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A bead of mass m is fitted on a rod and can move on it without friction. Initially the
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A bead of mass m is fitted on a rod and can move on it without friction. Initially the bead is at the middle of the rod moves transitionally in the vertical plane with an accleration `a_(0)` in direction forming angle `alpha` with the rod as shown. The acceleration of bead with respect to rod is: `z`
A bead of mass m stays at point P (a,b) on a wire bent in the shape of a parabola y=4 C x 2 and
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A bead of mass \( m \) moves on a rod without friction. Initially the bead is at the middle of t...
A bead of mass m is fitted on a rod and can move on it without friction. Initially the
A bead of mass m stays at point P(a,b) on a wire bent in the shape of a parabola y = 4Cx²... #jee
In the system shown in the figure , a bead of mass `m` can slide on the string. There is frictio
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A bead of mass \( m \) is attached to one end of a spring of natura...
A bead of mass \(m\) stays at point \(P(a, b)\) on \(a\) wire bent in the shape of a parabola \(....
A bead of mass m stays at pointP (a,b) on a wire bent in the shape of a parabola y =4 Cx^(2) and...
A bead of mass \(m\) is attached to one end of a spring of natural length \(R\) and spring const...
A bead of mass m can move without friction along a long wire bent in a vertical plane in the
In the system shown in the figure, a bead of mass m can slide on the string. There is friction betwe
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