Question

The gain in frequency domain of a physiological system is given by G = 10^{-2} (100 + s) (1000 + s). Apply your understanding of frequency analysis of the given physiological system by solving the following. (a) Evaluate the gain in decibels. (8 marks) (b) Compute the gain of each term of the expression obtained from Q3(a) and the pole frequencies. (9 marks) (c) Construct a clearly labelled asymptotic Bode plot. (10 marks) (d) Compute the error at each of the pole frequencies. (6 marks)

          The gain in frequency domain of a physiological system is given by
G = 10^{-2} (100 + s) (1000 + s).
Apply your understanding of frequency analysis of the given physiological system by
solving the following.
(a) Evaluate the gain in decibels.
(8 marks)
(b) Compute the gain of each term of the expression obtained from Q3(a) and the
pole frequencies.
(9 marks)
(c) Construct a clearly labelled asymptotic Bode plot.
(10 marks)
(d) Compute the error at each of the pole frequencies.
(6 marks)
        
Show more…
The gain in frequency domain of a physiological system is given by
G = 10^-2 (100 + s) (1000 + s).
Apply your understanding of frequency analysis of the given physiological system by
solving the following.
(a) Evaluate the gain in decibels.
(8 marks)
(b) Compute the gain of each term of the expression obtained from Q3(a) and the
pole frequencies.
(9 marks)
(c) Construct a clearly labelled asymptotic Bode plot.
(10 marks)
(d) Compute the error at each of the pole frequencies.
(6 marks)

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University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
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Please help with all parts. I need an explanation of how you got the answer. Thank you. The gain in the frequency domain of a physiological system is given by: G = 10 - 100 + s√1000 + s Apply your understanding of frequency analysis of the given physiological system by solving the following. (a) Evaluate the gain in decibels. (8 marks) (b) Compute the gain of each term of the expression obtained from Q3(a) and the pole frequencies. (9 marks) (c) Construct a clearly labeled asymptotic Bode plot. (10 marks) (d) Compute the error at each of the pole frequencies. (6 marks)
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Transcript

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00:01 So here in this question we have to measure the frequency response of an amplifier in the data in the table where we are given the value of the frequency that is in hertz and we are given the value of magnetic field which is represented in db that is equal to 10 10 raised to the power 2 10 raised to the power 3 10 raised to the power 4 10 raised to the power 5 10 raised to the power 6 and 10 raised to the power 7 and t is in 0 20 37 40 37 20 and 0 so we have to find out the value from here so from the known values we can see that there is a bond pass filter there is a bond pass filter that is it blocks low and the high frequencies it blocks low and the high frequencies while passing mid frequency so the value of f of lo is equals to 10 raised to the power 2 hertz and that of f of ho is equals to 10 raised to the power 6 hertz so same approximation rules to apply…
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