Determine a suitable form for a particular solution for the DE: y(5) + 2y(4) + 2y" + 2y" + y' = 3t + 2e t + cos t. At? + Bt + Ct²e² + E cos 2t + F sin 2t a. O b. At + B + Ce + E cos 2t + F sin 2t O C. At? + Bt + Ce2t + Et cos t + Ft sint O d. At + B + C'e2t + E cost + F sin t O e. At? + Bt + Ct²e=t + E cos 2t + F sin 2t O f. At + B + Ce¯t + E cos 2t + F'sin 2t 9. At? + Bt + Ce-2t + Et cos t + Ft sin t O h. At + B + Ce¯2t + E cos t + F sint

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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Determine a suitable form for a particular solution for the DE:
y(5)
+ 2y(4) + 2y" + 2y" + y' = 3t + 2e
t + cos t.
At? + Bt + Ct²e² + E cos 2t + F sin 2t
a.
O b. At + B + Ce + E cos 2t + F sin 2t
O C. At? + Bt + Ce2t + Et cos t + Ft sint
O d. At + B + C'e2t + E cost + F sin t
O e.
At? + Bt + Ct²e=t + E cos 2t + F sin 2t
O f. At + B + Ce¯t + E cos 2t + F'sin 2t
9. At? + Bt + Ce-2t + Et cos t + Ft sin t
O h. At + B + Ce¯2t + E cos t + F sint
Transcribed Image Text:Determine a suitable form for a particular solution for the DE: y(5) + 2y(4) + 2y" + 2y" + y' = 3t + 2e t + cos t. At? + Bt + Ct²e² + E cos 2t + F sin 2t a. O b. At + B + Ce + E cos 2t + F sin 2t O C. At? + Bt + Ce2t + Et cos t + Ft sint O d. At + B + C'e2t + E cost + F sin t O e. At? + Bt + Ct²e=t + E cos 2t + F sin 2t O f. At + B + Ce¯t + E cos 2t + F'sin 2t 9. At? + Bt + Ce-2t + Et cos t + Ft sin t O h. At + B + Ce¯2t + E cos t + F sint
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