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Write the first six terms of the sequence defined by the function. f(n) = 2n(n - 1)


A) 0, 4, 12, 24, 40, 60
B) -4, 0, 12, 24, 40, 60
C) 4, 12, 24, 40, 60, 168
D) -4, -12, 24, -40, -60, 0
E) 4, 12, 24, 40, 60, 84

F) All of the above
G) C) and D)

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Use the binomial theorem to expand the binomial. Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)


A) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
B) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
C) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
D) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
E) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)

F) D) and E)
G) A) and B)

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Find the indicated nth term of the geometric sequence. 6th term: Find the indicated nth term of the geometric sequence. 6th term:   A)    B)    C)    D)    E)


A) Find the indicated nth term of the geometric sequence. 6th term:   A)    B)    C)    D)    E)
B) Find the indicated nth term of the geometric sequence. 6th term:   A)    B)    C)    D)    E)
C) Find the indicated nth term of the geometric sequence. 6th term:   A)    B)    C)    D)    E)
D) Find the indicated nth term of the geometric sequence. 6th term:   A)    B)    C)    D)    E)
E) Find the indicated nth term of the geometric sequence. 6th term:   A)    B)    C)    D)    E)

F) None of the above
G) All of the above

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Find the rational number representation of the repeating decimal. Find the rational number representation of the repeating decimal.   A)    B)    C)    D)    E)


A) Find the rational number representation of the repeating decimal.   A)    B)    C)    D)    E)
B) Find the rational number representation of the repeating decimal.   A)    B)    C)    D)    E)
C) Find the rational number representation of the repeating decimal.   A)    B)    C)    D)    E)
D) Find the rational number representation of the repeating decimal.   A)    B)    C)    D)    E)
E) Find the rational number representation of the repeating decimal.   A)    B)    C)    D)    E)

F) A) and B)
G) A) and C)

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Determine whether the sequence is arithmetic. If so, find the common difference. 8, 10, 12, 14, 16


A) 8
B) 6
C) -2
D) 2
E) not arithmetic

F) A) and E)
G) A) and B)

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Find the sum. Find the sum.   A) 1 B)    C)    D)    E)


A) 1
B) Find the sum.   A) 1 B)    C)    D)    E)
C) Find the sum.   A) 1 B)    C)    D)    E)
D) Find the sum.   A) 1 B)    C)    D)    E)
E) Find the sum.   A) 1 B)    C)    D)    E)

F) A) and B)
G) None of the above

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Find the sum of the infinite geometric sequence. 3 + 1.5 + 0.75 ...


A) s = 3
B) s = 6
C) s = 9
D) s = 12
E) s = 1.5

F) B) and D)
G) None of the above

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Evaluate the expression. Evaluate the expression.   A) 84 B) 83 C) 1 D) 79 E) -4


A) 84
B) 83
C) 1
D) 79
E) -4

F) A) and C)
G) A) and D)

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Evaluate the sum. Evaluate the sum.   A) 2 B) 264 C) 132 D) 9 E) none of these


A) 2
B) 264
C) 132
D) 9
E) none of these

F) B) and E)
G) C) and D)

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Determine whether the sequence is geometric. If so, find the common ratio. -1, -3, -5, -7,...


A) -2
B) -1
C) Determine whether the sequence is geometric. If so, find the common ratio. -1, -3, -5, -7,... A) -2 B) -1 C)    D) 2 E) not geometric
D) 2
E) not geometric

F) D) and E)
G) B) and D)

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Determine whether the sequence is arithmetic. If so, find the common difference. 5, 25, 125, 625, 3125


A) not arithmetic
B) Determine whether the sequence is arithmetic. If so, find the common difference. 5, 25, 125, 625, 3125 A) not arithmetic B)    C) 5 D)    E) -5
C) 5
D) Determine whether the sequence is arithmetic. If so, find the common difference. 5, 25, 125, 625, 3125 A) not arithmetic B)    C) 5 D)    E) -5
E) -5

F) A) and D)
G) All of the above

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Find the sum. Find the sum.   A)    B)    C) 1 D)    E)


A) Find the sum.   A)    B)    C) 1 D)    E)
B) Find the sum.   A)    B)    C) 1 D)    E)
C) 1
D) Find the sum.   A)    B)    C) 1 D)    E)
E) Find the sum.   A)    B)    C) 1 D)    E)

F) D) and E)
G) All of the above

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Evaluate the expression. C (6, 2)


A) 360
B) 720
C) 2
D) 30
E) 15

F) B) and E)
G) B) and C)

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Use the binomial theorem to expand the binomial. Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)


A) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
B) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
C) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
D) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)
E) Use the binomial theorem to expand the binomial.   A)    B)    C)    D)    E)

F) C) and D)
G) A) and E)

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Find the next term of the sequence. 6, 13, 20, 27, ...


A) 44
B) 68
C) 34
D) 32
E) 41

F) A) and B)
G) B) and D)

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Evaluate the sum. Evaluate the sum.   A) 270 B) 131 C) 135 D) 27 E) 55


A) 270
B) 131
C) 135
D) 27
E) 55

F) All of the above
G) A) and D)

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Calculate the binomial coefficient: Calculate the binomial coefficient:   A) 120 B) 20 C) 5 D) 1 E) 0


A) 120
B) 20
C) 5
D) 1
E) 0

F) C) and D)
G) B) and D)

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Evaluate the sum. Evaluate the sum.   A) 120 B) 20 C) 21 D) 60 E) 56


A) 120
B) 20
C) 21
D) 60
E) 56

F) C) and E)
G) C) and D)

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  A)    B)    C)    D)    E)


A)   A)    B)    C)    D)    E)
B)   A)    B)    C)    D)    E)
C)   A)    B)    C)    D)    E)
D)   A)    B)    C)    D)    E)
E)   A)    B)    C)    D)    E)

F) All of the above
G) A) and D)

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Determine whether the sequence is geometric. If so, find the common ratio. -2, -7, -12, -17,...


A) -2
B) not geometric
C) Determine whether the sequence is geometric. If so, find the common ratio. -2, -7, -12, -17,... A) -2 B) not geometric C)    D) 5 E) -5
D) 5
E) -5

F) All of the above
G) D) and E)

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