Give the form of a particular solution of -4x yl4) – 256 y =2 e**+3 e+ cos(4 x) – 2 a) O z=Ae -4х + Be+ Cx cos(4 x) +Dx sin(4x) +E -4x b) O z=Axe + Be+ C cos(4 x) +D sin(4 x) c) z=Axe*+ Be + Cx cos(4 x) +Dx sin (4 x) + E -4 x d) O z=Axe + Be+ Cx cos(4 x) +Dx sin (4x) +E e) z=Axe*+ Be + C'cos(4 x) +D sin(4 x) + E f O None of the above.
Give the form of a particular solution of -4x yl4) – 256 y =2 e**+3 e+ cos(4 x) – 2 a) O z=Ae -4х + Be+ Cx cos(4 x) +Dx sin(4x) +E -4x b) O z=Axe + Be+ C cos(4 x) +D sin(4 x) c) z=Axe*+ Be + Cx cos(4 x) +Dx sin (4 x) + E -4 x d) O z=Axe + Be+ Cx cos(4 x) +Dx sin (4x) +E e) z=Axe*+ Be + C'cos(4 x) +D sin(4 x) + E f O None of the above.
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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
Transcribed Image Text:Give the form of a particular solution of
-4x
yl4) – 256 y =2 e**+3 e+ cos(4 x) – 2
a) O z=Ae
-4х
+ Be+ Cx cos(4 x) +Dx sin(4x) +E
-4x
b) O z=Axe
+ Be+ C cos(4 x) +D sin(4 x)
c)
z=Axe*+ Be + Cx cos(4 x) +Dx sin (4 x) + E
-4 x
d) O z=Axe
+ Be+ Cx cos(4 x) +Dx sin (4x) +E
e)
z=Axe*+ Be + C'cos(4 x) +D sin(4 x) + E
f O None of the above.
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