4. Given the prototype HPF circuit shown, if the design impedance is 600 n and cutoff frequency is 150 Hz, then the value of Cis approximately 20 (a) 0.62 µF (b) 0.69 µF (c) 0.88 µF (d) 0.92 µF

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4. Given the prototype HPF circuit shown, if the design impedance
is 600 n and cutoff frequency is 150 Hz, then the value of C is
approximately
20
(a) 0.62 µF
(b) 0.69 µF
(c) 0.88 µF
(d) 0.92 uF
5. Given the symmetrical T-network shown, the characteristic
impedance is
200
20 0
(a) 100
(b) 200
300
(c) 400
(d) 60 2
6. The quality factor of a series RLC resonant circuit increases if
(a) R decreases
(b) R increases
(c) B.W. increases
(d) input voltage increases
7. A band-pass filter is one which
(a) attenuates all frequencies below the lower cutoff frequency fca
(b) attenuates all frequencies above the upper cutoff frequency fcz
(c) attenuates all frequencies lying between fciand fcz
(d) passes all frequencies lying between feiand fcz
Transcribed Image Text:4. Given the prototype HPF circuit shown, if the design impedance is 600 n and cutoff frequency is 150 Hz, then the value of C is approximately 20 (a) 0.62 µF (b) 0.69 µF (c) 0.88 µF (d) 0.92 uF 5. Given the symmetrical T-network shown, the characteristic impedance is 200 20 0 (a) 100 (b) 200 300 (c) 400 (d) 60 2 6. The quality factor of a series RLC resonant circuit increases if (a) R decreases (b) R increases (c) B.W. increases (d) input voltage increases 7. A band-pass filter is one which (a) attenuates all frequencies below the lower cutoff frequency fca (b) attenuates all frequencies above the upper cutoff frequency fcz (c) attenuates all frequencies lying between fciand fcz (d) passes all frequencies lying between feiand fcz
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