(a) A system wiun impulse response h(t) = 6(t-T) delays its input signal by time T. Its inverse system is a time advance of T with impulse response h: (t) = 6(t-T), show the sampling property of the impulse function and use the fact that 6(t) = 6(t-T) ((b) Consider the following DT sequence: f (k] = k20 k< 0. Determine if the signal is a power or an energy signal. (c) A system with input x(t) and output y(t) is characterized by the equation y(t) = tx(t). Determine whether this system is linear.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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PLEASE ANSWER THE SECOND QUESTION. DOTTED GREEN 

(a) A system witn impulse response h(t) = 6(t-T) delays its input signal by time
T. Its inverse system is a time advance of T with impulse response hi (t) = 6(t-T),
show the sampling property of the impulse function and use the fact that 5(t) =
6(t-T)
((b) Consider the following DT sequence:
f [k] =
k20
k< 0.
Determine if the signal is a power or an energy signal.
(c) A system with input x(t) and output y(t) is characterized by the equation y(t)
= tx(t). Determine whether this system is linear.
Transcribed Image Text:(a) A system witn impulse response h(t) = 6(t-T) delays its input signal by time T. Its inverse system is a time advance of T with impulse response hi (t) = 6(t-T), show the sampling property of the impulse function and use the fact that 5(t) = 6(t-T) ((b) Consider the following DT sequence: f [k] = k20 k< 0. Determine if the signal is a power or an energy signal. (c) A system with input x(t) and output y(t) is characterized by the equation y(t) = tx(t). Determine whether this system is linear.
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