Use the integral test to determine whether each of the following series converges or diverges. For each, fill in the integrand and the value of the integral. Enter diverges if the integral diverges. Then indicate the convergence of the sum. A. ΣΗ Compare with dn = (Evaluate your integral with bottom limit c =1.) This sum OA. converges OB. diverges B. E 15 n+10n+6 Compare with dn = (Evaluate your integral with bottom limit c = 1) This sum O A. converges O B. diverges

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Use the integral test to determine whether each of the following series converges or diverges. For each, fill in the integrand and the value of the integral. Enter diverges if the integral diverges. Then
indicate the convergence of the sum.
00
A. E
Compare with
dn =
(Evaluate your integral with bottom limit c = 1.) This sum
OA. converges
OB. diverges
00
B. S n45
n +10n+6
Compare with
dn =
(Evaluate your integral with bottom limit c = 1.) This sum
OA. converges
OB. diverges
Transcribed Image Text:Use the integral test to determine whether each of the following series converges or diverges. For each, fill in the integrand and the value of the integral. Enter diverges if the integral diverges. Then indicate the convergence of the sum. 00 A. E Compare with dn = (Evaluate your integral with bottom limit c = 1.) This sum OA. converges OB. diverges 00 B. S n45 n +10n+6 Compare with dn = (Evaluate your integral with bottom limit c = 1.) This sum OA. converges OB. diverges
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