Consider a linear time-invariant (LTI) system with an exponential function response that has the equation of h(t) = e-2000t u(t) is shown in Figure Q.2 (a).The system output is y(t) = (e-3000t – e-5000t) u(t). (i) Determine the Laplace transform for h(t) and y(t). (ii) Determine the input x(t). x(t) h(t) y(1) Figure Q.2 (a)

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Consider a linear time-invariant (LTI) system with an exponential function
response that has the equation of h(t) = e-2000t u(t) is shown in Figure Q.2
(a).The system output is y(t) = (e-3000t – e-5000t) u(t).
(i) Determine the Laplace transform for h(t) and y(t).
(ii) Determine the input x(t).
x(t)
h(t)
y(t)
Figure Q.2 (a)
Transcribed Image Text:Consider a linear time-invariant (LTI) system with an exponential function response that has the equation of h(t) = e-2000t u(t) is shown in Figure Q.2 (a).The system output is y(t) = (e-3000t – e-5000t) u(t). (i) Determine the Laplace transform for h(t) and y(t). (ii) Determine the input x(t). x(t) h(t) y(t) Figure Q.2 (a)
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