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Catégorie :Category: mViewer GX Creator Lua TI-Nspire
Auteur Author: jmagio
Type : Classeur 3.6
Page(s) : 5
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Mis en ligne Uploaded: 31/07/2021 - 04:06:25
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30/07/2021 Solved: Chapter 10 Problem 20P Solution | Electric Circuits 10th Edition | Chegg.com

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Determine capacitive reactance.

Electric Student Multivariab
Circuits Solutions... Calculus
10th Edition 4th Edition 3rd Edition
(2)

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Comment

Step 2 of 9

Redraw the circuit with capacitive reactance and inductive reactance.

Comment

Step 3 of 9

Determine total impedance.

https://www.chegg.com/homework-help/Electric-Circuits-10th-edition-chapter-10-problem-20P-solution-9780133760033 1/5
30/07/2021 Solved: Chapter 10 Problem 20P Solution | Electric Circuits 10th Edition | Chegg.com

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Chapter 10, Problem 20P 22 Bookmarks Show all steps: ON

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Walkthrough
Step 4 of 9 for problem

Determine generating current.

Determine apparent power delivered by source.

Thus, the average power delivered by source is,

Thus, the reactive power delivered by source is, .

Comments (1)

Step 5 of 9

(b)

Calculate the current, .

Power delivered to resistor.

Comment

https://www.chegg.com/homework-help/Electric-Circuits-10th-edition-chapter-10-problem-20P-solution-9780133760033 2/5
30/07/2021 Solved: Chapter 10 Problem 20P Solution | Electric Circuits 10th Edition | Chegg.com

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Step 6 of 9
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Power delivered
Chapter to 10, Problem
resistor.20P 22 Bookmarks Show all steps: ON

Total power delivered is,

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for problem

Thus, the power delivered by the source is equal to power absorbed by the circuit.

Comment

Step 7 of 9

(c)

Determine current passing through the capacitive reactance.

Comment

Step 8 of 9

Reactive power absorbed by the capacitor.

Comments (1)

Step 9 of 9

Reactive power absorbed by the inductor.

https://www.chegg.com/homework-help/Electric-Circuits-10th-edition-chapter-10-problem-20P-solution-9780133760033 3/5
30/07/2021 Solved: Chapter 10 Problem 20P Solution | Electric Circuits 10th Edition | Chegg.com

  Textbook Solutions Expert Q&A Practice 

Chapter 10, Problem 20P 22 Bookmarks Show all steps: ON

Thus, reactive power delivered by the source is equal to reactive power absorbed by the circuit.

Comment

Walkthrough
for problem

...

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