Deck 7: Arithmetic Sequence: Common Difference and First n Terms
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Deck 7: Arithmetic Sequence: Common Difference and First n Terms
1
Find the first six terms of the sequence.

A) 15, 21, 27, 33, 39, 45
B) 9, 6, 12, 18, 24, 30
C) 0, 6, 12, 18, 24, 30
D) 9, 15, 21, 27, 33, 39

A) 15, 21, 27, 33, 39, 45
B) 9, 6, 12, 18, 24, 30
C) 0, 6, 12, 18, 24, 30
D) 9, 15, 21, 27, 33, 39
D
2

A
3
Decide whether the given sequence is finite or infinite.

A) Infinite
B) Finite

A) Infinite
B) Finite
A
4

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7

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8
Decide whether the given sequence is finite or infinite.

A) Finite
B) Infinite

A) Finite
B) Infinite
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9
Decide whether the given sequence is finite or infinite.

A) Finite
B) Infinite

A) Finite
B) Infinite
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10
Decide whether the given sequence is finite or infinite.
10, 11, 12, 13
A) Infinite
B) Finite
10, 11, 12, 13
A) Infinite
B) Finite
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11

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12

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13
Decide whether the given sequence is finite or infinite.

A) Finite
B) Infinite

A) Finite
B) Infinite
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14
Decide whether the given sequence is finite or infinite.
3, 4, 5, 6, . . .
A) Finite
B) Infinite
3, 4, 5, 6, . . .
A) Finite
B) Infinite
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15
Decide whether the given sequence is finite or infinite.

A) Infinite
B) Finite

A) Infinite
B) Finite
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16
Decide whether the given sequence is finite or infinite.

A) Finite
B) Infinite

A) Finite
B) Infinite
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17
Decide whether the given sequence is finite or infinite.

A) Finite
B) Infinite

A) Finite
B) Infinite
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18

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19
Decide whether the given sequence is finite or infinite.

A) Finite
B) Infinite

A) Finite
B) Infinite
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20

A) 4, 8, 16, 32, 64
B) 2, 4, 8, 16, 32
C) 1, 4, 9, 16, 25
D) 1, 2, 4, 8, 16
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21
Evaluate the sum. Round to two decimal places, if necessary.

A) 99
B) 74
C) 41
D) 86

A) 99
B) 74
C) 41
D) 86
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22
Evaluate the sum. Round to two decimal places, if necessary.


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23
Use a graphing calculator to evaluate the series.


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24
Evaluate the sum using the given information.


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25
Evaluate the sum using the given information.


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26
Evaluate the sum. Round to two decimal places, if necessary.

A) 8
B) 32
C) 16
D) 30

A) 8
B) 32
C) 16
D) 30
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27
Evaluate the sum. Round to two decimal places, if necessary.


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28
Evaluate the sum using the given information.


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29
Evaluate the sum. Round to two decimal places, if necessary.


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30
Find the first six terms of the sequence.


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31
Evaluate the sum. Round to two decimal places, if necessary.

A) 27
B) 24
C) 30
D) 18

A) 27
B) 24
C) 30
D) 18
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32
Find the first six terms of the sequence.

A) 3, 4, 7, 11, 18, 29
B) 3, 4, 6, 9, 12, 15
C) 3, 4, 12, 48, 576, 27,648
D) 3, 4, 7, 8, 11, 11

A) 3, 4, 7, 11, 18, 29
B) 3, 4, 6, 9, 12, 15
C) 3, 4, 12, 48, 576, 27,648
D) 3, 4, 7, 8, 11, 11
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33
Evaluate the sum. Round to two decimal places, if necessary.


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34
Use a graphing calculator to evaluate the series.


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35
Find the first six terms of the sequence.


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36
Evaluate the sum. Round to two decimal places, if necessary.


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37
Evaluate the sum. Round to two decimal places, if necessary.

A) 18
B) 16
C) 12
D) 20

A) 18
B) 16
C) 12
D) 20
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38
Find the first six terms of the sequence.

A) 7, 7, 14, 14, 21, 21
B) 7, 7, 14, 21, 35, 56
C) 7, 7, 14, 21, 28, 35
D) 7, 7, 49, 343, 16,807, 5,764,801

A) 7, 7, 14, 14, 21, 21
B) 7, 7, 14, 21, 35, 56
C) 7, 7, 14, 21, 28, 35
D) 7, 7, 49, 343, 16,807, 5,764,801
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39
Evaluate the sum. Round to two decimal places, if necessary.

A) 78
B) 40
C) 21
D) 39

A) 78
B) 40
C) 21
D) 39
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40
Evaluate the sum using the given information.


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41
Evaluate the sum using the given information.

A) 0.1
B) 0.6
C) 0.5
D) 0.8

A) 0.1
B) 0.6
C) 0.5
D) 0.8
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42
Use the summation properties to evaluate the series. The following rules may be needed: 

A) 146
B) 149
C) 154
D) 126


A) 146
B) 149
C) 154
D) 126
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43
Evaluate the sum using the given information.


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44
Evaluate the sum using the given information.


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45
Use the summation properties to evaluate the series. The following rules may be needed: 

A) 685
B) 465
C) 1125
D) 915


A) 685
B) 465
C) 1125
D) 915
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46
Evaluate the sum using the given information.


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47
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Converges
B) Diverges
diverges.

A) Converges
B) Diverges
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48
Use the summation properties to evaluate the series. The following rules may be needed: 



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49
Write the series using summation notation.


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50
Use the summation properties to evaluate the series. The following rules may be needed: 



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51
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Diverges
B) Converges
diverges.

A) Diverges
B) Converges
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52
Evaluate the sum using the given information.

A) 5.8
B) 4.8
C) 0.192
D) 19.2

A) 5.8
B) 4.8
C) 0.192
D) 19.2
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53
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Diverges
B) Converges
diverges.

A) Diverges
B) Converges
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54
Use the summation properties to evaluate the series. The following rules may be needed: 



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55
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Converges
B) Diverges
diverges.

A) Converges
B) Diverges
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56
Write the series using summation notation.


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57
Use the summation properties to evaluate the series. The following rules may be needed: 

A) 462
B) 112
C) 441
D) 1764


A) 462
B) 112
C) 441
D) 1764
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58
Write the series using summation notation.


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59
Use the summation properties to evaluate the series. The following rules may be needed: 



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60
Use the summation properties to evaluate the series. The following rules may be needed: 



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61
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).


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62
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).


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63
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

diverges.

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64
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Converges
B) Diverges
diverges.

A) Converges
B) Diverges
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65
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).


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66
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).

A) 0, 1, 6, 11, 16, 21
B) 1, 6, 11, 16, 21, 26
C) 1, 6, 11, 16, 21, 27
D) 1, 5, 9, 13, 17, 21

A) 0, 1, 6, 11, 16, 21
B) 1, 6, 11, 16, 21, 26
C) 1, 6, 11, 16, 21, 27
D) 1, 5, 9, 13, 17, 21
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67
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

diverges.

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68
Find the common difference for the arithmetic sequence.
5, 6, 7, 8, . . .
A) 0.75
B) 5
C) 15
D) 1
5, 6, 7, 8, . . .
A) 0.75
B) 5
C) 15
D) 1
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69
Find the common difference for the arithmetic sequence.
8, 13, 18, 23, . . .
A) 15
B) 5
C) 0.05
D)
8, 13, 18, 23, . . .
A) 15
B) 5
C) 0.05
D)

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70
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).
The first term is 20, and the common difference is 7;
A) 7, 27, 47, 67, 87
B) 20, 7, 34, 41, 48
C) 20, 7, 54, 81, 108
D) 20, 27, 34, 41, 48
The first term is 20, and the common difference is 7;

A) 7, 27, 47, 67, 87
B) 20, 7, 34, 41, 48
C) 20, 7, 54, 81, 108
D) 20, 27, 34, 41, 48
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71
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.
Suppose that an insect population density, in thousands, during year n can be modeled by the recursively defined sequence:
Use technology to graph the sequence for n = 1, 2, 3, . . . , 20 . Describe what happens to the population density
Function.
A) The insect population increases every year.
B) The insect population stabilizes near 11.65 thousand.
C) The insect population stabilizes near 12.58 thousand.
D) The insect population stabilizes near 8.45 thousand.
diverges.
Suppose that an insect population density, in thousands, during year n can be modeled by the recursively defined sequence:

Function.
A) The insect population increases every year.
B) The insect population stabilizes near 11.65 thousand.
C) The insect population stabilizes near 12.58 thousand.
D) The insect population stabilizes near 8.45 thousand.
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72
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Diverges
B) Converges
diverges.

A) Diverges
B) Converges
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73
Find the common difference for the arithmetic sequence.


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74
Find
for the following arithmetic sequence.
2, 10, 18, 26, 34, . . .

2, 10, 18, 26, 34, . . .

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75
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).


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76
Find
for the following arithmetic sequence.



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77
Write the first n terms of the given arithmetic sequence (the value of n is indicated in the question).


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78
Find
for the following arithmetic sequence.



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79
Graph the function corresponding to the sequence defined. Use the graph to decide whether the sequence converges or
diverges.

A) Converges
B) Diverges
diverges.

A) Converges
B) Diverges
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80
Find
for the following arithmetic sequence.
2, 6, 10, 14, 18, . . .

2, 6, 10, 14, 18, . . .

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