A simple pendulum with mass m = 1.7 kg and length L = 2.54 m hangs from the ceiling. It is pulled back to an small angle of 0 = 8.1° from the vertical and released at t = 0. 1) What is the period of oscillation? s Submit 2) What is the magnitude of the force on the pendulum bob perpendicular to the string at t=0? N Submit 3) What is the maximum speed of the pendulum? m/s Submit

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Chapter13: Vibrations And Waves
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Problem 40P: A simple pendulum is 5.00 in long. (a) What is the period of simple harmonic motion for this...
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A simple pendulum with mass m = 1.7 kg and length L = 2.54 m hangs
from the ceiling. It is pulled back to an small angle of 0 = 8.1° from the
vertical and released at t = 0.
1) What is the period of oscillation?
s Submit
+
2) What is the magnitude of the force on the pendulum bob perpendicular
to the string at t=0?
N Submit
+
3) What is the maximum speed of the pendulum?
m/s Submit
4) What is the angular displacement at t = 3.52 s? (give the answer as a
negative angle if the angle is to the left of the vertical)
Submit
+)
5) What is the magnitude of the tangential acceleration as the pendulum
passes through the equilibrium position?
m/s2 Submit
6) What is the magnitude of the radial acceleration as the pendulum
passes through the equilibrium position?
m/s2 Submit
+)
Transcribed Image Text:A simple pendulum with mass m = 1.7 kg and length L = 2.54 m hangs from the ceiling. It is pulled back to an small angle of 0 = 8.1° from the vertical and released at t = 0. 1) What is the period of oscillation? s Submit + 2) What is the magnitude of the force on the pendulum bob perpendicular to the string at t=0? N Submit + 3) What is the maximum speed of the pendulum? m/s Submit 4) What is the angular displacement at t = 3.52 s? (give the answer as a negative angle if the angle is to the left of the vertical) Submit +) 5) What is the magnitude of the tangential acceleration as the pendulum passes through the equilibrium position? m/s2 Submit 6) What is the magnitude of the radial acceleration as the pendulum passes through the equilibrium position? m/s2 Submit +)
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