Deck 9: Sequences
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Deck 9: Sequences
1

B
2
Write the first five terms of the sequence. 

D
3
Write the first five terms of the sequence of partial sums. 

D
4
Write the first five terms of the sequence. 

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5
Determine the convergence or divergence of the sequence with the given nth term. If the sequence converges, find its limit. 

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6
Write the first five terms of the sequence of partial sums. 

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7
government program that currently costs taxpayers $3.5 billion per year is cut back 

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8
government program that currently costs taxpayers $2.5 billion per year is cut back 

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9


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10
Write the first three terms of the sequence. 

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11
Match the sequence with its graph.



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12
deposit of $225 is made at the beginning of each month into an account at an 

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13
Match the sequence with its graph.



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14
Write the first five terms of the sequence of partial sums. 

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15
Determine the convergence or divergence of the sequence with the given nth term. If the sequence converges, find its limit. 

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16



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17


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18
Match the sequence with its graph.




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19


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20


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21
the Integral Test to determine the convergence or divergence of the series. 

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22
Suppose the annual spending by tourists in a resort city is $100 million. Approximately 90% of that revenue is again spent in the resort city, and of that amount approximately
90% is again spent in the same city, and so on. Write the expression that gives the total amount of
Spending generated by the $100 million after n years.
90% is again spent in the same city, and so on. Write the expression that gives the total amount of
Spending generated by the $100 million after n years.

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23
Suppose an electronic games manufacturer producing a new product estimates the 

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24
all values of x for which the series converges. For these values of x, write the sum of the series as a function of x.



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25
the sum of the convergent series.



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26


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27
Suppose the winner of a $4,000,000 sweepstakes will be paid $100,000 per year for 40 years, starting a year from now. The money earns 5% interest per year. The present value of the 

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28
the sum of the convergent series. 

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29


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30

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31


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32

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33
the Integral Test to determine the convergence or divergence of the series. 

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34
Suppose the annual spending by tourists in a resort city is $100 million. Approximately 75% of that revenue is again spent in the resort city, and of that amount approximately
75% is again spent in the same city, and so on. Summing all of this spending indefinitely, leads to the
75% is again spent in the same city, and so on. Summing all of this spending indefinitely, leads to the

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35
the sum of the convergent series. 

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36


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37
Determine the convergence or divergence of the series. 

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38
Suppose you go to work at a company that pays $0.08 for the first day, $0.16 for the second day, $0.32 for the third day, and so on. If the daily wage keeps doubling, what would your
Total income be for working 29 days? Round your answer to two decimal places.
A)$21,474,836.48
B)$10,737,418.24
C)$42,949,672.88
D)$171,798,691.52
E)$85,899,345.76
Total income be for working 29 days? Round your answer to two decimal places.
A)$21,474,836.48
B)$10,737,418.24
C)$42,949,672.88
D)$171,798,691.52
E)$85,899,345.76
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39

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40
Suppose a ball is dropped from a height of 16 feet. Each time it drops h feet, it rebounds 0.85h feet. Find the total distance traveled by the ball. Round your answer to two decimal
Places.
A)229.33 feet
B)410.67 feet
C)181.33 feet
D)197.33 feet
E)213.33 feet
Places.
A)229.33 feet
B)410.67 feet
C)181.33 feet
D)197.33 feet
E)213.33 feet
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41
the Integral Test to determine the convergence or divergence of the series. 

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42
Theorem 9.11 to determine the convergence or divergence of the series. 

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43
Theorem 9.11 to determine the convergence or divergence of the series. 

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44



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45

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46
Determine the convergence or divergence of the series. 

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47


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48
Determine the convergence or divergence of the series. 

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49

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50
Determine the convergence or divergence of the series. 

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51


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52
the Direct Comparison Test to determine the convergence or divergence of the 

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53
the Direct Comparison Test to determine the convergence or divergence 

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54
the Direct Comparison Test (if possible) to determine whether the series 

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55
Theorem 9.11 to determine the convergence or divergence of the series. 

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56
the Direct Comparison Test to determine the convergence or divergence of the series 

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57

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58
the Integral Test to determine the convergence or divergence of the series. 

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59
the Direct Comparison Test (if possible) to determine whether the series 

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60
the Direct Comparison Test (if possible) to determine whether the series 

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61
the Limit Comparison Test (if possible) to determine whether the series 

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62


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63
the Limit Comparison Test to determine the convergence or divergence of the 

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64


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65
Determine the convergence or divergence of the series 

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66


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67


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68


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69
the Limit Comparison Test (if possible) to determine whether the series 

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70
the Direct Comparison Test to determine the convergence or divergence 

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71
the Direct Comparison Test to determine the convergence or divergence 

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72
the Limit Comparison Test to determine the convergence or divergence of the 

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73

A)The series converges conditionally but does not converge absolutely.
B)The series converges absolutely but does not converge conditionally.
C)The series diverges.
D)The series converges absolutely.
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74
the Limit Comparison Test (if possible) to determine whether the series 

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75
the Limit Comparison Test to determine the convergence or divergence of the 

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76


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77
the Limit Comparison Test to determine the convergence or divergence of the 

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78


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79
the Limit Comparison Test to determine the convergence or divergence of 

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80


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