2. From the circuit below, a. Using Thevenin's Theorem, calculate the Eth and Rth at nodes: i. a-b ii. c-d b. Using Norton's Theorem, calculate the In and RN at nodes: i. a-b ii. c-d a b 6Ω 4Ω O c 120 V 6 A 2Ω d

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter18: Resistive-inductive Parallel Circuits
Section: Chapter Questions
Problem 5PP: In an R-L parallel circuit, R=240 and XL=360. Find impedance.
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How can I get the solution for this problem? (answers are given)

Answers:

a.i. Eth = 14 V, Rth = 2 ohms
a.ii. Eth = 19 V, Rth = 1.5 ohms
b.i. IN = 7 A, RN = 2 ohms
b.ii. IN = 12.667 A, RN = 1.5 ohms

2. From the circuit below,
a. Using Thevenin's Theorem, calculate the Eth and Rth at nodes:
i. a-b
ii. c-d
b. Using Norton's Theorem, calculate the In and RN at nodes:
i. a-b
ii. c-d
a
6Ω
4Ω
O c
120 V
3Ω
6 A
o d
Transcribed Image Text:2. From the circuit below, a. Using Thevenin's Theorem, calculate the Eth and Rth at nodes: i. a-b ii. c-d b. Using Norton's Theorem, calculate the In and RN at nodes: i. a-b ii. c-d a 6Ω 4Ω O c 120 V 3Ω 6 A o d
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