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A small ball of mass having a charge of is suspended by a string of length . Another identical ball having the same charge is kept at the point of suspension. Determine the minimum horizontal velocity which should be imparted to the lower ball so that it can make a complete revolution.
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The correct answer is:
If the ball has to just complete the circle then the tension must vanish at the topmost point, i.e.,T2 = 0
From Newton's second law,
At the topmost point T2 = 0,

From energy conservation,
Energy at lowest point = Energy at topmost point
From Eqn. (ii),
From Eqns. (iv) and (v),
From Newton's second law,
At the topmost point T2 = 0,

From energy conservation,
Energy at lowest point = Energy at topmost point
From Eqn. (ii),
From Eqns. (iv) and (v),
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