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- Solve for the sum of the convergent series belowYou delete a finite number of terms from a divergent series. Will the new series still diverge? Explain your reasoning.Determine if the series converges or diverges. State the test you used to decide and if it is a geometric series, give the number to which it converges.
- Identify the geometric series that converge. Give the sum of the convergent series. 4 + 4.8 + 5.76 + 6.912 + . . . . . .Determine weather the series is convergent or divergent by expressing Sn as a telescoping sum. If it is convergent, find it’s sumDetermine weather the series is convergent or divergent. Write the exact test that you used.
- Use ratio test to determine if this series is convergent or divergent. S= Σ 6^n/(n+1) • 3^2n+1 Please do all steps listed in photo.Find the sum of the convergent series below. Show complete solutionDetermine if the following series converge or diverge. If convergent, find the sum. You must show all work and give detailed explanation.
- Determine whether the series converges or diverges. If the series is convergent, use the Alternating Series Estimation Theorem to determine how many terms we need to add in order to find the sum with an error less than 0.00005. (If the quantity diverges, write diverges.) ∑n=1∞ (−1)n+1/2n5Calculate and determine whether a given series converges or diverges. See attached image.Does the series 3+9+27+81+… converge or diverge. Explain your reasoning.