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PLEASE Code all parts, MATLAB preferred. Thank you! LTI system analysis in the frequency domain The input signal is x(t) = e-tu-1 (t) The input

image text in transcribedPLEASE Code all parts, MATLAB preferred. Thank you!

LTI system analysis in the frequency domain The input signal is x(t) = e-tu-1 (t) The input signal is passed through a filter, whose frequency response is specified as H (f)-11 (5) cos(nf/2) 1. Determine X( and use MATLAB or PYTHON to plot the magnitude and phase spectra of the input signal X. 2. Determine the output signal y() and Y() and use MATLAB or PYTHON to plot the magnitude and phase spectra of YO 3. Use MATLAB or PYTHON to compute the inverse Fourier transform of the output signal and plot it. LTI system analysis in the frequency domain The input signal is x(t) = e-tu-1 (t) The input signal is passed through a filter, whose frequency response is specified as H (f)-11 (5) cos(nf/2) 1. Determine X( and use MATLAB or PYTHON to plot the magnitude and phase spectra of the input signal X. 2. Determine the output signal y() and Y() and use MATLAB or PYTHON to plot the magnitude and phase spectra of YO 3. Use MATLAB or PYTHON to compute the inverse Fourier transform of the output signal and plot it

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