Q.A simple pendulum of time period and length is hung from a fixed support at O. The pendulum swings in a vertical plane; when the bob is at its lowest (mean) position it is at a point directly above a point A on the horizontal ground, at a height vertically above A (so is vertical and , where P is the lowest position of the bob). The angular amplitude of the swing is . While the bob is moving, the string suddenly snaps at the instant the angular displacement is (with the bob then moving outward, away from the mean position). Find the time taken by the bob to hit the ground and the horizontal distance from A at which it lands. Assume is small, so that and .
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Start your 14-day free trial to unlock the full solution →The bob's speed when the string snaps is found from SHM, . With small this velocity is horizontal and the bob is at height , so it becomes a projectile: it falls for and moves horizontally . Adding its initial horizontal offset from A gives the landing distance.
Step 1 — angular frequency
Step 2 — speed at
Treating the swing as SHM of the arc, with angular amplitude , the speed at angular displacement is . At :
Step 3 — projectile motion after the snap
Because is small, the string is nearly vertical, so the velocity (perpendicular to the string) is nearly horizontal, and the bob's height is (the small rise is second order and negligible). Taking the initial vertical velocity as , the vertical fall gives
Step 4 — horizontal distance from A
During the fall the bob moves horizontally by …
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