Deck 11: Infinite Series
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Deck 11: Infinite Series
1
Let
be defined recursively by
.
Which of the following statements holds?
A) If
, then
.
B) If
, then
.
C) If
, then
.
D) If
, then
.
E) If
, then 


Which of the following statements holds?
A) If


B) If


C) If


D) If


E) If


If
, then
.


2
Find the sum of the following series. (Use the sum
, as necessary.)
A)
B)

A)

B)

A)
B) 


3
Use the Squeeze Theorem to evaluate the limits.
A)
B)
C)
(Hint: use
.)
A)

B)

C)


A) 7
B) 1
C) 1
B) 1
C) 1
4
Evaluate
.

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5
Use the Squeeze Theorem to evaluate the limits.
A)
B)
C)
(Hint: use
.)
A)

B)

C)


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6
Find the
partial sum of the series
and determine the sum of the series.


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7
Evaluate the limits.
A)
B)
(Hint: simplify the sequence.)
C)
A)

B)

C)

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8
Let
be defined recursively by
.
Which of the following statements holds?
A) If
, then
.
B) If
, then
.
C) If
, then
.
D) If
then
.
E) None of the above is correct.


Which of the following statements holds?
A) If


B) If


C) If


D) If


E) None of the above is correct.
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9
Find the
partial sums of the series
, and determine its sum.


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10
Find the sum of the following series.
A)
B)
C)
A)

B)

C)

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11
Let
be a positive sequence such that
.
Which of the following statement holds?
A) The sequence is decreasing but does not converge.
B) The sequence is decreasing and converging to
.
C) The sequence is increasing and diverging.
D) The sequence is decreasing and converging to
.
E) None of the above is correct.


Which of the following statement holds?
A) The sequence is decreasing but does not converge.
B) The sequence is decreasing and converging to

C) The sequence is increasing and diverging.
D) The sequence is decreasing and converging to

E) None of the above is correct.
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12
Find the partial sums of the series
, and determine if the series converges.

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13
Let
be defined recursively by
,
.
Which of the following statements holds?
A)
is increasing and converging to 1.
B)
is decreasing and converging to 1.
C)
is decreasing and converging to 5.
D)
is increasing and converging to 5.
E) None of the above is correct.



Which of the following statements holds?
A)

B)

C)

D)

E) None of the above is correct.
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14
Let
be defined recursively by
,
. Which of the following statements holds?
A)
is decreasing and converging to 
B)
is increasing and unbounded.
C)
is increasing and converging to 3.
D)
is not monotonic by converging to 3.
E)
is decreasing and unbounded.



A)


B)

C)

D)

E)

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15
Let
be a sequence such that
.
Use the definition of the limit and the Squeeze Theorem to find
.


Use the definition of the limit and the Squeeze Theorem to find

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16
converges, and if so find its limit. Use the following fact: if
, then
.
Ans:
is increasing with upper bound, hence converging. 
Let
be defined recursively by
,
Which of the following statements holds?
A)
is decreasing and converging to 
B)
is decreasing to 
C)
is increasing and converging to 
D)
is decreasing and converging to 
E)
is increasing to 


Ans:


Let



A)


B)


C)


D)


E)


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17
Let
be defined recursively by
,
.
Which of the following statement holds?
A)
is increasing and converging to 1.
B)
is decreasing and converging to 1.
C)
is decreasing and converging to 5.
D)
is increasing and converging to 5.
E) None of the above is correct.



Which of the following statement holds?
A)

B)

C)

D)

E) None of the above is correct.
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18
Evaluate the limits.
A)
B)
C)
A)

B)

C)

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19
Which of the following statements is (are) correct for 
A) The series converges since the partial sums are zero.
B) The series converges since the partial sums are 1 and 0.
C) The series diverges since the partial sums are 1 and 0.
D) The series diverges since the general term does not tend to zero.
E) Answers C and D are correct.

A) The series converges since the partial sums are zero.
B) The series converges since the partial sums are 1 and 0.
C) The series diverges since the partial sums are 1 and 0.
D) The series diverges since the general term does not tend to zero.
E) Answers C and D are correct.
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20
Evaluate the following limits.
A)
B)
C)
A)

B)

C)

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21
Let
. Determine if the series
converges.


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22
Find the partial sums of the series
, and determine its sum.

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23
Use the Comparison Tests to determine if the following series converge.
A)
B)
C)
A)

B)

C)

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24
Evaluate 

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25
Use the Direct Comparison Test or the Limit Comparison Test to determine if the series is convergent.
A)
B)
C)
A)

B)

C)

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26
Determine if the following series converge.
A)
B)
C)
A)

B)

C)

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27
Verify that the conditions for the Integral Test are satisfied, and use it to determine if the series is convergent.
A)
B)
C)
A)

B)

C)

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28
Find the partial sums of the series
, and determine the sum of the series if it is convergent.

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29
Determine whether the series
converges.

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30
Find the partial sums of
, and determine if the series converges.

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31
Evaluate
.

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32
Evaluate
.

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33
Use the Integral Test to determine if the following series converge.
A)
B)
A)

B)

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34
Determine if the following series converge.
A)
B)
C)
A)

B)

C)

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35
Find the
partial sums of the series
, and determine its sum.


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36
Which of the following series diverges?
A)
B)
C)
D)
E) B and D
A)

B)

C)

D)

E) B and D
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37
Determine if the following series converge.
A)
B)
C)
A)

B)

C)

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38
Use the Integral Test and Integration by Parts to determine if the following series converges. 

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39
Determine if the following series converge.
A)
B)
C)
A)

B)

C)

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40
Determine if the following series converge.
A)
B)
C)
A)

B)

C)

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41
Determine if the following series is conditionally convergent, absolutely convergent, or divergent.
A)
B)
A)

B)

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42
Determine if the following series is conditionally convergent, absolutely convergent, or divergent.
A)
B)
C)
A)

B)

C)

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43
Determine whether the series is absolutely convergent, conditionally convergent, or divergent.
A)
B)
C)
A)

B)

C)

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44
Determine whether the series
converges or diverges.

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45
Determine whether the series is conditionally convergent, absolutely convergent, or divergent.
A)
B)
C)
A)

B)

C)

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46
Which of the following statements is incorrect?
A) If
converges, then
also converges.
B) If
converges, then
also converges.
C) If
is bounded and
is absolutely convergent then
is absolutely convergent.
D) If
, then
is absolutely convergent.
E) None of the above is correct.
A) If


B) If


C) If



D) If


E) None of the above is correct.
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47
a) Determine whether the series
is absolutely convergent, conditionally convergent, or divergent.
b) If the series converges to
, find
such that
.

b) If the series converges to



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48
Consider the series
.
A) Determine whether the series is absolutely convergent, conditionally convergent, or divergent.
B) If the series converges to
, find
such that
.
(Hint: use the inequality
.)

A) Determine whether the series is absolutely convergent, conditionally convergent, or divergent.
B) If the series converges to



(Hint: use the inequality

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49
Which one(s) of the following series is(are) conditionally convergent?
A)
B)
C)
D)
E) C and D
A)

B)

C)

D)

E) C and D
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50
Which of the following series is conditionally convergent?
A)
B)
C)
D)
E) B and D
A)

B)

C)

D)

E) B and D
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51
Use the Comparison Tests to determine if the following series converge.
A)
B)
C)
A)

B)

C)

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52
Determine whether the series
converges or diverges.

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53
Determine whether the series
converges or diverges.

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54
Determine whether the series
converges or diverges. If it converges, does it converge conditionally or absolutely?

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55
Determine whether the series is absolutely convergent, conditionally convergent, or divergent.
A)
B)
C)
A)

B)

C)

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56
Which of the following is true?
A) If
converges conditionally, then
converges absolutely.
B) If
converges absolutely, then
converges absolutely.
C) both (A) and (B)
D) neither (A) nor (B)
A) If


B) If


C) both (A) and (B)
D) neither (A) nor (B)
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57
Use the Integral Test to determine whether the series
converges.

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58
Apply the Ratio Test to determine if the series is convergent.
A)
B)
C)
A)

B)

C)

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59
Use the Root Test to determine if the series is convergent.
A)
B)
C)
(Hint: use
.)
D)
A)

B)

C)


D)

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60
Determine whether the series
converges or diverges. If it converges, does it converge conditionally or absolutely?

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61
The radius of convergence of
is:
A)
.
B)
.
C)
.
D)
.
E)
.

A)

B)

C)

D)

E)

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62
Use the Root Test to determine if the following series converge.
A)
B)
C)
A)

B)

C)

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63
Does the series
converge or diverge?

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64
Use the Ratio Test to determine if the following series converge.
A)
B)
C)
A)

B)

C)

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65
Use the formula for geometric series to expand the function
in a power series with center
. Determine the values of
for which the expansion is valid.



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66
Find the values of
for which the series
converges.


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67
The values of
for which the series
converges are:
A)
.
B)
.
C)
.
D)
.
E)
.


A)

B)

C)

D)

E)

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68
Use the Ratio Test to determine if the following series converge.
A)
B)
C)
A)

B)

C)

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69
Does the series
converge or diverge?

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70
The values of
at which the series
converges are:
A)
.
B)
.
C)
.
D)
.
E)
.


A)

B)

C)

D)

E)

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71
Does the series
?converge or diverge

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72
Use the Root Test to determine if the following series converge.
A)
(
)
B)
C)
A)


B)

C)

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73
Find the values of
for which the series
converges.


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74
Determine whether the series is conditionally convergent, absolutely convergent, or divergent.
A)
B)
A)

B)

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75
Let
.
A) Find the values of
for which the series is convergent.
B) Find the series for
.

A) Find the values of

B) Find the series for

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76
Does the series
converge or diverge?

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77
Does the series
converge or diverge?

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78
Find the exact intervals on which the series converge.
A)
B)
C)
A)

B)

C)

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79
Use the Root Test to determine if the following series converge.
A)
B)
C)
A)

B)

C)

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80
If
, then which of the following holds?
A) The series
converges.
B) The series
converges.
C) If
converges, then it converges absolutely.
D) The sequence of partial sums of
is bounded.
E) B and D both hold.

A) The series

B) The series

C) If

D) The sequence of partial sums of

E) B and D both hold.
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