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If a simple pendulum falls freely under gravity, the time period will be
  • a)
  • b)
  • c)
    infinite
  • d)
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
If a simple pendulum falls freely under gravity, the time period will ...
  • A simple pendulum consists of a mass m (also known as the pendulum bob) suspended from a fixed point with a string or rod of length L. When the mass is displaced sideways, it swings back and forth under the influence of gravity.
  • The time it takes to complete one full swing (from the starting point, to the farthest point, and back) is known as the period of the pendulum.
Understanding the Free Fall Condition
  • If a simple pendulum is in free fall, it means that it is falling under the influence of gravity alone, with no other forces acting on it.
  • This implies that the tension in the string or rod is zero, as there is no upward force countering the downward pull of gravity.
Reason for an Infinite Time Period
  • In this condition, the pendulum bob would not experience any restoring force that would cause it to swing back towards the equilibrium position.
  • Therefore, the pendulum would not oscillate and hence, the time period of oscillation would be infinite.
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If a simple pendulum falls freely under gravity, the time period will bea)b)c)infinited)Correct answer is option 'C'. Can you explain this answer?
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