Learning Goal: To calculate and use complex impedance. A 25.0-Q resistor, 50 mH inductor, and 200 µF capacitor are connected as shown below to an AC voltage source with amplitude 100 V and w=200 s-1. R în C m HE

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Find the complex impedance of the R-C combination, in Q.
Format: Since Z = R + Xj, your answer consists of two values: the resistive part R and the reactance X. Enter them separated by a comma: R, X
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VE ΑΣΦ
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Part B - Total impedance
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What is the total complex impedance, in Q?
Format: Since Z = R + Xj, your answer consists of two values: the resistive part R and the reactance X. Enter them separated by a comma: R, X
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15. ΑΣΦ
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Transcribed Image Text:Find the complex impedance of the R-C combination, in Q. Format: Since Z = R + Xj, your answer consists of two values: the resistive part R and the reactance X. Enter them separated by a comma: R, X ► View Available Hint(s) VE ΑΣΦ Submit Request Answer Part B - Total impedance ? What is the total complex impedance, in Q? Format: Since Z = R + Xj, your answer consists of two values: the resistive part R and the reactance X. Enter them separated by a comma: R, X ► View Available Hint(s) 15. ΑΣΦ Submit ?
Learning Goal:
To calculate and use complex impedance.
A 25.0-Q resistor, 50 mH inductor, and 200 µF capacitor are connected as shown below to an AC voltage source with amplitude 100 V and w=200 s-1.
R
L
m
с
Transcribed Image Text:Learning Goal: To calculate and use complex impedance. A 25.0-Q resistor, 50 mH inductor, and 200 µF capacitor are connected as shown below to an AC voltage source with amplitude 100 V and w=200 s-1. R L m с
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