QUESTION 1 Consider the following differential equation: dy (t) d²y (1) di² dt +9- df (t) +20y (t)=2- - + 4f (1) dt The input signal is f(t)=e"'u(t) The zero-state response of the above LTI system is: y(t) = e'u (1) + eu(t) + If the answers are not integers, enter them in fractions (e.g., 3/8, -1/9, etc.).

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QUESTION 1
Consider the following differential equation:
d²y (1)
di²
dy (t)
+9-
dt
df (t)
dt
+20y (t)=2-
- + 4f (1)
The input signal is f(t)=e"u(t)
The zero-state response of the above LTI system is:
y(t) =
e'u (1) +
eu(t) +
If the answers are not integers, enter them in fractions (e.g., 3/8, -1/9, etc.).
Su(t).
Transcribed Image Text:QUESTION 1 Consider the following differential equation: d²y (1) di² dy (t) +9- dt df (t) dt +20y (t)=2- - + 4f (1) The input signal is f(t)=e"u(t) The zero-state response of the above LTI system is: y(t) = e'u (1) + eu(t) + If the answers are not integers, enter them in fractions (e.g., 3/8, -1/9, etc.). Su(t).
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