A small ball of mass M=10.0kg is attached to a simple pendulum hanging from a uniform string of mass m=0.06kg. The period of oscillations for the simple pendulum is 8s. Determine the speed of a transverse wave (in m/s) in the string when the pendulum hangs at rest. Take g=9.8m/s2. State your answer to the nearest 0.01m/s. HINT: Since m<

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Chapter16: Waves
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Problem 144CP: A copper wire has a radius of 200 µ m and a length of 5.0 m. The wire is placed under a tension of...
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A small ball of mass M=10.0kg is attached to a simple pendulum hanging from a
uniform string of mass m=0.06kg. The period of oscillations for the simple pendulum
is 8s. Determine the speed of a transverse wave (in m/s) in the string when the
pendulum hangs at rest. Take g=9.8m/s2. State your answer to the nearest 0.01m/s.
HINT: Since m<<M you may use the results for the ideal pendulum (with the
massless string) in your solution.
Transcribed Image Text:A small ball of mass M=10.0kg is attached to a simple pendulum hanging from a uniform string of mass m=0.06kg. The period of oscillations for the simple pendulum is 8s. Determine the speed of a transverse wave (in m/s) in the string when the pendulum hangs at rest. Take g=9.8m/s2. State your answer to the nearest 0.01m/s. HINT: Since m<<M you may use the results for the ideal pendulum (with the massless string) in your solution.
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