Find the Thévenin equivalent resistance with respect to the terminals a, b in the circuit in(Figure 1, the figure with the caption) without finding either the open-circuit voltage or the short-circuit current. B. Find the Norton equivalent resistance with respect to the terminals a, b in the circuit in(Figure 2) without finding either the open-circuit voltage or the short-circuit current.
Find the Thévenin equivalent resistance with respect to the terminals a, b in the circuit in(Figure 1, the figure with the caption) without finding either the open-circuit voltage or the short-circuit current. B. Find the Norton equivalent resistance with respect to the terminals a, b in the circuit in(Figure 2) without finding either the open-circuit voltage or the short-circuit current.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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A. Find the Thévenin equivalent resistance with respect to the terminals a, b in the circuit in(Figure 1, the figure with the caption) without finding either the open-circuit voltage or the short-circuit current.
B. Find the Norton equivalent resistance with respect to the terminals a, b in the circuit in(Figure 2) without finding either the open-circuit voltage or the short-circuit current.

Transcribed Image Text:80 V
(+1
10 Ω
30 Ω
R₂
a
b

Transcribed Image Text:Consider the circuits shown in (Figure 1) and (Figure 2). Take
R₁ = 24 , and R₂ = 0.5 0.
Figure
15 A
202
{80
10 Q2
{R₁
1 of 2
a
b
>
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