Given the system function H(z) of a discrete-time LTI filter at rest, 1-z-1 H(z) |z| > 0.6 1+0.6z-1 (Use the z-transform and Partial Fraction Expansion to fill in the blanks using fractions.) The unit-sample response is: h[n] = - 1/0.6 S[n] + 8/3 (-0.6)" u[n]

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QUESTION 1
Given the system function H(z) of a discrete-time LTI filter at rest,
1-z-¹
H(z)
1+0.6z-1
(Use the z-transform and Partial Fraction Expansion to fill in the blanks using fractions.)
z> 0.6
The unit-sample response is:
h[n] = - 1/0.6
S[n] + 8/3
(-0.6)" u[n]
Transcribed Image Text:QUESTION 1 Given the system function H(z) of a discrete-time LTI filter at rest, 1-z-¹ H(z) 1+0.6z-1 (Use the z-transform and Partial Fraction Expansion to fill in the blanks using fractions.) z> 0.6 The unit-sample response is: h[n] = - 1/0.6 S[n] + 8/3 (-0.6)" u[n]
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