106 A simple harmonic oscillator consists of a block attached to a spring with k = 200 N/m. The block slides on a frictionless surface, with equilibrium point x = 0 and amplitude 0.20 m. A graph of the block's velocity v as a function of time t is shown in Fig. 15-60. The horizontal scale is set by t, = 0.20 s. What are (a) the period of the SHM, (b) the block's mass, (c) its displacement at t = 0, (d) its acceleration at t = 0.10 s, and (e) its maximum ki- netic energy? v (m/s) 2n t(s) -27 Figure 15-60 Problem 106.

Classical Dynamics of Particles and Systems
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Author:Stephen T. Thornton, Jerry B. Marion
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Chapter3: Oscillations
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106 A simple harmonic oscillator consists of a block attached
to a spring with k = 200 N/m. The block slides on a frictionless
surface, with equilibrium point x = 0 and amplitude 0.20 m.
A graph of the block's velocity v as a function of time t is shown
in Fig. 15-60. The horizontal scale is set by t, = 0.20 s. What are (a)
the period of the SHM, (b) the block's mass, (c) its displacement
at t = 0, (d) its acceleration at t = 0.10 s, and (e) its maximum ki-
netic energy?
v (m/s)
2n
t(s)
-27
Figure 15-60 Problem 106.
Transcribed Image Text:106 A simple harmonic oscillator consists of a block attached to a spring with k = 200 N/m. The block slides on a frictionless surface, with equilibrium point x = 0 and amplitude 0.20 m. A graph of the block's velocity v as a function of time t is shown in Fig. 15-60. The horizontal scale is set by t, = 0.20 s. What are (a) the period of the SHM, (b) the block's mass, (c) its displacement at t = 0, (d) its acceleration at t = 0.10 s, and (e) its maximum ki- netic energy? v (m/s) 2n t(s) -27 Figure 15-60 Problem 106.
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