Deck 12: Exponential Functions and Logarithmic Functions
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Deck 12: Exponential Functions and Logarithmic Functions
1
Solve the problem.


C
2
Graph.


C
3
Graph.


A
4
Translate the sentence to an inequality.


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5
Solve the problem.


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6
Solve the problem.


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7
Graph.


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8
Solve the problem.
An accountant tabulated a firm's profits for four recent years in the following table:
An accountant tabulated a firm's profits for four recent years in the following table:

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9
Graph.


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10
Graph.


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11
Solve the problem.
An accountant tabulated a firm's profits for four recent years in the following table:
An accountant tabulated a firm's profits for four recent years in the following table:

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12
Solve the problem.
An accountant tabulated a firm's profits for four recent years in the following table:
An accountant tabulated a firm's profits for four recent years in the following table:

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13
Solve the problem.


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14
Solve the problem.


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15
Graph.
f(x)= 3x
f(x)= 3x

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16
Graph.


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17
Graph.


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18
Graph.


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19
Solve the problem.
Suppose that $90,000 is invested at 4% interest, compounded annually. Find a function A for the amount in the account after t years.
Suppose that $90,000 is invested at 4% interest, compounded annually. Find a function A for the amount in the account after t years.

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20
Solve the problem.
An accountant tabulated a firm's profits for four recent years in the following table:
An accountant tabulated a firm's profits for four recent years in the following table:

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21
Find the requested composition of functions.


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22
Translate the sentence to an inequality.


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23
Find f(x)and g(x)such that h(x)= (f g)(x).
{(6, -6), (6, -5), (4, -4), (2, -3)}
A){(-6, 6), (-5, 6), (-4, 4), (-3, 2)}
B){(-5, -6), (-6, 4), (6, 6), (-5, -4)}
C){(-5, -6), (-3, 4), (6, 4), (-5, -4)}
{(6, -6), (6, -5), (4, -4), (2, -3)}
A){(-6, 6), (-5, 6), (-4, 4), (-3, 2)}
B){(-5, -6), (-6, 4), (6, 6), (-5, -4)}
C){(-5, -6), (-3, 4), (6, 4), (-5, -4)}
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24
Find the requested composition of functions.


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25
Find the requested composition of functions.


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26
Find the requested composition of functions.


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27
Find the requested composition of functions.


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28
Find f(x)and g(x)such that h(x)= (f g)(x).
{(10, -3), (-4, 20), (12, -20)}
A){(-3, 10), (20, -4), (-20, 12)}
B){(10, 20), (10, -4), (-20, 12)}
C){(-3, 10), (12, -4), (-20, 20)}
{(10, -3), (-4, 20), (12, -20)}
A){(-3, 10), (20, -4), (-20, 12)}
B){(10, 20), (10, -4), (-20, 12)}
C){(-3, 10), (12, -4), (-20, 20)}
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29
Translate the sentence to an inequality.


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30
Find the requested composition of functions.


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31
Translate the sentence to an inequality.


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32
Find f(x)and g(x)such that h(x)= (f g)(x).
{(-6, 2), (-2, 6), (9, -2), (-9, 2)}
A){(2, -6), (6, -2), (-2, 9), (2, -9)}
B){(2, 9), (9, -2), (2, -6), (-2, -9)}
C){(2, 9), (6, -2), (2, -2), (-2, -9)}
{(-6, 2), (-2, 6), (9, -2), (-9, 2)}
A){(2, -6), (6, -2), (-2, 9), (2, -9)}
B){(2, 9), (9, -2), (2, -6), (-2, -9)}
C){(2, 9), (6, -2), (2, -2), (-2, -9)}
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33
Find f(x)and g(x)such that h(x)= (f g)(x).


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34
Translate the sentence to an inequality.


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35
Find the requested composition of functions.


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36
Find the requested composition of functions.


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37
Find f(x)and g(x)such that h(x)= (f g)(x).
{(2, 9), (-2, -9), (4, -7), (-4, 7)}
A){(9, 2), (-9, -2), (-7, -2), (7, -4)}
B){(9, 2), (2, -2), (-7, 4), (7, -4)}
C){(9, 2), (-9, -2), (-7, 4), (7, -4)}
{(2, 9), (-2, -9), (4, -7), (-4, 7)}
A){(9, 2), (-9, -2), (-7, -2), (7, -4)}
B){(9, 2), (2, -2), (-7, 4), (7, -4)}
C){(9, 2), (-9, -2), (-7, 4), (7, -4)}
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38
Translate the sentence to an inequality.


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39
Find the requested composition of functions.


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40
Translate the sentence to an inequality.


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41
Graph the equation of the relation using a solid line, and then graph the inverse of the relation using a dashed line.
y = 8x - 6
y = 8x - 6

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42
Determine whether the function is one-to-one.
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43
Find the inverse of the relation.


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44
Determine whether the function is one-to-one.
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45
Determine whether the function is one-to-one.
-
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46
Graph the relation using solid circles and the inverse using open circles.
{(10, -5), (8, -4), (6, -3), (4, -2)}
{(10, -5), (8, -4), (6, -3), (4, -2)}

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47
Determine whether the function is one-to-one.
-
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48
Find an equation of the inverse of the relation.


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49
Determine whether the function is one-to-one.
-
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50
Graph the equation of the relation using a solid line, and then graph the inverse of the relation using a dashed line.


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51
Determine whether the function is one-to-one.
-f(x)= 2x - 4
-f(x)= 2x - 4
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52
Determine whether the function is one-to-one.
-
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53
Find an equation of the inverse of the relation.
y = 6x + 5
A)x = 5y + 6
B)y = 5x + 6
C)y = -6x - 5
D)x = 6y + 5
y = 6x + 5
A)x = 5y + 6
B)y = 5x + 6
C)y = -6x - 5
D)x = 6y + 5
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54
Graph the relation using solid circles and the inverse using open circles.
{(2, 8), (-2, -8), (2, -6), (-2, 6)}
{(2, 8), (-2, -8), (2, -6), (-2, 6)}

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55
Graph the relation using solid circles and the inverse using open circles.
{(-10, 14), (-17, -13), (18, 3)}
{(-10, 14), (-17, -13), (18, 3)}

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56
Find an equation of the inverse of the relation.


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57
Graph the relation using solid circles and the inverse using open circles.
{(-8, -5), (5, 8), (9, 9), (-9, -9)}
{(-8, -5), (5, 8), (9, 9), (-9, -9)}

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58
Determine whether the function is one-to-one.
-
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59
Graph the equation of the relation using a solid line, and then graph the inverse of the relation using a dashed line.
y = 6 + 5x
y = 6 + 5x

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60
Find an equation of the inverse of the relation.
y = 2 + 6x
A)y = 6 - 2x
B)x = 6 + 2y
C)y = 6 + 2x
D)x = 2 + 6y
y = 2 + 6x
A)y = 6 - 2x
B)x = 6 + 2y
C)y = 6 + 2x
D)x = 2 + 6y
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61
Use composition to verify whether or not the inverse is correct.
-
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62
Use composition to verify whether or not the inverse is correct.
-
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63
Use composition to verify whether or not the inverse is correct.
-
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64
Determine whether the function is one-to-one.
-
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65
Determine whether the function is one-to-one.


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66
Determine whether the function is one-to-one.


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67
Use composition to verify whether or not the inverse is correct.
-
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68
Graph the function as a solid curve and its inverse as a dashed curve.


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69
Determine whether the function is one-to-one.


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70
Use composition to verify whether or not the inverse is correct.
-
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71
Determine whether the given function is one-to-one. If so, find a formula for the inverse.


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72
Determine whether the function is one-to-one.


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73
Determine whether the function is one-to-one.


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74
Determine whether the function is one-to-one.


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75
Use composition to verify whether or not the inverse is correct.
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76
Solve the problem.


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77
Graph the function as a solid curve and its inverse as a dashed curve.
f(x)= 5x
f(x)= 5x

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78
Use composition to verify whether or not the inverse is correct.
-
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79
Determine whether the function is one-to-one.


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80
Solve the problem.


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