y" – 5y' + 6y = 2e' %3D

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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Question
y" – 5y' + 6y = 2e
(3)
%3D
| Now we want to compare Undetermined Coefficient Method with Varia-
(b)
tion of Parameter Method. Use the information you already obtained in the previous
step, solve (3) by variation of parameters.
However, do not use the formula directly. Read and mimic steps from eq. (6) to
(10) in your textbook on page 161, repeat the process by yourself. Namely, rephrase
and apply eq.(6) to (10) to your considered question.
y" + P(æ)y' + Q(xæ)y= f(x)
(6)
Yp (x) = u1 (x)y1 (x) + uz (x)y2 (x)
(7)
=yn u + y2u] + P[y1u{ +Y2u½] + ¥{ ui + ½u½ = f(x).
(8)
W1
Y2 f (x)
W2
Yı f(x)
and u
(9)
W
W
W
W
Yı Y2
Y2
Y1
W2 =
| ½ f(x)
W :
(10)
W1
|f(x) Y½
Transcribed Image Text:y" – 5y' + 6y = 2e (3) %3D | Now we want to compare Undetermined Coefficient Method with Varia- (b) tion of Parameter Method. Use the information you already obtained in the previous step, solve (3) by variation of parameters. However, do not use the formula directly. Read and mimic steps from eq. (6) to (10) in your textbook on page 161, repeat the process by yourself. Namely, rephrase and apply eq.(6) to (10) to your considered question. y" + P(æ)y' + Q(xæ)y= f(x) (6) Yp (x) = u1 (x)y1 (x) + uz (x)y2 (x) (7) =yn u + y2u] + P[y1u{ +Y2u½] + ¥{ ui + ½u½ = f(x). (8) W1 Y2 f (x) W2 Yı f(x) and u (9) W W W W Yı Y2 Y2 Y1 W2 = | ½ f(x) W : (10) W1 |f(x) Y½
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