3. Inductor and capacitor impedances are given as: Z, = jwL and Zc 1/jwC. Assume you have a 10µF capacitor and a 10mH inductor. Calculate the impedance of these components at the following frequencies and list in the space provided: 1 MHz (1,000,000 Hz): jwL 21/jwC = Ω %D 50KHZ (50,000 Hz): jwL = 21/jwC = Ω %3D OHz: jwL 21/jwC = Ω

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter17: Resistive-inductive Series Circuits
Section: Chapter Questions
Problem 2PP: Assume that the voltage drop across the resistor, ER, is 78 V, that the voltage drop across the...
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3. Inductor and capacitor impedances are given as: Z, = jwL and Zc =
1/jwC. Assume you have a 10µF capacitor and a 10mH inductor. Calculate
the impedance of these components at the following frequencies and list in
the space provided:
1 MHz (1,000,000 Hz): jwL
Ω 1/jωC
Ω
%D
50KHZ (50,000 Hz): jwL
N1/jwC =
Ω
0Hz: jwL =
N 1/jwC =
%3D
Transcribed Image Text:3. Inductor and capacitor impedances are given as: Z, = jwL and Zc = 1/jwC. Assume you have a 10µF capacitor and a 10mH inductor. Calculate the impedance of these components at the following frequencies and list in the space provided: 1 MHz (1,000,000 Hz): jwL Ω 1/jωC Ω %D 50KHZ (50,000 Hz): jwL N1/jwC = Ω 0Hz: jwL = N 1/jwC = %3D
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