Problem 3 We have studied CTFT in this course. A generalization of CTFT is Laplace transform. In this question, you are asked to self-study the basic definition of bilateral Laplace transform. You may make use of any textbook or online resources. Consider a LTI CT system with the following impulse response: h(t) = e²tu(t). Compute the bilateral Laplace transform of h(t) and specify the region of (a) (b) (c) convergence. What is the CTFT of h(t)? From the above two steps, can you tell one advantage of Laplace transform over CTFT in analyzing LTI systems in general?

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Problem 3
We have studied CTFT in this course. A generalization of CTFT is Laplace transform.
In this question, you are asked to self-study the basic definition of bilateral Laplace
transform. You may make use of any textbook or online resources.
Consider a LTI CT system with the following impulse response:
h(t) = e²tu(t).
Compute the bilateral Laplace transform of h(t) and specify the region of
(a)
(b)
(c)
convergence.
What is the CTFT of h(t)?
From the above two steps, can you tell one advantage of Laplace transform
over CTFT in analyzing LTI systems in general?
Transcribed Image Text:Problem 3 We have studied CTFT in this course. A generalization of CTFT is Laplace transform. In this question, you are asked to self-study the basic definition of bilateral Laplace transform. You may make use of any textbook or online resources. Consider a LTI CT system with the following impulse response: h(t) = e²tu(t). Compute the bilateral Laplace transform of h(t) and specify the region of (a) (b) (c) convergence. What is the CTFT of h(t)? From the above two steps, can you tell one advantage of Laplace transform over CTFT in analyzing LTI systems in general?
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