A causal linear time-invariant (LTI) system with impulse response h(t) has the following properties: When the input to the systems is x(t) = e2t for all t, the output is y(t) = e2t for all t. 25 When the input to the systems is x(t) = e' for all t, the output is y(t) = e' for all t. 12 The impulse response h(t) satisfies the differential equation d²y(t) dy(t) dx(t) , , dx(t) + 5- + 6y(t) = a· + b- + 2a x(t) + 3b x(t) dt² dt dt dt

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Determine the constant a and b, and the Laplace transform, H(s) of the impulse response of the
system based on the information given.

A causal linear time-invariant (LTI) system with impulse response h(t) has the following
properties:
When the input to the systems is x(t) = e2t for all t, the output is y(t) = ̟e2t for all t.
25
When the input to the systems is x(t) = et for all t, the output is y(t) = et for all t.
12
The impulse response h(t) satisfies the differential equation
d²y(t)
dy(t)
+ 5
dt
dx(t)
+ 6y(t) = a·
+b-
dt
dx(t)
+ 2a x(t) + 3b x(t)
dt
dt2
where a and b are an unknown constant.
Transcribed Image Text:A causal linear time-invariant (LTI) system with impulse response h(t) has the following properties: When the input to the systems is x(t) = e2t for all t, the output is y(t) = ̟e2t for all t. 25 When the input to the systems is x(t) = et for all t, the output is y(t) = et for all t. 12 The impulse response h(t) satisfies the differential equation d²y(t) dy(t) + 5 dt dx(t) + 6y(t) = a· +b- dt dx(t) + 2a x(t) + 3b x(t) dt dt2 where a and b are an unknown constant.
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