Deck 3: Radian Measure and the Unit Circle
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Deck 3: Radian Measure and the Unit Circle
1
Use a table or a calculator to evaluate the function. Round to four decimal places.
sec 0.2020
A)0.9797
B)1.0208
C)0.2048
D)0.2006
sec 0.2020
A)0.9797
B)1.0208
C)0.2048
D)0.2006
B
2
Find the area of a sector of a circle having radius r and central angle . If necessary, express the answer to the nearest
tenth.

tenth.

B
3
Find the specified quantity.



4
Solve the problem.


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5
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .

circular function value of .

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6

83.88°
A)1.5640
B)1.4640
C)1.3640
D)1.2640
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7
Convert the degree measure to radians, correct to four decimal places. Use 3.1416 for π.
-160°41´
A)-2.8045
B)-2.7945
C)-2.7745
D)-2.7845
-160°41´
A)-2.8045
B)-2.7945
C)-2.7745
D)-2.7845
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8

0.8996
A)52.04°
B)52.54°
C)51.54°
D)50.84°
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9
4
Provide an appropriate response.

Provide an appropriate response.

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10
Solve the problem.


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11
Find the specified quantity.
If the radius of a circle is doubled, how is the length of the arc intercepted by a fixed central
angle changed?
If the radius of a circle is doubled, how is the length of the arc intercepted by a fixed central
angle changed?
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12
Find the specified quantity.


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13
Solve the problem.


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14
Solve the problem.
Suppose the tip of the minute hand of a clock is 15 inches from the center of the clock. Determine the distance traveled by the tip of the minute hand in 10 minutes. Give an exact answer.
Suppose the tip of the minute hand of a clock is 15 inches from the center of the clock. Determine the distance traveled by the tip of the minute hand in 10 minutes. Give an exact answer.

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15
Find the exact value of s in the given interval that has the given circular function value.


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16
Find the exact value without using a calculator.


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17
Find the specified quantity.
Find the value of the arc length when ϴ (the central Angle)is given in degrees instead of
radians.
Find the value of the arc length when ϴ (the central Angle)is given in degrees instead of
radians.
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18
Find the exact circular function value.


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19
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .

circular function value of .

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20
For the given value of s, decide in which quadrant an angle of s radians lies by evaluating sin s and cos s.
s = 47
A)III
B)I
C)IV
D)II
s = 47
A)III
B)I
C)IV
D)II
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21

351°10´
A)6.109
B)6.099
C)6.129
D)6.119
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22

cot s = 0.6921
A)0.3178
B)0.9654
C)0.7470
D)4.1070
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23
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .

circular function value of .

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24
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .

circular function value of .

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25
Find the exact circular function value.


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26
Solve the problem.


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27
Convert the degree measure to radians, correct to four decimal places. Use 3.1416 for π.
72°
A)1.0566
B)1.1566
C)0.9566
D)1.2566
72°
A)1.0566
B)1.1566
C)0.9566
D)1.2566
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28
Find the value of s in the interval [0, π/2] that makes the statement true. Round to four decimal places.
sin s = 0.5954
A)-0.4962
B)0.6378
C)0.6454
D)2.5038
sin s = 0.5954
A)-0.4962
B)0.6378
C)0.6454
D)2.5038
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29
Solve the problem.
The minute hand of a clock is 13 inches long. What distance does its tip move in 16 minutes? Give an exact answer.
The minute hand of a clock is 13 inches long. What distance does its tip move in 16 minutes? Give an exact answer.

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30
Assume that the cities lie on the same north-south line and that the radius of the earth is 6400 km.
Find the latitude of Spokane, WA if Spokane and Jordan Valley, OR, 43.15° N, are 486 km apart.
A)38.8 °N
B)39.5 °N
C)47.5 °N
D)52.46 °N
Find the latitude of Spokane, WA if Spokane and Jordan Valley, OR, 43.15° N, are 486 km apart.
A)38.8 °N
B)39.5 °N
C)47.5 °N
D)52.46 °N
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31

tan s = 7.6725
A)1.4412
B)0.8420
C)1.0120
D)4.5828
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32
Find the exact circular function value.


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33
Solve the problem.
A circular pulley is rotating about its center. Through how many radians would it turn in 22 r
otations?
A circular pulley is rotating about its center. Through how many radians would it turn in 22 r

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34
Find the exact value without using a calculator.


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35
Find the exact values of s in the given interval that satisfy the given condition.


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36
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .

circular function value of .

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37
Convert the radian measure to degrees. Round to the nearest hundredth if necessary.


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38
Solve the problem.
Suppose the tip of the minute hand of a clock is 6 inches from the center of the clock. Determine the distance traveled by the tip of the minute hand in 30 minutes. Give an exact answer.
Suppose the tip of the minute hand of a clock is 6 inches from the center of the clock. Determine the distance traveled by the tip of the minute hand in 30 minutes. Give an exact answer.

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39
Convert the radian measure to degrees. Round to the nearest hundredth if necessary.


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40
Solve the problem.
Electrical wire is being wound around a drum with radius of 1.49 meters. How much line (to the nearest hundredth of a meter)would be wound around the drum if it is rotated through an angle of
275.3°?
A)7.16 m
B)7.26 m
C)6.96 m
D)7.06 m
Electrical wire is being wound around a drum with radius of 1.49 meters. How much line (to the nearest hundredth of a meter)would be wound around the drum if it is rotated through an angle of
275.3°?
A)7.16 m
B)7.26 m
C)6.96 m
D)7.06 m
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41
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .
Find csc ϴ.
circular function value of .
Find csc ϴ.

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42
Solve the problem.


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43
Find the corresponding angle measure in radians.
-150°
-150°

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44
Convert the radian measure to degrees. Round to the nearest hundredth if necessary.


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45
Solve the problem.


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46
Solve the problem.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 43°, find the length of OQ accurate to four decimal places.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 43°, find the length of OQ accurate to four decimal places.

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47
Use the formula v = rω to find the value of the missing variable. Give an exact answer unless otherwise indicated.
v = 218.9 m per sec, Ɯ = 0.63361 radian per sec (Round to four decimal places when necessary.)
A)69.6779 m
B)4.9583 m
C)345.4807 m
D)0.0029 m
v = 218.9 m per sec, Ɯ = 0.63361 radian per sec (Round to four decimal places when necessary.)
A)69.6779 m
B)4.9583 m
C)345.4807 m
D)0.0029 m
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48
Find the exact value of s in the given interval that has the given circular function value.


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49
Convert the degree measure to radians, correct to four decimal places. Use 
81.4687°
A)1.7219
B)1.5219
C)1.6219
D)1.4219

81.4687°
A)1.7219
B)1.5219
C)1.6219
D)1.4219
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50
Use a table or a calculator to evaluate the function. Round to four decimal places.
csc 0.2475
A)0.9695
B)0.2450
C)1.0314
D)4.0820
csc 0.2475
A)0.9695
B)0.2450
C)1.0314
D)4.0820
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51
Find the exact circular function value.


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52

s = 5.6
A)(-0.7756, °°°)
B)(-0.6313, 0.7756)
C)(0.7756, -0.6313)
D)(-0.7756, -0.6313)
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53

sec s = 3.7404
A)0.2706
B)1.8414
C)1.3002
D)4.9830
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54
Use a table or a calculator to evaluate the function. Round to four decimal places.
cot 0.2258
A)0.9746
B)0.2297
C)1.0260
D)4.3532
cot 0.2258
A)0.9746
B)0.2297
C)1.0260
D)4.3532
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55
Convert the degree measure to radians. Leave answer as a multiple of π.
1800°
1800°

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56
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .

circular function value of .

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57
Solve the problem.


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58
Approximate the length using the formula for arc length. Round to the nearest meter.
A tree 460 m away subtends an angle of 2°. Find the height of the tree.
A)32 m
B)13 m
C)16 m
D)35 m
A tree 460 m away subtends an angle of 2°. Find the height of the tree.
A)32 m
B)13 m
C)16 m
D)35 m
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59
Convert the degree measure to radians. Leave answer as a multiple of 
-45°

-45°

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60
Solve the problem.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 54°, find the length of VR accurate to four decimal places.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 54°, find the length of VR accurate to four decimal places.

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61
Find the exact value of s in the given interval that has the given circular function value.


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62
Find the area of a sector of a circle having radius r and central angle . If necessary, express the answer to the nearest
tenth.

tenth.

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63
For the given value of s, decide in which quadrant an angle of s radians lies by evaluating sin s and cos s.
s = 66
A)III
B)IV
C)I
D)II
s = 66
A)III
B)IV
C)I
D)II
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64
Solve the problem.
A pulley of radius 25 cm rotates 7 times in 4 sec. Find the angular speed of the pulley.
A pulley of radius 25 cm rotates 7 times in 4 sec. Find the angular speed of the pulley.

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65
Solve the problem.
Find the radius (to the nearest hundredth of a millimeter)of a pulley if rotating the pulley 109.38° raises the pulley 42.2 mm.
A)22.01 mm
B)22.21 mm
C)22.11 mm
D)21.91 mm
Find the radius (to the nearest hundredth of a millimeter)of a pulley if rotating the pulley 109.38° raises the pulley 42.2 mm.
A)22.01 mm
B)22.21 mm
C)22.11 mm
D)21.91 mm
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66

s = -6.2
A)(-0.9965, -0.0831)
B)(0.9965, -0.0831)
C)(0.9965, 0.0831)
D)(°°°, 0.9965)
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67
Solve the problem.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 13°, find the length of US accurate to four decimal places.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 13°, find the length of US accurate to four decimal places.

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68
Find the exact value without using a calculator.


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69
Solve the problem.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 45°, find the exact length of VR.
Let angle POQ be designated ϴ. Angles PQR and VRQ are right angles. If ϴ = 45°, find the exact length of VR.

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70
Solve the problem.


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71
Use the formula s = rωt to find the value of the missing variable. Give an exact answer.


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72
Find the area of a sector of a circle having radius r and central angle . If necessary, express the answer to the nearest
tenth.

tenth.

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73
Find the exact value without using a calculator.


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74
Convert the radian measure to degrees. Round to the nearest hundredth if necessary.


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75
Solve the problem.
A wheel with a 36-inch radius is marked at two points on the rim. The distance between the marks along the wheel is found to be 12 inches. What is the angle (to the nearest tenth of a degree)
Between the radii to the two marks?
A)17.1°
B)19.1°
C)21.1°
D)15.1°
A wheel with a 36-inch radius is marked at two points on the rim. The distance between the marks along the wheel is found to be 12 inches. What is the angle (to the nearest tenth of a degree)
Between the radii to the two marks?
A)17.1°
B)19.1°
C)21.1°
D)15.1°
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76
Solve the problem.
What is the difference in area covered by a single 12-inch windshield wiper operating with a central angle of 126° compared to a pair of 2-inch wipers operating together each having a central
Angle of 108°? Round to the nearest hundredth.
What is the difference in area covered by a single 12-inch windshield wiper operating with a central angle of 126° compared to a pair of 2-inch wipers operating together each having a central
Angle of 108°? Round to the nearest hundredth.

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77
The figure shows an angle in standard position with its terminal side intersecting the unit circle. Evaluate the indicated
circular function value of .
Find cot ϴ.
circular function value of .
Find cot ϴ.

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78

csc s = 1.1691
A)0.8262
B)1.0262
C)0.9262
D)1.1262
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79
Solve the problem.


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80
Find the exact value without using a calculator.


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