2. For the continuous-time system is described by the following differential equation d²y(t) dt² +7 dy(t) dt dx(t) + 10y(t) = 7 + 23x(t) dt use the system function concept and the non-unitary Fourier transform to determine the impulse response of the system in the frequency-domain H(w) and the time-domain h(t). (Hint: H(w) = Y(w)/X(w) and h(t) = = F-¹{H(w)})

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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2.
For the continuous-time system is described by the following
differential equation
d²y(t)
dt²
+7
dy(t)
dt
dx(t)
+ 10y(t) = 7
+ 23x(t)
dt
use the system function concept and the non-unitary Fourier transform to determine the
impulse response of the system in the frequency-domain H(w) and the time-domain h(t).
(Hint: H(w) = Y(w)/X(w) and h(t) =
=
F-¹{H(w)})
Transcribed Image Text:2. For the continuous-time system is described by the following differential equation d²y(t) dt² +7 dy(t) dt dx(t) + 10y(t) = 7 + 23x(t) dt use the system function concept and the non-unitary Fourier transform to determine the impulse response of the system in the frequency-domain H(w) and the time-domain h(t). (Hint: H(w) = Y(w)/X(w) and h(t) = = F-¹{H(w)})
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