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4. (a) Solve the IVP for y(t): y + 4y = 3 8(t - n), y(0) = 0, y' (0) = 0 (b) 2n.


 

4. (a) Solve the IVP for y(t): y" + 4y = 3 8(t - n), y(0) = 0, y' (0) = 0 (b) 2n. Be sure to label your graph so that the period and amplitude of any oscillations are clearly identified. , Graph the solution y(t) from part (a) versus t, for values of t between 0 and

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