You have a simple pendulum that consists of a small metal ball attached to a long string. You push the ball so that at time t=0t=0 it moves with a speed of 0.59 m/s through the equilibrium in the negative x-direction and continues oscillating with amplitude 24 cm. (a) Draw labeled position-time and velocity-time graphs for the first two periods of oscillation. (b) Determine the length of the string.   Solve for the length of the string. Start with general equations and explain what you are doing and why you did what you did.

Physics for Scientists and Engineers, Technology Update (No access codes included)
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ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Oscillatory Motion
Section: Chapter Questions
Problem 15.11OQ: A block with mass m = 0.1 kg oscillates with amplitude .A = 0.1 in at the end of a spring with force...
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You have a simple pendulum that consists of a small metal ball attached to a long string. You push the ball so that at time t=0t=0 it moves with a speed of 0.59 m/s through the equilibrium in the negative x-direction and continues oscillating with amplitude 24 cm. (a) Draw labeled position-time and velocity-time graphs for the first two periods of oscillation. (b) Determine the length of the string.

 

  1. Solve for the length of the string. Start with general equations and explain what you are doing and why you did what you did.
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