A discrete-time system can be classified to one or more of the following: static, dynamic, nonlinear, linear, time-invariant, time-variant, causal, non-causal, stable, and unstable. Examine the following discrete systems with respect to the above-mentioned properties: 1. y(n)= x(n)cos(won) 2. y(n) = 3. y(n) = x(n) + (n + 1) 4. y(n) = x(2n) -00 X(k) 811 5. y(n) = {x(¹ (x(n) if x(n) ≥ 0 if x(n) < 0 X x + Xon

Introductory Circuit Analysis (13th Edition)
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A discrete-time system can be classified to one or more of the following: static, dynamic,
nonlinear, linear, time-invariant, time-variant, causal, non-causal, stable, and unstable. Examine
the following discrete systems with respect to the above-mentioned properties:
1. y(n)= x(n)cos(won)
2. y(n) = E-ox(k)
3. y(n) = x(n) +
4. y(n) = x(2n)
(x(n)
5. y(n)
(0
=
(n + 1)
if x(n) 20
if x(n) < 0
X x + Xon
Transcribed Image Text:A discrete-time system can be classified to one or more of the following: static, dynamic, nonlinear, linear, time-invariant, time-variant, causal, non-causal, stable, and unstable. Examine the following discrete systems with respect to the above-mentioned properties: 1. y(n)= x(n)cos(won) 2. y(n) = E-ox(k) 3. y(n) = x(n) + 4. y(n) = x(2n) (x(n) 5. y(n) (0 = (n + 1) if x(n) 20 if x(n) < 0 X x + Xon
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