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    Mathematics
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    Calculus A Complete Course
  4. Exam
    Exam 10: Sequences, Series, and Power Series
  5. Question
    = Is the Partial Sum of an Infinite\(\infty\)
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= Is the Partial Sum of an Infinite ∞\infty∞

Question 62

Question 62

Multiple Choice

   =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 =    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 is the    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 partial sum of an infinite series    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 . Find    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 . Determine if the series is convergent or divergent, and if convergent find its sum.


A)    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 =    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 , series diverges to ∞\infty∞

B)    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 =    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 , series diverges to ∞\infty∞

C)    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 =    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 , series converges to 1
D)    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 =    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 , series converges to 2
E)    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 =    =   is the   partial sum of an infinite series    . Find   . Determine if the series is convergent or divergent, and if convergent find its sum. A)    =   , series diverges to  \infty   B)    =   , series diverges to  \infty   C)    =   , series converges to 1 D)    =   , series converges to 2 E)    =   , series converges to 1 , series converges to 1

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