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A piece of wire is bent in the shape of a parabola y=kx2 (y-axis vertical) with a bead of mass m on it. The bead can slide on the wire without friction. It stays at the lowest point of the parabola when the wire is at rest. The wire is now accelerated parallel to the x-axis with a constant acceleration a. The distance of the new equilibrium position of the bead, where the bead can stays at rest with respect to the wire, from the y-axis is

A
agk
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B
a2gk
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C
2agk
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D
a4gk
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Solution

The correct option is B a2gk
Let us consider the observer in the accelerated wire frame.
Let the coordinates of the bead be (x, y).
Slope of the tangent =dydx=2kx
Slope of normal =12kx=tanθ
N cosθ=ma
N sinθ=mg

tanθ=ga=12kx
x=a2kg
x is in the second quadrant and hence is negative.
Hence, (B).

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