Problem 3. Find the impulse response of the following differential equation, then apply convolution to find out the solution of the differential equation. y" + y = t, y(0) = y'(0) = 0
Problem 3. Find the impulse response of the following differential equation, then apply convolution to find out the solution of the differential equation. y" + y = t, y(0) = y'(0) = 0
ChapterB: Graphical Analysis Of Planar Trusses
Section: Chapter Questions
Problem 8P
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I need detailed help solving this exercise from homework of Engineering Math.
I do not really understand how to do, please do it step by step, not that long but clear. Thank you!

Transcribed Image Text:Problem 3. Find the impulse response of the following differential equation, then apply
convolution to find out the solution of the differential equation.
y" + y = t, y(0) = y'(0) = 0
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