5-32. In the Op-Amp circuit shown in Fig. P5.32, the output voltage V, is given by ZC Vin V,=- ZR where ZR = R2 is the impedance of the resistor and Zc = -jXc2 is the impedance of the capacitor. (a) If express ZRNnd Zc as complex num- bers in both rectangular and polar R =2 kQ and Xc 1 k 2, forms. (b) If Vi 10 °V, determine V, in both rectangular and polar forms. %3D
5-32. In the Op-Amp circuit shown in Fig. P5.32, the output voltage V, is given by ZC Vin V,=- ZR where ZR = R2 is the impedance of the resistor and Zc = -jXc2 is the impedance of the capacitor. (a) If express ZRNnd Zc as complex num- bers in both rectangular and polar R =2 kQ and Xc 1 k 2, forms. (b) If Vi 10 °V, determine V, in both rectangular and polar forms. %3D
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:5-32. In the Op-Amp circuit shown in
Fig. P5.32, the output voltage V. is
given by
Vin
ZR
where ZR = R 2 is the impedance of
the resistor and Zc = -jXc Q is the
impedance of the capacitor.
(a) If R=2 k2
and
Fic
P5
Xe=1 k 2,
express ZRNnd Zc as complex num-
5-2
bers in both rectangular and polar
forms.
(b) If V= 10 20°V, determine V,
both rectangular and polar forms.
in
ww
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