Deck 27: Graphs of Sine and Cosine Functions

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Question
Select the graph of the function.(Include two full periods. ) ​
Y = sin 2x

A) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
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Question
Select the graph of the function.(Include two full periods. )​ y=sin8πx3y = - \sin \frac { 8 \pi x } { 3 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)   <div style=padding-top: 35px>
B)​  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the period and amplitude. ​
Y = 7 sin 40x

A)Period: π;Amplitude: -7
B)Period: π;Amplitude: 17\frac { 1 } { 7 }
C)Period: π20\frac { \pi } { 20 } ;Amplitude: 17- \frac { 1 } { 7 }
D)Period: 2π;Amplitude: 1
E)Period: π20\frac { \pi } { 20 } ;Amplitude: 7
Question
Find the period and amplitude.​ y=45cos4x5y = \frac { 4 } { 5 } \cos \frac { 4 x } { 5 }

A)Period: 2π;Amplitude: 1
B)Period: π2\frac { \pi } { 2 } ;Amplitude: 15\frac { 1 } { 5 }
C)Period: π;Amplitude: 54\frac { 5 } { 4 }
D)Period: π;Amplitude: 5
E)Period: 5π2\frac { 5 \pi } { 2 } ;Amplitude: 45\frac { 4 } { 5 }
Question
Write an equation for the function that is described by the given characteristics. ​
A cosine curve with a period of π,an amplitude of 6,a left phase shift of π,and a vertical translation down 43\frac { 4 } { 3 } units.

A) y=6cos(2x+π)43y = 6 \cos ( 2 x + \pi ) - \frac { 4 } { 3 }
B) y=6cos(2x+2π)43y = 6 \cos ( 2 x + 2 \pi ) - \frac { 4 } { 3 }
C) y=6cos(2x+2π)+43y = 6 \cos ( 2 x + 2 \pi ) + \frac { 4 } { 3 }
D) y=6cos(x+2π)43y = 6 \cos ( x + 2 \pi ) - \frac { 4 } { 3 }
E) y=6cos(x+π)43y = 6 \cos ( x + \pi ) - \frac { 4 } { 3 }
Question
Find the period and amplitude.​ y=45sin2πxy = \frac { 4 } { 5 } \sin 2 \pi x

A)Period: 1;Amplitude: 45\frac { 4 } { 5 }
B)Period: π;Amplitude: 54\frac { 5 } { 4 }
C)Period: 2π;Amplitude: 1
D)Period: π2\frac { \pi } { 2 } ;Amplitude: 15\frac { 1 } { 5 }
E)Period: π;Amplitude: 5
Question
For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​ v=0.85sin(πt3)v = 0.85 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )

Find the number of cycles per minute.

A)14 cycles/min
B)11 cycles/min
C)10 cycles/min
D)15 cycles/min
E)12 cycles/min
Question
Use a graphing utility to select the graph of the function.Include two full periods.​ y=1100sin110πty = \frac { 1 } { 100 } \sin 110 \pi t

A)​  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the period and amplitude. ​
Y = -7 sin x

A)Period: π;Amplitude: -7
B)Period: π;Amplitude: 17\frac { 1 } { 7 }
C)Period: 2π;Amplitude: 7
D)Period: 2π;Amplitude: 17- \frac { 1 } { 7 }
E)Period: 2π;Amplitude: 1
Question
Select the graph of the function.(Include two full periods. )​ y=4+110cos60πxy = 4 + \frac { 1 } { 10 } \cos 60 \pi x

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Select the graph of the function.(Include two full periods. )​ y=2sin2πx3y = 2 - \sin \frac { 2 \pi x } { 3 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​ v=0.85sin(πt3)v = 0.85 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0,and exhalation occurs when v < 0. )

Find the time for one full respiratory cycle.

A)7 sec
B)9 sec
C)3 sec
D)8 sec
E)6 sec
Question
For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​ v=0.85sin(πt4)v = 0.85 \sin \left( \frac { \pi t } { 4 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )
Select the graph of this velocity function.

A)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Use a graphing utility to select the graph of the function.Include two full periods. ​
Y = -2 sin (2x + π)

A) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Use a graphing utility to select the graph of the function.Include two full periods. y=2sin(83xπ3)y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)

A)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)   <div style=padding-top: 35px>
B)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)   <div style=padding-top: 35px>
C)​  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)   <div style=padding-top: 35px>
D)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)   <div style=padding-top: 35px>
E)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)   <div style=padding-top: 35px>
Question
Select the graph of the function.(Include two full periods. )​ y=6cosπx3y = - 6 \cos \frac { \pi x } { 3 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Write an equation for the function that is described by the given characteristics. ​
A sine curve with a period of π,an amplitude of 4,a right phase shift of π2\frac { \pi } { 2 } ,and a vertical translation up 7 units.

A)y = 10 + 4 sin (2x + π)
B)y = 7 + 4 sin (2x - π)
C)​y = 9 - 4 sin (2x + π)
D)y = 8 + 4 sin (- 2x - π)
E)y = 11 + 7 sin (2x - π)
Question
Write an equation for the function that is described by the given characteristics. ​
A sine curve with a period of 4π,an amplitude of 4,a left phase shift of π4\frac { \pi } { 4 } ,and a vertical translation down 5 units.

A) y=4sin(x+π8)5y = 4 \sin \left( x + \frac { \pi } { 8 } \right) - 5
B) y=4sin(x2+π8)+5y = 4 \sin \left( \frac { x } { 2 } + \frac { \pi } { 8 } \right) + 5
C) y=4sin(x2+π8)5y = 4 \sin \left( \frac { x } { 2 } + \frac { \pi } { 8 } \right) - 5
D) y=4sin(x2+π)5y = 4 \sin \left( \frac { x } { 2 } + \pi \right) - 5
E) y=5sin(x2+π8)4y = 5 \sin \left( \frac { x } { 2 } + \frac { \pi } { 8 } \right) - 4
Question
Write an equation for the function that is described by the given characteristics. ​
A cosine curve with a period of 4π,an amplitude of 7,a right phase shift of π2\frac { \pi } { 2 } ,and a vertical translation up 2 units.

A) y=2+7cos(x2π4)y = 2 + 7 \cos \left( \frac { x } { 2 } - \frac { \pi } { 4 } \right)
B) y=2+7cos(x2+π)y = 2 + 7 \cos \left( \frac { x } { 2 } + \pi \right)
C) y=27cos(x2π4)y = 2 - 7 \cos \left( \frac { x } { 2 } - \frac { \pi } { 4 } \right)
D) y=2+7cos(x2π)y = 2 + 7 \cos \left( \frac { x } { 2 } - \pi \right)
E) y=2+7cos(xπ)y = 2 + 7 \cos ( x - \pi )
Question
Select the graph of the function.(Include two full periods. )​ y=cosx4y = \cos \frac { x } { 4 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​ C=30.5+21.6sin(2πt365+10.3)C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right) , ​
Where t is the time (in days),with t = 1 corresponding to January 1.
Use a graphing utility to select the graph of the model.

A)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​ v=1.75sin(πt3)v = 1.75 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )

Find the number of cycles per minute.

A)12 cycles/min
B)10 cycles/min
C)15 cycles/min
D)13 cycles/min
E)11 cycles/min
Question
The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​ C=30.8+21.6sin(2πt365+10.9)C = 30.8 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.9 \right) , ​
Where t is the time (in days),with t = 1 corresponding to January 1.
What is the period of the model?

A)31 days
B)22 days
C)183 days
D)365 days
E)30 days
Question
Find a,b,and c for the function f(x)= a cos (bx - c)such that the graph of f(x)matches the graph below.  <strong>Find a,b,and c for the function f(x)= a cos (bx - c)such that the graph of f(x)matches the graph below.  </strong> A)a = -2;b = -1;c=  - \frac { 3 } { 2 }  B)a = 4;b = 1;c = π C)a = 1;b = 2;c = -1 D)a = 2;b = 1;c = -π E)a = 2;b = 1;c =  - \frac { 1 } { 2 }  π <div style=padding-top: 35px>

A)a = -2;b = -1;c= 32- \frac { 3 } { 2 }
B)a = 4;b = 1;c = π
C)a = 1;b = 2;c = -1
D)a = 2;b = 1;c = -π
E)a = 2;b = 1;c = 12- \frac { 1 } { 2 } π
Question
Use a graphing utility to graph the function below.Be sure to include at least two full periods. y=2sin(πx2π4)y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right)

A)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
When tuning a piano,a technician strikes a tuning fork for the A above middle C and sets up a wave motion that can be approximated by ​
Y = 0.001 sin 850πt,

Where t is the time (in seconds).

The frequency is given by f = 1 / p.What is the frequency of the note?

A)85 cycles/sec
B) 1425\frac { 1 } { 425 } cycles/sec
C) 1850\frac { 1 } { 850 } cycles/sec
D)850 cycles/sec
E)425 cycles/sec
Question
Determine which of the graphs below represents the following function y=|x|sin x

A) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
​Sketch the graph of the function below,being sure to include at least two full periods. ​
​y = 2 cos​( x - π2\frac { \pi } { 2 } )​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>

A)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
B)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
C)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
D)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
E)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
Question
When tuning a piano,a technician strikes a tuning fork for the A above middle C and sets up a wave motion that can be approximated by ​
Y = 0.001 sin 880πt,

Where t is the time (in seconds).

What is the period of the function?

A) 1880\frac { 1 } { 880 } sec
B)440 sec
C) 1440\frac { 1 } { 440 } sec
D)880 sec
E)88 sec
Question
The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​ C=30.4+21.6sin(2πt365+10.2)C = 30.4 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.2 \right) , ​
Where t is the time (in days),with t = 1 corresponding to January 1.
What is the average daily fuel consumption?

A)365 gal.
B)21.6 gal.
C)30 gal.
D)10.2 gal.
E)30.4 gal.
Question
Sketch the graph of the function below,being sure to include at least two full periods. ​
Y = - cos(x+ π2\frac { \pi } { 2 } )  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>

A)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
B)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
C)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
D)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
E)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​   <div style=padding-top: 35px>
Question
After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​ v=1.75sin(πt3)v = 1.75 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )
Select the graph of this velocity function.

A)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​   <div style=padding-top: 35px>
B)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​   <div style=padding-top: 35px>
C)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​   <div style=padding-top: 35px>
D)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​   <div style=padding-top: 35px>
E)​  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​   <div style=padding-top: 35px>
Question
​Determine the period and amplitude of the following function​ y=3cos(2x316)y = 3 \cos \left( \frac { 2 x } { 3 } - \frac { 1 } { 6 } \right)  <strong>​Determine the period and amplitude of the following function​  y = 3 \cos \left( \frac { 2 x } { 3 } - \frac { 1 } { 6 } \right)    ​</strong> A)​Period: 10  \pi  ;Amplitude: 6 B)​Period:  \frac { \pi } { 5 }  ;Amplitude: 3 C)​Period: 8  \pi  ;Amplitude: 4 D)​Period:  \pi  ;Amplitude: 3 E)​Period: 5  \pi  ;Amplitude: 2 <div style=padding-top: 35px>

A)​Period: 10 π\pi ;Amplitude: 6
B)​Period: π5\frac { \pi } { 5 } ;Amplitude: 3
C)​Period: 8 π\pi ;Amplitude: 4
D)​Period: π\pi ;Amplitude: 3
E)​Period: 5 π\pi ;Amplitude: 2
Question
After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​ v=1.75sin(πt3)v = 1.75 \sin \left( \frac { \pi t } { 3 } \right) , where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )

Find the time for one full respiratory cycle.​

A)6 sec
B)2 sec
C)7 sec
D)3 sec
E)8 sec
Question
​Determine the period and amplitude of the following function​ y=5cos(5x7+13)y = 5 \cos \left( \frac { 5 x } { 7 } + \frac { 1 } { 3 } \right)  <strong>​Determine the period and amplitude of the following function​  y = 5 \cos \left( \frac { 5 x } { 7 } + \frac { 1 } { 3 } \right)    ​</strong> A)​Period: 16  \pi  ;Amplitude: 10 B)​Period:  \pi  ;Amplitude: 5 C)​Period: 5  \pi  ;Amplitude: 6 D)​Period:  \frac { \pi } { 2 }  ;Amplitude: 5 E)​Period: 8  \pi  ;Amplitude: 4 <div style=padding-top: 35px>

A)​Period: 16 π\pi ;Amplitude: 10
B)​Period: π\pi ;Amplitude: 5
C)​Period: 5 π\pi ;Amplitude: 6
D)​Period: π2\frac { \pi } { 2 } ;Amplitude: 5
E)​Period: 8 π\pi ;Amplitude: 4
Question
Find a and d for the function f(x)= a sin x + d such that the graph of f(x)matches the graph below. <strong>Find a and d for the function f(x)= a sin x + d such that the graph of f(x)matches the graph below.  </strong> A)a = 2;d = -1 B)a = 4;d = 1 C)a = -2;d = 1 D)a = 2;d = 2 E)a = 4;d = -3 <div style=padding-top: 35px>

A)a = 2;d = -1
B)a = 4;d = 1
C)a = -2;d = 1
D)a = 2;d = 2
E)a = 4;d = -3
Question
Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1

A) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​ <div style=padding-top: 35px>
B) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​ <div style=padding-top: 35px>
C) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​ <div style=padding-top: 35px>
D) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​ <div style=padding-top: 35px>
E) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​ <div style=padding-top: 35px>
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Deck 27: Graphs of Sine and Cosine Functions
1
Select the graph of the function.(Include two full periods. ) ​
Y = sin 2x

A) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)
B) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)
C) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)
D) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)
E) <strong>Select the graph of the function.(Include two full periods. ) ​ Y = sin 2x ​</strong> A)   B)   C)   D)   E)
2
Select the graph of the function.(Include two full periods. )​ y=sin8πx3y = - \sin \frac { 8 \pi x } { 3 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)
B)​  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = - \sin \frac { 8 \pi x } { 3 }  ​</strong> A)   B)​   C)   D)   E)

3
Find the period and amplitude. ​
Y = 7 sin 40x

A)Period: π;Amplitude: -7
B)Period: π;Amplitude: 17\frac { 1 } { 7 }
C)Period: π20\frac { \pi } { 20 } ;Amplitude: 17- \frac { 1 } { 7 }
D)Period: 2π;Amplitude: 1
E)Period: π20\frac { \pi } { 20 } ;Amplitude: 7
Period: π20\frac { \pi } { 20 } ;Amplitude: 7
4
Find the period and amplitude.​ y=45cos4x5y = \frac { 4 } { 5 } \cos \frac { 4 x } { 5 }

A)Period: 2π;Amplitude: 1
B)Period: π2\frac { \pi } { 2 } ;Amplitude: 15\frac { 1 } { 5 }
C)Period: π;Amplitude: 54\frac { 5 } { 4 }
D)Period: π;Amplitude: 5
E)Period: 5π2\frac { 5 \pi } { 2 } ;Amplitude: 45\frac { 4 } { 5 }
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5
Write an equation for the function that is described by the given characteristics. ​
A cosine curve with a period of π,an amplitude of 6,a left phase shift of π,and a vertical translation down 43\frac { 4 } { 3 } units.

A) y=6cos(2x+π)43y = 6 \cos ( 2 x + \pi ) - \frac { 4 } { 3 }
B) y=6cos(2x+2π)43y = 6 \cos ( 2 x + 2 \pi ) - \frac { 4 } { 3 }
C) y=6cos(2x+2π)+43y = 6 \cos ( 2 x + 2 \pi ) + \frac { 4 } { 3 }
D) y=6cos(x+2π)43y = 6 \cos ( x + 2 \pi ) - \frac { 4 } { 3 }
E) y=6cos(x+π)43y = 6 \cos ( x + \pi ) - \frac { 4 } { 3 }
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6
Find the period and amplitude.​ y=45sin2πxy = \frac { 4 } { 5 } \sin 2 \pi x

A)Period: 1;Amplitude: 45\frac { 4 } { 5 }
B)Period: π;Amplitude: 54\frac { 5 } { 4 }
C)Period: 2π;Amplitude: 1
D)Period: π2\frac { \pi } { 2 } ;Amplitude: 15\frac { 1 } { 5 }
E)Period: π;Amplitude: 5
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7
For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​ v=0.85sin(πt3)v = 0.85 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )

Find the number of cycles per minute.

A)14 cycles/min
B)11 cycles/min
C)10 cycles/min
D)15 cycles/min
E)12 cycles/min
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8
Use a graphing utility to select the graph of the function.Include two full periods.​ y=1100sin110πty = \frac { 1 } { 100 } \sin 110 \pi t

A)​  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)
B)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)
C)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)
D)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)
E)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.​  y = \frac { 1 } { 100 } \sin 110 \pi t  ​</strong> A)​   B)   C)   D)   E)
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9
Find the period and amplitude. ​
Y = -7 sin x

A)Period: π;Amplitude: -7
B)Period: π;Amplitude: 17\frac { 1 } { 7 }
C)Period: 2π;Amplitude: 7
D)Period: 2π;Amplitude: 17- \frac { 1 } { 7 }
E)Period: 2π;Amplitude: 1
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10
Select the graph of the function.(Include two full periods. )​ y=4+110cos60πxy = 4 + \frac { 1 } { 10 } \cos 60 \pi x

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = 4 + \frac { 1 } { 10 } \cos 60 \pi x  ​</strong> A)   B)   C)   D)   E)
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11
Select the graph of the function.(Include two full periods. )​ y=2sin2πx3y = 2 - \sin \frac { 2 \pi x } { 3 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = 2 - \sin \frac { 2 \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
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12
For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​ v=0.85sin(πt3)v = 0.85 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0,and exhalation occurs when v < 0. )

Find the time for one full respiratory cycle.

A)7 sec
B)9 sec
C)3 sec
D)8 sec
E)6 sec
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13
For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​ v=0.85sin(πt4)v = 0.85 \sin \left( \frac { \pi t } { 4 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )
Select the graph of this velocity function.

A)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)
B)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)
C)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)
D)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)
E)  <strong>For a person at rest,the velocity v (in liters per second)of airflow during a respiratory cycle (the time from the beginning of one breath to the beginning of the next)is given by​  v = 0.85 \sin \left( \frac { \pi t } { 4 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function. ​</strong> A)   B)   C)   D)   E)
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14
Use a graphing utility to select the graph of the function.Include two full periods. ​
Y = -2 sin (2x + π)

A) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)
B) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)
C) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)
D) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)
E) <strong>Use a graphing utility to select the graph of the function.Include two full periods. ​ Y = -2 sin (2x + π) ​</strong> A)   B)   C)   D)   E)
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15
Use a graphing utility to select the graph of the function.Include two full periods. y=2sin(83xπ3)y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)

A)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)
B)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)
C)​  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)
D)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)
E)  <strong>Use a graphing utility to select the graph of the function.Include two full periods.  y = - 2 \sin \left( \frac { 8 } { 3 } x - \frac { \pi } { 3 } \right)  ​</strong> A)   B)   C)​   D)   E)
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16
Select the graph of the function.(Include two full periods. )​ y=6cosπx3y = - 6 \cos \frac { \pi x } { 3 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = - 6 \cos \frac { \pi x } { 3 }  ​</strong> A)   B)   C)   D)   E)
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17
Write an equation for the function that is described by the given characteristics. ​
A sine curve with a period of π,an amplitude of 4,a right phase shift of π2\frac { \pi } { 2 } ,and a vertical translation up 7 units.

A)y = 10 + 4 sin (2x + π)
B)y = 7 + 4 sin (2x - π)
C)​y = 9 - 4 sin (2x + π)
D)y = 8 + 4 sin (- 2x - π)
E)y = 11 + 7 sin (2x - π)
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18
Write an equation for the function that is described by the given characteristics. ​
A sine curve with a period of 4π,an amplitude of 4,a left phase shift of π4\frac { \pi } { 4 } ,and a vertical translation down 5 units.

A) y=4sin(x+π8)5y = 4 \sin \left( x + \frac { \pi } { 8 } \right) - 5
B) y=4sin(x2+π8)+5y = 4 \sin \left( \frac { x } { 2 } + \frac { \pi } { 8 } \right) + 5
C) y=4sin(x2+π8)5y = 4 \sin \left( \frac { x } { 2 } + \frac { \pi } { 8 } \right) - 5
D) y=4sin(x2+π)5y = 4 \sin \left( \frac { x } { 2 } + \pi \right) - 5
E) y=5sin(x2+π8)4y = 5 \sin \left( \frac { x } { 2 } + \frac { \pi } { 8 } \right) - 4
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19
Write an equation for the function that is described by the given characteristics. ​
A cosine curve with a period of 4π,an amplitude of 7,a right phase shift of π2\frac { \pi } { 2 } ,and a vertical translation up 2 units.

A) y=2+7cos(x2π4)y = 2 + 7 \cos \left( \frac { x } { 2 } - \frac { \pi } { 4 } \right)
B) y=2+7cos(x2+π)y = 2 + 7 \cos \left( \frac { x } { 2 } + \pi \right)
C) y=27cos(x2π4)y = 2 - 7 \cos \left( \frac { x } { 2 } - \frac { \pi } { 4 } \right)
D) y=2+7cos(x2π)y = 2 + 7 \cos \left( \frac { x } { 2 } - \pi \right)
E) y=2+7cos(xπ)y = 2 + 7 \cos ( x - \pi )
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20
Select the graph of the function.(Include two full periods. )​ y=cosx4y = \cos \frac { x } { 4 }

A)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)
B)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)
C)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)
D)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)
E)  <strong>Select the graph of the function.(Include two full periods. )​  y = \cos \frac { x } { 4 }  ​</strong> A)   B)   C)   D)   E)
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21
The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​ C=30.5+21.6sin(2πt365+10.3)C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right) , ​
Where t is the time (in days),with t = 1 corresponding to January 1.
Use a graphing utility to select the graph of the model.

A)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)
B)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)
C)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)
D)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)
E)  <strong>The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​  C = 30.5 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.3 \right)  , ​ Where t is the time (in days),with t = 1 corresponding to January 1. Use a graphing utility to select the graph of the model. ​</strong> A)   B)   C)   D)   E)
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22
After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​ v=1.75sin(πt3)v = 1.75 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )

Find the number of cycles per minute.

A)12 cycles/min
B)10 cycles/min
C)15 cycles/min
D)13 cycles/min
E)11 cycles/min
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23
The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​ C=30.8+21.6sin(2πt365+10.9)C = 30.8 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.9 \right) , ​
Where t is the time (in days),with t = 1 corresponding to January 1.
What is the period of the model?

A)31 days
B)22 days
C)183 days
D)365 days
E)30 days
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24
Find a,b,and c for the function f(x)= a cos (bx - c)such that the graph of f(x)matches the graph below.  <strong>Find a,b,and c for the function f(x)= a cos (bx - c)such that the graph of f(x)matches the graph below.  </strong> A)a = -2;b = -1;c=  - \frac { 3 } { 2 }  B)a = 4;b = 1;c = π C)a = 1;b = 2;c = -1 D)a = 2;b = 1;c = -π E)a = 2;b = 1;c =  - \frac { 1 } { 2 }  π

A)a = -2;b = -1;c= 32- \frac { 3 } { 2 }
B)a = 4;b = 1;c = π
C)a = 1;b = 2;c = -1
D)a = 2;b = 1;c = -π
E)a = 2;b = 1;c = 12- \frac { 1 } { 2 } π
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25
Use a graphing utility to graph the function below.Be sure to include at least two full periods. y=2sin(πx2π4)y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right)

A)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)
B)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)
C)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)
D)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)
E)  <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods.  y = - \sqrt { 2 } \sin \left( \frac { \pi x } { 2 } - \frac { \pi } { 4 } \right) </strong> A)   B)   C)   D)   E)
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26
When tuning a piano,a technician strikes a tuning fork for the A above middle C and sets up a wave motion that can be approximated by ​
Y = 0.001 sin 850πt,

Where t is the time (in seconds).

The frequency is given by f = 1 / p.What is the frequency of the note?

A)85 cycles/sec
B) 1425\frac { 1 } { 425 } cycles/sec
C) 1850\frac { 1 } { 850 } cycles/sec
D)850 cycles/sec
E)425 cycles/sec
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27
Determine which of the graphs below represents the following function y=|x|sin x

A) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)
B) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)
C) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)
D) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)
E) <strong>Determine which of the graphs below represents the following function y=|x|sin x ​</strong> A)   B)   C)   D)   E)
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28
​Sketch the graph of the function below,being sure to include at least two full periods. ​
​y = 2 cos​( x - π2\frac { \pi } { 2 } )​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​

A)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​
B)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​
C)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​
D)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​
E)​  <strong>​Sketch the graph of the function below,being sure to include at least two full periods. ​ ​y = 2 cos​( x -  \frac { \pi } { 2 }  )​   ​</strong> A)​   B)​   C)​   D)​   E)​
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29
When tuning a piano,a technician strikes a tuning fork for the A above middle C and sets up a wave motion that can be approximated by ​
Y = 0.001 sin 880πt,

Where t is the time (in seconds).

What is the period of the function?

A) 1880\frac { 1 } { 880 } sec
B)440 sec
C) 1440\frac { 1 } { 440 } sec
D)880 sec
E)88 sec
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30
The daily consumption C (in gallons)of diesel fuel on a farm is modeled by​ C=30.4+21.6sin(2πt365+10.2)C = 30.4 + 21.6 \sin \left( \frac { 2 \pi t } { 365 } + 10.2 \right) , ​
Where t is the time (in days),with t = 1 corresponding to January 1.
What is the average daily fuel consumption?

A)365 gal.
B)21.6 gal.
C)30 gal.
D)10.2 gal.
E)30.4 gal.
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31
Sketch the graph of the function below,being sure to include at least two full periods. ​
Y = - cos(x+ π2\frac { \pi } { 2 } )  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​

A)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​
B)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​
C)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​
D)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​
E)​  <strong>Sketch the graph of the function below,being sure to include at least two full periods. ​ Y = - cos(x+  \frac { \pi } { 2 }  )   ​</strong> A)​   B)​   C)​   D)​   E)​
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32
After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​ v=1.75sin(πt3)v = 1.75 \sin \left( \frac { \pi t } { 3 } \right) , ​
Where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )
Select the graph of this velocity function.

A)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​
B)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​
C)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​
D)  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​
E)​  <strong>After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​  v = 1.75 \sin \left( \frac { \pi t } { 3 } \right)  , ​ Where t is the time (in seconds). (Inhalation occurs when v > 0 and exhalation occurs when v < 0. ) Select the graph of this velocity function.</strong> A)   B)   C)   D)   E)​
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33
​Determine the period and amplitude of the following function​ y=3cos(2x316)y = 3 \cos \left( \frac { 2 x } { 3 } - \frac { 1 } { 6 } \right)  <strong>​Determine the period and amplitude of the following function​  y = 3 \cos \left( \frac { 2 x } { 3 } - \frac { 1 } { 6 } \right)    ​</strong> A)​Period: 10  \pi  ;Amplitude: 6 B)​Period:  \frac { \pi } { 5 }  ;Amplitude: 3 C)​Period: 8  \pi  ;Amplitude: 4 D)​Period:  \pi  ;Amplitude: 3 E)​Period: 5  \pi  ;Amplitude: 2

A)​Period: 10 π\pi ;Amplitude: 6
B)​Period: π5\frac { \pi } { 5 } ;Amplitude: 3
C)​Period: 8 π\pi ;Amplitude: 4
D)​Period: π\pi ;Amplitude: 3
E)​Period: 5 π\pi ;Amplitude: 2
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34
After exercising for a few minutes,a person has a respiratory cycle for which the velocity of airflow is approximated by​ v=1.75sin(πt3)v = 1.75 \sin \left( \frac { \pi t } { 3 } \right) , where t is the time (in seconds).
(Inhalation occurs when v > 0 and exhalation occurs when v < 0. )

Find the time for one full respiratory cycle.​

A)6 sec
B)2 sec
C)7 sec
D)3 sec
E)8 sec
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35
​Determine the period and amplitude of the following function​ y=5cos(5x7+13)y = 5 \cos \left( \frac { 5 x } { 7 } + \frac { 1 } { 3 } \right)  <strong>​Determine the period and amplitude of the following function​  y = 5 \cos \left( \frac { 5 x } { 7 } + \frac { 1 } { 3 } \right)    ​</strong> A)​Period: 16  \pi  ;Amplitude: 10 B)​Period:  \pi  ;Amplitude: 5 C)​Period: 5  \pi  ;Amplitude: 6 D)​Period:  \frac { \pi } { 2 }  ;Amplitude: 5 E)​Period: 8  \pi  ;Amplitude: 4

A)​Period: 16 π\pi ;Amplitude: 10
B)​Period: π\pi ;Amplitude: 5
C)​Period: 5 π\pi ;Amplitude: 6
D)​Period: π2\frac { \pi } { 2 } ;Amplitude: 5
E)​Period: 8 π\pi ;Amplitude: 4
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36
Find a and d for the function f(x)= a sin x + d such that the graph of f(x)matches the graph below. <strong>Find a and d for the function f(x)= a sin x + d such that the graph of f(x)matches the graph below.  </strong> A)a = 2;d = -1 B)a = 4;d = 1 C)a = -2;d = 1 D)a = 2;d = 2 E)a = 4;d = -3

A)a = 2;d = -1
B)a = 4;d = 1
C)a = -2;d = 1
D)a = 2;d = 2
E)a = 4;d = -3
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37
Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1

A) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​
B) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​
C) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​
D) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​
E) <strong>Use a graphing utility to graph the function below.Be sure to include at least two full periods. y = 4 sin (x - 5π)+ 1</strong> A)   B)   ​ C)   ​ D)   ​ E)   ​
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