5-15. A resistor, capacitor, and an inductor are connected in series as shown in Fig. P5.15. The total impedance of the cir- cuit is Z = ZR + ZL + Zc, where ZR = R2, ZL = j@L 2, and Zc = c a particular design R = 100 á, L = 530 mH, C = 26.5 µF, and w = 120 t rad/s. (a) Determine the total impedance Z in rectangular form. (b) Determine the total impedance Z in polar form. (c) Determine the complex conjugate Z* and compute the product Z Z*. 1 Ω. For jo C %3D ni bsionnoonamalo lo R nibniw Isani Figure P5.15 RLC circuit for problem P5-15.

College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter23: Electromagnetic Induction, Ac Circuits, And Electrical Technologies
Section: Chapter Questions
Problem 101PE: An RLC series circuit has a 2.50 (resistor, a 100 (H inductor, and an 80.0 (F capacitor. (a) Find...
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5-15. A resistor, capacitor, and an inductor
are connected in series as shown in Fig.
P5.15. The total impedance of the cir-
cuit is Z = ZR +ZL +Zc, where ZR =
RQ, ZL = j@L 2, and Zc = 2. For
a particular design R = 100 2, L = 530
mH, C = 26.5 µF, and w = 120 a rad/s.
(a) Determine the total impedance Z in
%3D
1
jo C
rectangular form.
(b) Determine the total impedance Z in
polar form.
(c) Determine the complex conjugate Z*
and compute the product Z Z*.
ni boonno nmalo to Rl
enibaiw Iseini ne ove
Figure P5.15 RLC circuit for problem P5-15.
Transcribed Image Text:5-15. A resistor, capacitor, and an inductor are connected in series as shown in Fig. P5.15. The total impedance of the cir- cuit is Z = ZR +ZL +Zc, where ZR = RQ, ZL = j@L 2, and Zc = 2. For a particular design R = 100 2, L = 530 mH, C = 26.5 µF, and w = 120 a rad/s. (a) Determine the total impedance Z in %3D 1 jo C rectangular form. (b) Determine the total impedance Z in polar form. (c) Determine the complex conjugate Z* and compute the product Z Z*. ni boonno nmalo to Rl enibaiw Iseini ne ove Figure P5.15 RLC circuit for problem P5-15.
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