SA [(a) 5 V (b) 5 V] 13. Find the voltage V in the network shown in Fig. 2.44 (a) if R is 10 2 and (b) 20 2 14. In the network of Fig. 2.44 (b), calculate the voltage between points a and b i.e. Vab [30 V] (Elect. Engg. I, Bombay Univ.) 4A 78A 4 h 10A ww 3A (a) ΤΑ 6A DC Network Theorems SA Is 1A 77 12A www 12 6A 8A Fig. 2.44 (b) [Hint: In the above two cases, the two closed loops are independent and no current passes between them].

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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SA
[(a) 5 V (b) 5 V]
13. Find the voltage V in the network shown in Fig. 2.44 (a) if R is 10 2 and (b) 20 2
14. In the network of Fig. 2.44 (b), calculate the voltage between points a and b i.e. Vab
[30 V] (Elect. Engg. I, Bombay Univ.)
4A
78A
4
h
10A
ww
3A
(a)
ΤΑ
6A
DC Network Theorems
SA
Is
1A
77
12A
www
12
6A
8A
Fig. 2.44
(b)
[Hint: In the above two cases, the two closed loops are independent and no current passes between them].
Transcribed Image Text:SA [(a) 5 V (b) 5 V] 13. Find the voltage V in the network shown in Fig. 2.44 (a) if R is 10 2 and (b) 20 2 14. In the network of Fig. 2.44 (b), calculate the voltage between points a and b i.e. Vab [30 V] (Elect. Engg. I, Bombay Univ.) 4A 78A 4 h 10A ww 3A (a) ΤΑ 6A DC Network Theorems SA Is 1A 77 12A www 12 6A 8A Fig. 2.44 (b) [Hint: In the above two cases, the two closed loops are independent and no current passes between them].
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