Use the Comparison Test to determine if the following series converges or diverges. 1 Σ 5n + 13 2 n=1 ..... Choose the correct answer below. 1 O A. The series is divergent because 1 for all n andE is divergent. n2 5n + 13 n=1 1 O B. The series is convergent because 1 for all n and > n° is convergent. 3 5n + 13 n=1 n 00 1 1 Oc. The series is convergent because 1 for all n and E is convergent. 5n + 13 n° _2 n=1 n° 1 O D. The series is divergent because 1 for all n and the harmonic series is divergent. Sn2 + 13

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
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Use the Comparison Test to determine if the following series converges or diverges.
1
Σ
5n?
+ 13
n = 1
.....
Choose the correct answer below.
1
A. The series is divergent because
1
for all n and >
1
is divergent.
_2
5n2 + 13
n =1 h
1
1
B. The series is convergent because
1
for all n and E
is convergent.
3
<
5nº + 13
n
1
OC. The series is convergent because
1
for all n and
n2
Σ
1
is convergent.
5n?
+ 13
2
2
n=1 n*
1
The series is divergent because
1
OD.
5n2
for all n and the harmonic series is divergent.
+ 13
Transcribed Image Text:Use the Comparison Test to determine if the following series converges or diverges. 1 Σ 5n? + 13 n = 1 ..... Choose the correct answer below. 1 A. The series is divergent because 1 for all n and > 1 is divergent. _2 5n2 + 13 n =1 h 1 1 B. The series is convergent because 1 for all n and E is convergent. 3 < 5nº + 13 n 1 OC. The series is convergent because 1 for all n and n2 Σ 1 is convergent. 5n? + 13 2 2 n=1 n* 1 The series is divergent because 1 OD. 5n2 for all n and the harmonic series is divergent. + 13
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