4-C) With w = 1250 rad/s, and V; = 9el1 - j10 volts, evaluate the magnitude and phase of V, (Hint: evaluate in polar form, and Vị in polar form, then V, =x Vi )

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just (4-c)

For the low-pass active filter shown below, the transfer function is expressed as:
V.
V: ZR + Zc
where:
rad
w = angular frequency in |
106
ZR = 2000 , Zc
ja
ZR
V, o w
Vo
4-A) Show that the e can be written as:
V.
500
V 500 + jw
4-B) What should be the value of w so that the magnitude of ·
is
4-C) With w = 1250 rad/s, and V; = 9e18 – j10 volts, evaluate the magnitude and phase of V.
(Hint: evaluate
Va
in polar form, and Vị in polar form, then V, =x Vị )
Transcribed Image Text:For the low-pass active filter shown below, the transfer function is expressed as: V. V: ZR + Zc where: rad w = angular frequency in | 106 ZR = 2000 , Zc ja ZR V, o w Vo 4-A) Show that the e can be written as: V. 500 V 500 + jw 4-B) What should be the value of w so that the magnitude of · is 4-C) With w = 1250 rad/s, and V; = 9e18 – j10 volts, evaluate the magnitude and phase of V. (Hint: evaluate Va in polar form, and Vị in polar form, then V, =x Vị )
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