Problem 6: Some College Physics students are studying periodic motion using an oscillating mass on a spring. After collecting data, they drew the Dosition versus time graph shown. 5.0 4.0 3.0 2.0 1.0- 0.0 5.0 10.0 15.0 20.0 t(s) -1.0 - -2.0- -3.0- -4.0- -5.0 Part (a) What is the amplitude, in centimeters, of the oscillations for the graph presented? A = cm sin() cos() tan() IT ( 7 8 9 HOME cotan() asin() acos() E ^^ 4 5 6 atan() acotan() sinh() 1 2 3 cosh() tanh() cotanh() + END - . 0 BACKSPACE Degrees Radians NO DEL CLEAR Part (b) What is the period, in seconds, of the oscillations for the graph presented? Part (c) The function that represents the data on the graph may be written as x = A cos(at + d) with [0, 2π) What is the phase constant, in degrees, for the graph presented? Round your answer to the nearest multiple of 15°. (w) x

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Chapter15: Oscillatory Motion
Section: Chapter Questions
Problem 15.2CQ
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Problem 6: Some College Physics students are studying periodic motion using an oscillating mass on a spring. After collecting data, they drew the
position versus time graph shown.
5.0
4.0
3.0
2.0-
1.0
0.0
5.0
10.0
15.0
20.0 t(s)
-1.0
-2.0-
-3.0-
-4.0
-5.0
Part (a) What is the amplitude, in centimeters, of the oscillations for the graph presented?
A =
cm
sin()
cos()
tan()
π ( )
7 8 9
HOME
cotan()
asin()
acos()
E
↑^
4 5 6
*
atan() acotan()
sinh()
1
2 3
cosh()
tanh()
cotanh()
+
END
0
Degrees
Radians
VBACKSPACE
DEL CLEAR
Part (b) What is the period, in seconds, of the oscillations for the graph presented?
Part (c) The function that represents the data on the graph may be written as
x = A cos(@t+) with E [0, 2π)
What is the phase constant, in degrees, for the graph presented? Round your answer to the nearest multiple of 15°.
x(cm)
Transcribed Image Text:Problem 6: Some College Physics students are studying periodic motion using an oscillating mass on a spring. After collecting data, they drew the position versus time graph shown. 5.0 4.0 3.0 2.0- 1.0 0.0 5.0 10.0 15.0 20.0 t(s) -1.0 -2.0- -3.0- -4.0 -5.0 Part (a) What is the amplitude, in centimeters, of the oscillations for the graph presented? A = cm sin() cos() tan() π ( ) 7 8 9 HOME cotan() asin() acos() E ↑^ 4 5 6 * atan() acotan() sinh() 1 2 3 cosh() tanh() cotanh() + END 0 Degrees Radians VBACKSPACE DEL CLEAR Part (b) What is the period, in seconds, of the oscillations for the graph presented? Part (c) The function that represents the data on the graph may be written as x = A cos(@t+) with E [0, 2π) What is the phase constant, in degrees, for the graph presented? Round your answer to the nearest multiple of 15°. x(cm)
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