Q2. Convolution and conversion between time and frequency domain are integral parts in biomedical signal processing. a) Given x[n] and h[n] as in Figure 2a, find y[n]=x[n]*h[n]. Show the step-by-step solution. 2 h(n] *{n} --I 0 I 2 3 4 01 2 3 4 5 Figure Q2 b) Given x[n] = u[n] – u[n – 1) and h[n] = u[n + 1] + 2u[n – 1), find y[n] = x[n] + h[n]. Show the step-by-step solution. %3D

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q2.
Convolution and conversion between time and frequency domain are integral parts in
biomedical signal processing.
a) Given x[n] and h[n] as in Figure 2a, find y[n]=x[n]*h[n]. Show the step-by-step
solution.
2
h(n]
-1 0 1
4
2
3
4 5
Figure Q2
b) Given x[n] = u[n] – u[n – 1] and h[n] = u[n + 1] + 2u[n – 1),
%3D
find y[n] = x[n] * h[n]. Show the step-by-step solution.
Transcribed Image Text:Q2. Convolution and conversion between time and frequency domain are integral parts in biomedical signal processing. a) Given x[n] and h[n] as in Figure 2a, find y[n]=x[n]*h[n]. Show the step-by-step solution. 2 h(n] -1 0 1 4 2 3 4 5 Figure Q2 b) Given x[n] = u[n] – u[n – 1] and h[n] = u[n + 1] + 2u[n – 1), %3D find y[n] = x[n] * h[n]. Show the step-by-step solution.
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