An LTI system is described by dy(t) + 5y(t) = x(t), y(0) = 2 %3D dt the unit impulse function h(t) of the system is given by Select one: O a H(s) = , h(t) = e-2tu(t) + cos5t u(t) %3D s2+5' 1 +- s+2' O b. H(s) h(t) = e-5tu(t) + 2cost u(t) %3D S- 5 1. Oc H(s) : h(t) = 0.5e-5tu(t) – cos2t u(t) %3D %3D s(s+5)' Oa. H(s) = , h(t) = e-Stu(t) %3D %3D s+5'

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An LTI system is described by
dy(t)
+ 5y(t) = x(t), y(0) = 2
dt
the unit impulse function h(t) of the system is given by
Select one:
H(s) =
h(t) = e-2tu(t) + cos5t u(t)
O a.
%3D
s2+5'
1
O b.H(s) =
S- 5
Oe H(s) =
2
h(t) = e-5tu(t) + 2cost u(t)
%3D
s+2'
h(t) = 0.5e-5tu(t) – cos2t u(t)
%3D
%3D
(s+s)s
O d. H(s) =
s+5'
h(t) = e-Stu(t)
%3D
%3D
Transcribed Image Text:An LTI system is described by dy(t) + 5y(t) = x(t), y(0) = 2 dt the unit impulse function h(t) of the system is given by Select one: H(s) = h(t) = e-2tu(t) + cos5t u(t) O a. %3D s2+5' 1 O b.H(s) = S- 5 Oe H(s) = 2 h(t) = e-5tu(t) + 2cost u(t) %3D s+2' h(t) = 0.5e-5tu(t) – cos2t u(t) %3D %3D (s+s)s O d. H(s) = s+5' h(t) = e-Stu(t) %3D %3D
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