Problem 5.11 A filter has impulse response h(t) = 4sinc(2t)sinc(4t) sin 44πt. (a) Find the transfer function Ĥ(f) and sketch its magnitude. (b) Consider the signal x(t) = 2sinc(4t) cos 40t. Find and sketch the magnitude |Â(f) of its Fourier transform. (c) Let y(t) = (x* h) (t) denote the output signal when the signal x(t) is passed through the filter h(t). Find and sketch the magnitude |Ỹ(f) of its Fourier transform. (d) Computer²(t)dt, the energy of the input signal. (e) Compute fy²(t)dt, the energy of the output signal.
Problem 5.11 A filter has impulse response h(t) = 4sinc(2t)sinc(4t) sin 44πt. (a) Find the transfer function Ĥ(f) and sketch its magnitude. (b) Consider the signal x(t) = 2sinc(4t) cos 40t. Find and sketch the magnitude |Â(f) of its Fourier transform. (c) Let y(t) = (x* h) (t) denote the output signal when the signal x(t) is passed through the filter h(t). Find and sketch the magnitude |Ỹ(f) of its Fourier transform. (d) Computer²(t)dt, the energy of the input signal. (e) Compute fy²(t)dt, the energy of the output signal.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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