Study the circuit below. A current of 300° mA and angular velocity of 350 rad/s is flowing in the circuit. www 70 Ω Zc Give the complex impedance of each component in cartesian (rectangular) form: ZR ZL = 70 8 mH = 170 μF Ω Ω Ω (Imaginary numbers should be entered using the postfix "i" e.g. "2i" and complex numbers as "1 + 2i") Calculate the voltage dropped across the three components giving your answer in polar form I 2 °V
Study the circuit below. A current of 300° mA and angular velocity of 350 rad/s is flowing in the circuit. www 70 Ω Zc Give the complex impedance of each component in cartesian (rectangular) form: ZR ZL = 70 8 mH = 170 μF Ω Ω Ω (Imaginary numbers should be entered using the postfix "i" e.g. "2i" and complex numbers as "1 + 2i") Calculate the voltage dropped across the three components giving your answer in polar form I 2 °V
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Study the circuit below. A current of 30/0° mA and angular velocity of 350 rad/s is flowing in the circuit.
70 Ω
8 mH
170 μF
Give the complex impedance of each component in cartesian (rectangular) form:
ZR =
70 Ω
ZL =
Ω
Zc =
Ω
(Imaginary numbers should be entered using the postfix "i" e.g. "2i" and complex numbers as "1 + 2i")
Calculate the voltage dropped across the three components giving your answer in polar form
I
2
°V
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