A pendulum of length L=6 m and mass M=1 kg has a spring of force constant k=30 N/m connected to it at a distance h=0.3m below its point of suspension. Find the frequency of vibration of the system for small values of the amplitude ( for small angles, sin0=0, cos® =1)). Assume the vertical suspension of length is rigid, but ignore its mass. State your answer in Hz to the nearest 0.01 (Use g=9.8m/s²) L k M Your Answer:

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Chapter1: Units, Trigonometry. And Vectors
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A pendulum of length L=6 m and mass M=1 kg has a spring of force constant k=30
N/m connected to it at a distance h=0.3m below its point of suspension. Find the
frequency of vibration of the system for small values of the amplitude ( for small
angles, sine=0 , cose =1)). Assume the vertical suspension of length is rigid, but
ignore its mass. State your answer in Hz to the nearest 0.01 (Use g=9.8m/s²)
L
www
k
M
Your Answer:
Transcribed Image Text:A pendulum of length L=6 m and mass M=1 kg has a spring of force constant k=30 N/m connected to it at a distance h=0.3m below its point of suspension. Find the frequency of vibration of the system for small values of the amplitude ( for small angles, sine=0 , cose =1)). Assume the vertical suspension of length is rigid, but ignore its mass. State your answer in Hz to the nearest 0.01 (Use g=9.8m/s²) L www k M Your Answer:
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