gn Use the ratio test to determine whether converges or diverges. n=13 (5n)2 (a) Find the ratio of successive terms. Write your answer as a fully simplified fraction. For n ≥ 13, lim n→∞ An+1 An lim n∞ (b) Evaluate the limit in the previous part. Enter ∞ as infinity and -∞ as -infinity. If the limit does not exist, enter DNE. lim n→x An+1 An = (c) By the ratio test, does the series converge, diverge, or is the test inconclusive? Choose

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.1: Inverse Functions
Problem 17E
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2.7

gn
Use the ratio test to determine whether
converges or diverges.
n=13
(5n)2
(a) Find the ratio of successive terms. Write your answer as a fully simplified fraction. For n ≥ 13,
lim
n→∞
An+1
An
lim
n∞
(b) Evaluate the limit in the previous part. Enter ∞ as infinity and -∞ as -infinity. If the limit does not exist,
enter DNE.
lim
n→x
An+1
An
=
(c) By the ratio test, does the series converge, diverge, or is the test inconclusive? Choose
Transcribed Image Text:gn Use the ratio test to determine whether converges or diverges. n=13 (5n)2 (a) Find the ratio of successive terms. Write your answer as a fully simplified fraction. For n ≥ 13, lim n→∞ An+1 An lim n∞ (b) Evaluate the limit in the previous part. Enter ∞ as infinity and -∞ as -infinity. If the limit does not exist, enter DNE. lim n→x An+1 An = (c) By the ratio test, does the series converge, diverge, or is the test inconclusive? Choose
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