Question:

If a body is dropped from a height of \( h \), at what velocity will it touch the ground?

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The velocity of a body dropped from a height depends on the height and gravitational acceleration, not on the mass of the body.
Updated On: Feb 3, 2026
  • \( \sqrt{gh} \)
  • \( \sqrt{2gh} \)
  • \( 2\sqrt{gh} \)
  • depends on mass of the body
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The Correct Option is B

Solution and Explanation

Step 1: Use the equations of motion.
For an object dropped from rest, the velocity at the point of impact is given by the equation: \[ v = \sqrt{2gh}, \] where \( g \) is the acceleration due to gravity and \( h \) is the height from which the body is dropped.
Step 2: Conclusion.
Thus, the velocity with which the body touches the ground is \( \sqrt{2gh} \), corresponding to option (B).
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