The general solution of the following differential equation y(3) – 8y = x – 1 is: y(x) = c1 + c2e* + c3e¯* + c4 cos(x) +c5 sin(x) – 2x² This option y(x) = c1e2x + C2e" -2x + c3 cos(2x) +c4 sin(2x) – 2x This option y(x) = c,e2x + cze-*co s(v3x) +cze¯*si n(v3x) + Ax + B

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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16:37 A esE
. 32% lוה !ו.#
The general solution of the following differential equation
y(3) – 8y = x – 1
is:
y(x) = c1 + c2e* + c3e¯* + c4 cos(x)
+c5 sin(x) – 2x²
This option
y(x) = c,e2x + c2e¯2
-2x
C3 cos(2x)
+C4 sin(2x) – 2x
This option
y(x) = c,e2x + ¢ze-*co s(v3x)
+cze¯*si n(v3x)+ Ax + B
II
Transcribed Image Text:16:37 A esE . 32% lוה !ו.# The general solution of the following differential equation y(3) – 8y = x – 1 is: y(x) = c1 + c2e* + c3e¯* + c4 cos(x) +c5 sin(x) – 2x² This option y(x) = c,e2x + c2e¯2 -2x C3 cos(2x) +C4 sin(2x) – 2x This option y(x) = c,e2x + ¢ze-*co s(v3x) +cze¯*si n(v3x)+ Ax + B II
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