The y-position of a damped oscillator as a function of time is shown in the figure. -1 -3 2 3 5 6. 8 9. 10 11 12 13 14 15 t(s) This function can be described by the y(t) = Age-btcos(wt) formula, where Ao is the initial amplitude, b is the damping coefficient and w is the angular frequency. What is the period of the oscillator? Please, notice that the function goes through a grid intersection point. 1.33 s You are correct. Your receipt no. is 160-2863 Previous Tries Determine the damping coefficient. 00426s1 Submit Answer Incorrect. Tries 3/12 Previous Tries

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The y-position of a damped oscillator as a function of time is shown in the figure.
-2
-3
-5
0 1 2 3 4 5 6 7
8 9
10
11
12 13
14
15
t (s)
This function can be described by the y(t) = Age-btcos(wt) formula, where A, is the initial amplitude, b is the damping coefficient and w is the angular frequency.
What is the period of the oscillator? Please, notice that the function goes through a grid intersection point.
1.33 s
You are correct.
Your receipt no. is 160-2863
Previous Tries
Determine the damping coefficient.
0.0426s^-1
Submit Answer
Incorrect. Tries 3/12 Previous Tries
Threaded View Chronological View Other Views ...
My general nreferencor on
Transcribed Image Text:3 The y-position of a damped oscillator as a function of time is shown in the figure. -2 -3 -5 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 t (s) This function can be described by the y(t) = Age-btcos(wt) formula, where A, is the initial amplitude, b is the damping coefficient and w is the angular frequency. What is the period of the oscillator? Please, notice that the function goes through a grid intersection point. 1.33 s You are correct. Your receipt no. is 160-2863 Previous Tries Determine the damping coefficient. 0.0426s^-1 Submit Answer Incorrect. Tries 3/12 Previous Tries Threaded View Chronological View Other Views ... My general nreferencor on
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