Consider a continuous-time LTI system with impulse response, h(t) and input signal, x(t) as given below: h(t) = (t + 3)u(t) x(t) = 3u(t – 3) (a) Sketch and label h(t) and x(t). (b) Calculate the output of the system, y(t) using convolution in time-domain. Show your complete working.
Consider a continuous-time LTI system with impulse response, h(t) and input signal, x(t) as given below: h(t) = (t + 3)u(t) x(t) = 3u(t – 3) (a) Sketch and label h(t) and x(t). (b) Calculate the output of the system, y(t) using convolution in time-domain. Show your complete working.
Introductory Circuit Analysis (13th Edition)
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![Consider a continuous-time LTI system with impulse response, h(t) and input signal, x(t) as
given below:
h(t) = (t + 3)u(t)
x(t) = 3u(t – 3)
(a)
Sketch and label h(t) and x(t).
(b)
Calculate the output of the system, y(t) using convolution in time-domain. Show your
complete working.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F45c0205a-31db-4072-beaf-bb773e3c22ed%2F7490cdd4-5222-4efc-b6bf-b44c3b5fbb4c%2F4tzw5do_processed.png&w=3840&q=75)
Transcribed Image Text:Consider a continuous-time LTI system with impulse response, h(t) and input signal, x(t) as
given below:
h(t) = (t + 3)u(t)
x(t) = 3u(t – 3)
(a)
Sketch and label h(t) and x(t).
(b)
Calculate the output of the system, y(t) using convolution in time-domain. Show your
complete working.
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