Find the solution of the given initial value problem. y(t) = y(t) = y(t) = y(t) = y" + 4y= u(t)- u3r(t), y(0) = 2, y' (0
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Find the solution of the given initial value problem. y(t) = y(t) = y(t) = y(t) = y" + 4y= u(t)- u3r(t), y(0) = 2, y' (0
(1 + sin2t) + 2sin2t + cos2t 5 [¹₁ − U3x](1 − cos2t) + 2cos2t + - - sin2t 1 5 [u₂ − u3x](1 - sin2t) + 2cos2t + sin2t 2 5 lux - u3](1 - sin2t) + 2sin2t + cos2t 5 y(t) = lux - u3z1(1 − cos2t) — 2cos2t - - sin2t
Find the solution of the given initial value problem. y(t) = y(t) = y(t) = y(t) = y" + 4y= u(t)- u3r(t), y(0) = 2, y' (0) = 5 5