. Find the solution r (t) of the IVP given as " + 4x' + 13r = f (t) I (0) = 0 and r' (0) = 0 %3D A) r (t) = sin 27 dr 1 C) r (t) sin 37 dr 1 D) r (t) = sin 37 dr E) z() = [r«-7)c* sin 3r dr

Advanced Engineering Mathematics
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ISBN:9780470458365
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Chapter2: Second-order Linear Odes
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Differential Equations Question
. Find the solution r (t) of the IVP given as
2" + 4x' + 13r = f (t)
I (0) = 0 and r' (0) = 0
%3D
A) r (t) =
sin 27 dr
1
C) r (t)
sin 37 dr
1
D) z (t) =
sin 37 dr
Transcribed Image Text:. Find the solution r (t) of the IVP given as 2" + 4x' + 13r = f (t) I (0) = 0 and r' (0) = 0 %3D A) r (t) = sin 27 dr 1 C) r (t) sin 37 dr 1 D) z (t) = sin 37 dr
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