Suppose we have a system modeled as an undamped harmonic oscillator. The system receives an impulse force at t = T so that it is modeled with the equation y"+ @ 2 y = 8(t – n), with initial conditions y(0) = yo, y' (0) = y' - Using Laplace Transforms, find the solution, y(t), to this initial value problem. Using your answer, write down the solution for the case in which the oscillator begins at equilibrium and at rest, so that y (0) = 0, y’ (0) = 0. Write the solution as a piecewise defined function.

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Suppose we have a system modeled as an undamped harmonic oscillator. The system receives an
impulse force at t = T so that it is modeled with the equation y"+@ 2 y = 8(t – T), with initial
conditions y(0) = yo, y’ (0) = y'o .
%3D
Using Laplace Transforms, find the solution, y(t), to this initial value problem.
Using your answer, write down the solution for the case in which the oscillator begins at
equilibrium and at rest, so that y (0) = 0, y' (0) = 0. Write the solution as a piecewise defined
function.
%3D
Transcribed Image Text:Suppose we have a system modeled as an undamped harmonic oscillator. The system receives an impulse force at t = T so that it is modeled with the equation y"+@ 2 y = 8(t – T), with initial conditions y(0) = yo, y’ (0) = y'o . %3D Using Laplace Transforms, find the solution, y(t), to this initial value problem. Using your answer, write down the solution for the case in which the oscillator begins at equilibrium and at rest, so that y (0) = 0, y' (0) = 0. Write the solution as a piecewise defined function. %3D
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