b) A casual and stable LTI system has its input x[n] and output y[n] related by the linear constant coefficient difference equation, 10 y[n] + Σaky[n − k] = x[n] + ßx[n − 1] k=1 impulse Let h[n] be the a₁ in terms of h[0]and h[1]. response. Determine (i) h[0]; (ii)

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b) A casual and stable LTI system has its input x[n] and output y[n] related by the linear
constant coefficient difference equation,
y[n] +
h[n] be
the
Let
a₁ in terms of h[0] and h[1].
10
Σaxy[n − k] = x[n] + ßx[n − 1]
k=1
impulse
response.
Determine
(i) h[0]; (ii)
Transcribed Image Text:b) A casual and stable LTI system has its input x[n] and output y[n] related by the linear constant coefficient difference equation, y[n] + h[n] be the Let a₁ in terms of h[0] and h[1]. 10 Σaxy[n − k] = x[n] + ßx[n − 1] k=1 impulse response. Determine (i) h[0]; (ii)
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