(a) Signals x1(t) = 10* rect (10't) and x2(t)= 8(1) are applied at the inputs of the ideal filters %3D H1 (0) = rect (o/40,000T) and H2(@) = rect (o/20,000Tt) as in Figure 2(a). The outputs %3D yı(t) and y2(t) of these filters are multiplied to obtain y(t) = y1(t).y2(t) x1(t) y:(t) H:(w) y(t) = y:(t).y2(t) x2(t) y2(t) H2(w)

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(a) Signals x1(t) = 10* rect (10*t) and x2(t)= 8(1) are applied at the inputs of the ideal filters
H1 (0) = rect (o/40,000T) and H2(0) = rect (o/20,000r) as in Figure 2(a). The outputs
yı(t) and y2(t) of these filters are multiplied to obtain y(t) = yl(t).y2(t)
X1(t)
y:(t)
H1(w)
y(t) = y:(t).y2(t)
x2(t)
Y2(t)
H2(w)
Figure 2a
iv.
Identify the bandwidths of y1(t), y2(t) and y(t).
Transcribed Image Text:(a) Signals x1(t) = 10* rect (10*t) and x2(t)= 8(1) are applied at the inputs of the ideal filters H1 (0) = rect (o/40,000T) and H2(0) = rect (o/20,000r) as in Figure 2(a). The outputs yı(t) and y2(t) of these filters are multiplied to obtain y(t) = yl(t).y2(t) X1(t) y:(t) H1(w) y(t) = y:(t).y2(t) x2(t) Y2(t) H2(w) Figure 2a iv. Identify the bandwidths of y1(t), y2(t) and y(t).
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