A glider moves in simple harmonic motion on a horizontal, frictionless track by connecting it to a spring of stiffness 250 N/m. The phone accelerometer detected the motion of the glider by recording its acceleration as a function of time, as shown in the figure below ax (m/s²) 12.0 6.0 0 -6.0 -12.0 t (s) 0.10 0.20 0.30 0.40 From the graph [note: this is an acceleration vs. time plot], compute for the following quantities: d. the mass of the glider, m; e. the maximum force experienced by the glider, Fmaxi the amplitude of oscillation. A:

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2. A glider moves in simple harmonic motion on a horizontal, frictionless track by connecting it to a spring of
stiffness 250 N/m. The phone accelerometer detected the motion of the glider by recording its acceleration
as a function of time, as shown in the figure below
ax (m/s²)
12.0
6.0
0
-6.0
-12.0
t(s)
0/10 0.20 0.30 0.40
From the graph [note: this is an acceleration vs. time plot], compute for the following quantities:
d. the mass of the glider, m;
the maximum force experienced by the glider, Fmax:
the amplitude of oscillation, A;
f.
g. the starting position.xo:
Transcribed Image Text:2. A glider moves in simple harmonic motion on a horizontal, frictionless track by connecting it to a spring of stiffness 250 N/m. The phone accelerometer detected the motion of the glider by recording its acceleration as a function of time, as shown in the figure below ax (m/s²) 12.0 6.0 0 -6.0 -12.0 t(s) 0/10 0.20 0.30 0.40 From the graph [note: this is an acceleration vs. time plot], compute for the following quantities: d. the mass of the glider, m; the maximum force experienced by the glider, Fmax: the amplitude of oscillation, A; f. g. the starting position.xo:
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