roblem 4. Consider a vertical mass-spring system. The spring constant is k = 48 and the mass is m=1.0 kg. (a) Find the angular frequency. The mass is pulled from equilibrium 0.10 m down. (b) Write the equation for the displacement as a function of time, with a vertical x axis pointing upward.

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Chapter1: Units, Trigonometry. And Vectors
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Focus on b please
Problem 4. Consider a vertical mass-spring system. The spring constant is k = 48 and
the mass is m =
1.0 kg.
(a) Find the angular frequency.
The mass is pulled from equilibrium 0.10 m down.
(b) Write the equation for the displacement as a function of time, with a vertical r
axis pointing upward.
Transcribed Image Text:Problem 4. Consider a vertical mass-spring system. The spring constant is k = 48 and the mass is m = 1.0 kg. (a) Find the angular frequency. The mass is pulled from equilibrium 0.10 m down. (b) Write the equation for the displacement as a function of time, with a vertical r axis pointing upward.
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