- 40 2. The pendulum shown moves in simple harmonic motion, returning to point P one every 0.80 s. The distance from P to Q is 16.0 cm. Determine: a) amplitude = _ b) frequency f = c) Write the equation for x(t): x(t) = %3D %3D d) Calculate the position of the bob after 1.9 s. e) Graph the motion. 10 X (m) .2 4 .8 1.0 1.2 1.4 1.6 -5 91 - 10
- 40 2. The pendulum shown moves in simple harmonic motion, returning to point P one every 0.80 s. The distance from P to Q is 16.0 cm. Determine: a) amplitude = _ b) frequency f = c) Write the equation for x(t): x(t) = %3D %3D d) Calculate the position of the bob after 1.9 s. e) Graph the motion. 10 X (m) .2 4 .8 1.0 1.2 1.4 1.6 -5 91 - 10
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![20
40
2. The pendulum shown moves in simple harmonic motion, returning to point P once
every 0.80 s. The distance from P to Q is 16.0 cm. Determine:
a) amplitude =
b) frequency f =
c) Write the equation for x(t): x(t) =
d) Calculate the position of the bob after 1.9 s.
e) Graph the motion.
10
X (am)
t (s)
01
.2
4
1.8
1.0
1.2
|1.4
1.6
-5
91
- 10](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F556f2d2a-567a-4c31-b94a-128a2a7d7031%2F9b92ceb9-39b2-4c8a-926a-41e4a844e2c0%2Fvmeo9wt_processed.jpeg&w=3840&q=75)
Transcribed Image Text:20
40
2. The pendulum shown moves in simple harmonic motion, returning to point P once
every 0.80 s. The distance from P to Q is 16.0 cm. Determine:
a) amplitude =
b) frequency f =
c) Write the equation for x(t): x(t) =
d) Calculate the position of the bob after 1.9 s.
e) Graph the motion.
10
X (am)
t (s)
01
.2
4
1.8
1.0
1.2
|1.4
1.6
-5
91
- 10
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