Find a power series expansion about x = 0 for a general solution to the given differential equation. Your answer should include a general formula for the coefficients. ²z' + xz = 0 -z"

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Find a power series expansion about x = 0 for a general solution to the given differential equation. Your answer
should include a general formula for the coefficients.
-z" +x?z' + xz = 0
What is the power series solution to the differential equation?
2(-1)n (3-6.9...(3n))
(3n - 2)!
E (- 1)r (1 •4 •7.-(3n – 2))
(3n + 2)!
3n +
O A. Z(x) = ao 1+
+a, x+
Σ
n=1
n=1
(1.4.7..(3n - 2)) 3n
E (- 1)".
(2•5.8..(3n - 1)
E (- 1)"-
3n + 1
B. z(x) = ao 1+
+ a, x+
X-
(3n)!
(3n + 1)!
n=1
n=1
00
(3•6.9...(3n))
(1.4.7..(3n - 2)) 3n +
3n
OC. z(x) = ao 1+ E
+a, x+ E
(3n - 2)!
(3n + 2)!
n=1
n=1
(2.5.8.(3n - 1)) 3n + 1
Σ
(1.4.7...(3n - 2))
3n
D. z(x) = ao 1+ E
+
x+
(3n)!
(3n + 1
+ 1)!
n=1
n=1
Transcribed Image Text:Find a power series expansion about x = 0 for a general solution to the given differential equation. Your answer should include a general formula for the coefficients. -z" +x?z' + xz = 0 What is the power series solution to the differential equation? 2(-1)n (3-6.9...(3n)) (3n - 2)! E (- 1)r (1 •4 •7.-(3n – 2)) (3n + 2)! 3n + O A. Z(x) = ao 1+ +a, x+ Σ n=1 n=1 (1.4.7..(3n - 2)) 3n E (- 1)". (2•5.8..(3n - 1) E (- 1)"- 3n + 1 B. z(x) = ao 1+ + a, x+ X- (3n)! (3n + 1)! n=1 n=1 00 (3•6.9...(3n)) (1.4.7..(3n - 2)) 3n + 3n OC. z(x) = ao 1+ E +a, x+ E (3n - 2)! (3n + 2)! n=1 n=1 (2.5.8.(3n - 1)) 3n + 1 Σ (1.4.7...(3n - 2)) 3n D. z(x) = ao 1+ E + x+ (3n)! (3n + 1 + 1)! n=1 n=1
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