Q.1(c) A system with an input signal, M() is shown in Figure Q.1(c). A low pass filter (LPF) with a cut-off frequency of 10 rad/s is used and the output is expected to have double the amplitude as compared to the input signal. m(t) y(t) LPF h(t) IM(0)| ANA -20 -15 -10 -5 0 5 10 15 Figure Q.1(c) Sketch the output signal, Y() Sketch and write the filter equation, H(o) (1) (ii) 20 @
Q.1(c) A system with an input signal, M() is shown in Figure Q.1(c). A low pass filter (LPF) with a cut-off frequency of 10 rad/s is used and the output is expected to have double the amplitude as compared to the input signal. m(t) y(t) LPF h(t) IM(0)| ANA -20 -15 -10 -5 0 5 10 15 Figure Q.1(c) Sketch the output signal, Y() Sketch and write the filter equation, H(o) (1) (ii) 20 @
Introductory Circuit Analysis (13th Edition)
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![Q.1(c) A system with an input signal, M() is shown in Figure Q.1(c). A low pass filter
(LPF) with a cut-off frequency of 10 rad/s is used and the output is expected to
have double the amplitude as compared to the input signal.
m(t)
LPF
y(t)
h(t)
IM(O)|
ANA
-20 -15
-10 -5 0 5 10 15
Figure Q.1(c)
(1)
Sketch the output signal, Y()
(ii) Sketch and write the filter equation, H(o)
20 @](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6a30be74-a81e-4985-b94d-4cd71e619e2d%2F4c89419d-d9fd-4bf1-9c06-4ccea2784e0b%2F2i0tver_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q.1(c) A system with an input signal, M() is shown in Figure Q.1(c). A low pass filter
(LPF) with a cut-off frequency of 10 rad/s is used and the output is expected to
have double the amplitude as compared to the input signal.
m(t)
LPF
y(t)
h(t)
IM(O)|
ANA
-20 -15
-10 -5 0 5 10 15
Figure Q.1(c)
(1)
Sketch the output signal, Y()
(ii) Sketch and write the filter equation, H(o)
20 @
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