Deck 7: Sequences and Series
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Deck 7: Sequences and Series
1
Find a possible formula for the general term of the given sequence, assume that the first term has index 1.{1, 4, 7, 10, 13, …}
A) {2n - 1}
B) {3n + 1}
C) {3n - 2}
D)
A) {2n - 1}
B) {3n + 1}
C) {3n - 2}
D)
C
2
Find a possible formula for the general term of the given sequence, assume that the first term has index 0.
A)
B)
C)
D)
A)
B)
C)
D)
D
3
Find a possible formula for the general term of the given sequence, assume that the first term has index 1.
A)
B)
C)
D)
A)
B)
C)
D)
B
4
Find a possible formula for the general term of the given sequence, assume that the first term has index 0.
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5
Provide the first five terms of the sequence: Assume that the first term has index 1.
A)
B)
C)
D)
A)
B)
C)
D)
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6
Provide the first five terms of the sequence: Assume that the first term has index 1.
A)
B)
C)
D)
A)
B)
C)
D)
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7
Provide the first five terms of the sequence Assume that the first term has index 1.
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8
Provide the first five terms of the sequence Assume that the first term has index
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9
Find the least upper bound and the greatest lower bound of the sequence:
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10
Find the least upper bound and the greatest lower bound of the sequence:
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11
Write the arithmetic sequence in the form:
A)
B)
C)
D) none of these
A)
B)
C)
D) none of these
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12
Write the arithmetic sequence in the form:
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13
Give the first five terms of the geometric sequence with c = 5, and r =
A)
B)
C)
D) none of these
A)
B)
C)
D) none of these
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14
Give the first five terms of the geometric sequence with c = 3, and r = -
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15
Use the difference test in Theorem 7.6 to analyze the monotonicity of the sequence Assume that the first term has index 1.
A) Strictly decreasing
B) Eventually decreasing
C) Strictly increasing
D) Eventually increasing
A) Strictly decreasing
B) Eventually decreasing
C) Strictly increasing
D) Eventually increasing
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16
Use the difference test in Theorem 7.6 to analyze the monotonicity of the sequence
A) Strictly decreasing
B) Eventually decreasing
C) Eventually increasing
D) Strictly increasing
A) Strictly decreasing
B) Eventually decreasing
C) Eventually increasing
D) Strictly increasing
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17
Use the ratio test in Theorem 7.6 to analyze the monotonicity of the sequence
A) Strictly increasing
B) Eventually increasing
C) Strictly decreasing
D) Eventually decreasing
A) Strictly increasing
B) Eventually increasing
C) Strictly decreasing
D) Eventually decreasing
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18
Use the derivative test in Theorem 7.6 to analyze the monotonicity of the sequence Assume that the first term has index 1.
A) Strictly decreasing
B) Eventually decreasing
C) Strictly increasing
D) Eventually increasing
A) Strictly decreasing
B) Eventually decreasing
C) Strictly increasing
D) Eventually increasing
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19
Use the derivative test in Theorem 7.6 to analyze the monotonicity of the sequence
A) Strictly increasing
B) Strictly decreasing
C) Eventually decreasing
D) Eventually increasing
A) Strictly increasing
B) Strictly decreasing
C) Eventually decreasing
D) Eventually increasing
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20
Use the derivative test in Theorem 7.6 to analyze the monotonicity of the sequence
A) Strictly decreasing
B) Strictly increasing
C) Eventually decreasing
D) Eventually increasing
A) Strictly decreasing
B) Strictly increasing
C) Eventually decreasing
D) Eventually increasing
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21
Determine whether the sequence is monotonic or eventually monotonic and whether the sequence is bounded. If the sequence is convergent, find the limit.
A) Monotonic, bounded, converges to 1
B) Monotonic, bounded, converges to 0
C) Eventually monotonic, bounded, converges to 1
D) Eventually monotonic, bounded, converges to 0
A) Monotonic, bounded, converges to 1
B) Monotonic, bounded, converges to 0
C) Eventually monotonic, bounded, converges to 1
D) Eventually monotonic, bounded, converges to 0
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22
Determine whether the sequence is monotonic or eventually monotonic and whether the sequence is bounded. If the sequence is convergent, find the limit.
A) Eventually monotonic, bounded, converges to 0
B) Monotonic, unbounded, diverges
C) Monotonic, bounded, converges to 0
D) Monotonic, bounded, converges to 1
A) Eventually monotonic, bounded, converges to 0
B) Monotonic, unbounded, diverges
C) Monotonic, bounded, converges to 0
D) Monotonic, bounded, converges to 1
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23
Determine whether the sequence is monotonic or eventually monotonic and whether the sequence is bounded. If the sequence is convergent, find the limit.
A) Monotonic, bounded, converges to 1
B) Monotonic, unbounded, diverges
C) Not monotonic, bounded, diverges
D) Monotonic, bounded, converges to 0
A) Monotonic, bounded, converges to 1
B) Monotonic, unbounded, diverges
C) Not monotonic, bounded, diverges
D) Monotonic, bounded, converges to 0
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24
Determine whether the sequence is monotonic or eventually monotonic and whether the sequence is bounded. If the sequence is convergent, find the limit.
A) Monotonic, bounded, converges to 1
B) Monotonic, bounded, converges to 0
C) Eventually monotonic, bounded, converges to 0
D) Eventually monotonic, bounded, converges to 1
A) Monotonic, bounded, converges to 1
B) Monotonic, bounded, converges to 0
C) Eventually monotonic, bounded, converges to 0
D) Eventually monotonic, bounded, converges to 1
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25
Determine whether the sequence is monotonic or eventually monotonic and whether the sequence is bounded. If the sequence is convergent, find the limit.
A) Monotonic, bounded, converges to 0
B) Not monotonic, bounded, diverges
C) Not monotonic, bounded, converges to 1
D) Not monotonic, bounded, converges to 0
A) Monotonic, bounded, converges to 0
B) Not monotonic, bounded, diverges
C) Not monotonic, bounded, converges to 1
D) Not monotonic, bounded, converges to 0
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26
Determine whether the sequence is monotonic or eventually monotonic and whether the sequence is bounded. If the sequence is convergent, find the limit.
A) Monotonic, bounded, converges to 0
B) Monotonic, not bounded, diverges
C) Monotonic, bounded, converges to 1
D) Not monotonic, bounded, diverges
A) Monotonic, bounded, converges to 0
B) Monotonic, not bounded, diverges
C) Monotonic, bounded, converges to 1
D) Not monotonic, bounded, diverges
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27
Does the sequence converge? If it does, give the limit.
A) Converges to 1
B) Diverges
C) Converges to -1
D) Converges to 0
A) Converges to 1
B) Diverges
C) Converges to -1
D) Converges to 0
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28
Does the sequence converge? If it does, give the limit.
A) Converges to 1
B) Converges to 0
C) Diverges
D) Converges to -1
A) Converges to 1
B) Converges to 0
C) Diverges
D) Converges to -1
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29
Does the sequence converge? If it does, give the limit.
A) Converges to 1
B) Converges to 0
C) Converges to -1
D) Diverges
A) Converges to 1
B) Converges to 0
C) Converges to -1
D) Diverges
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30
Does the sequence converge? If it does, give the limit.
A) Diverges
B) Converges to 1
C) Converges to -1
D) Converges to 0
A) Diverges
B) Converges to 1
C) Converges to -1
D) Converges to 0
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31
Does the sequence converge? If it does, give the limit.
A) Diverges
B) Converges to 1
C) Converges to 0
D) Converges to -1
A) Diverges
B) Converges to 1
C) Converges to 0
D) Converges to -1
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32
Does the sequence converge? If it does, give the limit.
A) Converges to 1
B) Converges to 0
C) Converges to -1
D) Diverges
A) Converges to 1
B) Converges to 0
C) Converges to -1
D) Diverges
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33
Provide the first five terms of the series
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34
Provide the first five terms of the series
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35
Provide the first five terms of the series
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36
Provide the first four terms of the sequence of partial sums for the series
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37
Provide the first four terms of the sequence of partial sums for the series
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38
Does the series converge or diverge? If it converges, then find the sum.
A) Converges, sum is 4
B) Converges, sum is 8
C) Diverges
D) Converges, sum is 2
A) Converges, sum is 4
B) Converges, sum is 8
C) Diverges
D) Converges, sum is 2
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39
Does the series converge or diverge? If it converges, then find the sum.
A) Converges, sum is 3
B) Converges, sum is 3/2
C) Diverges
D) Converges, sum is 1
A) Converges, sum is 3
B) Converges, sum is 3/2
C) Diverges
D) Converges, sum is 1
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40
Does the series converge or diverge? If it converges, then find the sum.
A) Converges, sum is
B) Converges, sum is
C) Converges, sum is 1/12
D) Diverges
A) Converges, sum is
B) Converges, sum is
C) Converges, sum is 1/12
D) Diverges
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41
Does the series converge or diverge? If it converges, then find the sum.
A) Converges, sum is 2/5
B) Converges, sum is 4/25
C) Diverges
D) Converges, sum is 4/35
A) Converges, sum is 2/5
B) Converges, sum is 4/25
C) Diverges
D) Converges, sum is 4/35
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42
Does the series converge or diverge? If it converges, then find the sum.
A) Converges, sum is
B) Converges, sum is 3/16
C) Converges, sum is 12
D) Diverges
A) Converges, sum is
B) Converges, sum is 3/16
C) Converges, sum is 12
D) Diverges
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43
Does the series converge or diverge? If it converges, then find the sum.
A) Diverges
B) Converges, sum is 5/6
C) Converges, sum is 11/6
D) Converges, sum is 1/3
A) Diverges
B) Converges, sum is 5/6
C) Converges, sum is 11/6
D) Converges, sum is 1/3
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44
Does the series converge or diverge? If it converges, then find the sum.
A) Diverges
B) Converges, sum is 2
C) Converges, sum is 8
D) Converges, sum is 4
A) Diverges
B) Converges, sum is 2
C) Converges, sum is 8
D) Converges, sum is 4
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45
Does the series converge or diverge? If it converges, then find the sum.
A) Diverges
B) Converges, sum is 5/2
C) Converges, sum is 5/3
D) Converges, sum is 2/3
A) Diverges
B) Converges, sum is 5/2
C) Converges, sum is 5/3
D) Converges, sum is 2/3
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46
Use divergence test to analyze the series
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47
Use divergence test to analyze the series
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48
Use divergence test to analyze the series
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49
Use integral test to determine whether the series converges or diverges.
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50
Use integral test to determine whether the series converges or diverges.
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51
Use integral test to determine whether the series converges or diverges.
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52
Use either divergence or integral test to determine whether the series converges or diverges.
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53
Use either divergence or integral test to determine whether the series converges or diverges.
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54
Use either divergence or integral test to determine whether the series converges or diverges.
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55
Use either divergence or integral test to determine whether the series converges or diverges.
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56
Use one of the comparison tests to determine whether the series converges or diverges.
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57
Use one of the comparison tests to determine whether the series converges or diverges.
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58
Use one of the comparison tests to determine whether the series converges or diverges.
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59
Use one of the comparison tests to determine whether the series converges or diverges.
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60
Use one of the comparison tests to determine whether the series converges or diverges.
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61
Use one of the comparison tests to determine whether the series converges or diverges.
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62
Use one of the comparison tests to determine whether the series converges or diverges.
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63
Use one of the comparison tests to determine whether the series converges or diverges.
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64
Use one of the comparison tests to determine whether the series converges or diverges.
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65
Use ratio test to determine whether the series converges or diverges.
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66
Use ratio test to determine whether the series converges or diverges.
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67
Use ratio test to determine whether the series converges or diverges.
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68
Use ratio test to determine whether the series converges or diverges.
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69
Use ratio test to determine whether the series converges or diverges.
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70
Use root test to determine whether the series converges or diverges.
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71
Use root test to determine whether the series converges or diverges.
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72
Use root test to determine whether the series converges or diverges.
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73
Use root test to determine whether the series converges or diverges.
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74
Use root test to determine whether the series converges or diverges.
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75
Use any convergence test to determine whether the series converges or diverges.
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76
Use any convergence test to determine whether the series converges or diverges.
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77
Use any convergence test to determine whether the series converges or diverges.
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78
Use any convergence test to determine whether the series converges or diverges.
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79
Use any convergence test to determine whether the series converges or diverges.
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80
Use any convergence test to determine whether the series converges or diverges.
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