Deck 5: Analytic Trigonometry
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Deck 5: Analytic Trigonometry
1
Determine whether the Law of Sines or the Law of Cosines is needed to solve the tri- angle. Then solve the triangle.



C
2
Use the Heron's formula to find the area of the triangle. Round your answer upto two decimal places.



B
3
Evaluate the expression.



B
4
Use a calculator to calculate the value of
from the given identity.





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5
Use the given values to evaluate (if possible) three trigonometric functions cosx, cscx, tanx.



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6
Use the trigonometric substitution to select the algebraic expression as a trigonomet-

A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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7
Use the cofunction identities to evaluate the expression without using a calculator.



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8
Find the expression as the sine or cosine of an angle.



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9
Solve the following equation.



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10
Use the figure to find the exact value of the trigonometric function.



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11
Evaluate the following expression.



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12
A weight is attached to a spring suspended vertically from a ceiling. When a driving force is applied to the system, the weight moves vertically from its equilibrium position, and this
Motion is modeled by where is the distance from equilibrium (in feet) and is the time (in seconds).
Use the identity

Motion is modeled by where is the distance from equilibrium (in feet) and is the time (in seconds).



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13
Use the sum-to-product formulas to select the sum or difference as a product.



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14
Use a graphing utility to select the correct graph
in the same viewing window. Use the graphs to determine whether
. Explain your reasoning.






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15
Use the given values to evaluate (if possible) three trigonometric functions





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16
Use inverse functions where needed to find all solutions (if they exist) of the given equation on the interval
.




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17
Use the law of Cosines to solve the given triangle. Round your answer to two decimal places.



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18
Use the Law of Sines to solve (if possible) for
. Round your answers to two decimal places.




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19
Use the half-angle formulas to determine the exact value of the given trigonometric expression.



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20
Evaluate the following expression.



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21
Evaluate the expression.



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22
Use the given values to evaluate (if possible) three trigonometric functions cosx, cscx, tanx.



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23
Evaluate the following expression.



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24
Use a graphing utility to graph the function.




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25
Use the half-angle formulas to determine the exact value of the given trigonometric expression.



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26
Solve the following equation.



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27
A weight is attached to a spring suspended vertically from a ceiling. When a driving force is applied to the system, the weight moves vertically from its equilibrium position, and this
Motion is modeled by where is the distance from equilibrium (in feet) and is the time (in seconds).

Motion is modeled by where is the distance from equilibrium (in feet) and is the time (in seconds).



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28
Find all solutions of the following equation in the interval




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29
Find the expression as the sine or cosine of an angle.



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30
Use the Law of Sines to solve (if possible) for
. Round your answers to two decimal places.




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31
Use the figure to find the exact value of the trigonometric function.



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32
Use the cofunction identities to evaluate the expression without using a calculator.



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33
Use the sum-to-product formulas to select the sum or difference as a product.



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34
Given
, use the Law of Cosines to solve the triangle for the value of C. Round answer to two decimal places. 
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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35
Use the trigonometric substitution to select the algebraic expression as a trigonomet-




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36
Evaluate the following expression.



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37
Use a calculator to calculate the value of
from the given identity.





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38
Use inverse functions where needed to find all solutions (if they exist) of the given equation on the interval




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39
Use a graphing utility to select the correct graph
in the same viewing window. Use the graphs to determine whether
Explain your reasoning.






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40
Use the given values to evaluate (if possible) three trigonometric functions cosec





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41
Given
, use the Law of Cosines to solve the triangle for the value of C. Round answer to two decimal places.




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42
Evaluate the following expression.



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43
Use a double-angle formula to rewrite the expression.



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44
Evaluate the following expression.



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45
The monthly sales S (in hundreds of units) of baseball equipment for an Internet sporting goods site are approximated by 
A) March through September
B) April through August
C) March through August
D) August through April
E) May through September

A) March through September
B) April through August
C) March through August
D) August through April
E) May through September
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46
Simplify the following expression algebraically.



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47
Use the Heron's formula to find the area of the triangle. Round your answer upto two decimal places.



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48
Determine whether the Law of Sines or the Law of Cosines is needed to solve the tri- angle. Then solve the triangle.



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49
Perform the multiplication and use the fundamental identities to simplify.



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50
Use the given values to evaluate (if possible) three trigonometric functions sinx, cosx, cotx.



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51
Use the formula
where
to find the trigonometric expression in the following forms.





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52
Simplify the expression algebraically.



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53
Use the trigonometric substitution to select the algebraic expression as a trigonomet- ric function of
, where
. Then find






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54
The table shows the average daily high temperatures in Houston H (in degrees Fahr- enheit) for month t, with
corresponding to January.
Select the correct scatter plot from the above data.





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55
Use the law of Cosines to solve the given triangle. Round your answer to two decimal places.



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56
Find all solutions of the following equation in the interval
.




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57
Find the rate of change of the function



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58
Evaluate the expression.



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59
Use the sum-to-product formulas to select the sum or difference as a product.



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60
Solve the following equation.



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61
Use the low of Cosines to solve the given triangle. Round your answer to two decimal places.



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62
Find the area of the triangle having the indicated angle and sides.
(Round your answer to one decimal place.) 


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63
Find all solutions of the given equation in the interval




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64
Use the Law of Sines to solve (if possible) the triangle. Round your answers to two decimal places.



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65
Determine the angle
in the design of the streetlight shown in the following figure.





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66
Determine whether the Law of Sines or the Law of Cosines is needed to solve the tri- angle. Then solve the triangle. Round your answer to two decimal places.



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67
Given
, use the Law of Cosines to solve the triangle for the value of B. Round answer to two decimal places. 


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