Figure illustrates the asymptotic Bode plot for a bio-potential amplifier. a. Find the transfer function of the system and express it in the H(j@)dB 40 standard form. b. Determine the differential 20 equation that relates the output to the input. @(rps) C. Find frequency response 0.1 1 10 100 10k function of the system. d. Find the output vo(t) of the system if the input is vi(t) = 1+ 0.01cos(0.1t) + 0.001cos(10t) + 0.1cos(1000t)

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Author:Robert L. Boylestad
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Figure illustrates the asymptotic Bode plot for a bio-potential amplifier.
a. Find the transfer function of
H(j@)dB
40
the system and express it in the
standard form.
b. Determine the differential
20
equation that relates the
output to the input.
@(rps)
c. Find frequency response
10k
0.1
1
10
100
function of the system.
d. Find the output vo(t) of the system if the input is v(t) = 1+ 0.01cos(0.1t) + 0.001cos(10t) +
0.1cos(1000t)
Transcribed Image Text:Figure illustrates the asymptotic Bode plot for a bio-potential amplifier. a. Find the transfer function of H(j@)dB 40 the system and express it in the standard form. b. Determine the differential 20 equation that relates the output to the input. @(rps) c. Find frequency response 10k 0.1 1 10 100 function of the system. d. Find the output vo(t) of the system if the input is v(t) = 1+ 0.01cos(0.1t) + 0.001cos(10t) + 0.1cos(1000t)
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