+6^j)+2(5^i5^j)=18^i4^j

So, initial velocity of centre of mass,

vi=pim1+m2=18^i4^j3=6^i43^j

Let r be the position of centre of mass at t=0 and r be the position of centre of mass at t=1 s.

r=r+vit+12at2

r=20^j+(6^i43^j)×1+12×(10^j)×(1)2=6^i+413^j

Hence, option (D) is the correct answer.

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