Solve for y(t) given the input of the system, x(t) and it's impulse response h(t). x(t)= etu(t) h(t) = r(t) y(t) = (t + 1 e^(-t))u(t) Oy(t) = te^(-t) u(t) y(t) = (t-1-e^(-t))u(t) y(t) = (t - e^(-t))u(t)

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Question 2
Solve for y(t) given the input of the
system, x(t) and it's impulse
response h(t).
x(t) = etu(t)
h(t)= r(t)
y(t) = (t + 1 - e^(-t))u(t)
Oy(t) = te^(-t) u(t)
Oy(t) = (t-1-e^(-t))u(t)
Oy(t) = (t e^(-t))u(t)
Transcribed Image Text:Question 2 Solve for y(t) given the input of the system, x(t) and it's impulse response h(t). x(t) = etu(t) h(t)= r(t) y(t) = (t + 1 - e^(-t))u(t) Oy(t) = te^(-t) u(t) Oy(t) = (t-1-e^(-t))u(t) Oy(t) = (t e^(-t))u(t)
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