2.4.6 ..... (2n) 41.3.5..... (2n – 1) Find the radius of convergence R. If it is infinite, type "infinity" or "inf". Answer: R = What is the interval of convergence? Answer (in interval notation (a,b), [a,b). (a,b] or ſa,b). For oo, type "infinity" and for -00, type "-infinity".):

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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∑n=1∞2⋅4⋅6⋅⋯⋅(2n)1⋅3⋅5⋅⋯⋅(2n−1)xn.∑n=1∞2⋅4⋅6⋅⋯⋅(2n)1⋅3⋅5⋅⋯⋅(2n−1)xn.

Find the radius of convergence R.R. If it is infinite, type "infinity" or "inf".
Answer: R=R= 

 

What is the interval of convergence?
Answer (in interval notation (a,b), [a,b], (a,b] or [a,b). For ∞∞, type "infinity" and for −∞−∞, type "-infinity".): 

2.4.6 ..... (2n)
1.3.5.... (2n – 1)
Find the radius of convergence R. If it is infinite, type "infinity" or "inf".
Answer: R =
What is the interval of convergence?
Answer (in interval notation (a,b), [a,b], (a,b] or [a,b). For oo, type "infinity" and for -0o, type "-infinity".):
Transcribed Image Text:2.4.6 ..... (2n) 1.3.5.... (2n – 1) Find the radius of convergence R. If it is infinite, type "infinity" or "inf". Answer: R = What is the interval of convergence? Answer (in interval notation (a,b), [a,b], (a,b] or [a,b). For oo, type "infinity" and for -0o, type "-infinity".):
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