A mass of 0.340 kg, hanging from a spring with a spring constant of 94.5 N/m, is displaced from equilibrium by 0.160 m and released from rest. Find the following. (Assume a frictionless system.) (a) the amplitude of the oscillations 0.160✔ m (b) the angular frequency of the oscillations 16.67 rad/s (c) the maximum speed of the mass 2.67✔✔ m/s (d) the maximum acceleration of the mass m/s²

Principles of Physics: A Calculus-Based Text
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Chapter12: Oscillatory Motion
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Problem 17P: A block of unknown mass is attached to a spring with a spring constant of 6.50 N/m and undergoes...
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A mass of 0.340 kg, hanging from a spring with a spring constant of 94.5 N/m, is displaced from equilibrium by 0.160 m
and released from rest. Find the following. (Assume a frictionless system.)
(a) the amplitude of the oscillations
0.160
m
(b) the angular frequency of the oscillations
16.67
rad/s
(c) the maximum speed of the mass
2.67
m/s
(d) the maximum acceleration of the mass
m/s²
Transcribed Image Text:A mass of 0.340 kg, hanging from a spring with a spring constant of 94.5 N/m, is displaced from equilibrium by 0.160 m and released from rest. Find the following. (Assume a frictionless system.) (a) the amplitude of the oscillations 0.160 m (b) the angular frequency of the oscillations 16.67 rad/s (c) the maximum speed of the mass 2.67 m/s (d) the maximum acceleration of the mass m/s²
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