Multiply with the least common factor to remove any fractions. 12/0° V E2 Iy 1Ω j2 Ω ΤΩ 4/90° V E1] KVL@loop A: K11Vx + Z12lx + Z13ly = Source1 KVL @loop B: K21Vx + Z22lx + Z23ly = Source2 KVLⒸ loop C: K31Vx+Z32lx + Z33ly = Source3 -j4Ω Η j2 Ω -j2Ω 0 Μ ΤΩ 41,

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Multiply with the least common factor to remove any fractions.
12/0° V
E2
Iy
1Ω j2 Ω
m
1Ω
490° V
E1
KVL @ loop A:
K11Vx + Z12lx + Z13ly = Source1
KVL @ loop B:
K21Vx+Z22lx + Z23ly = Source₂
KVL @ loop C:
K31Vx + Z32lx + Z33ly = Source3
www
-j4Ω
j2 Ω
m
-j2Ω
Μ
ΤΩ
www
41,
Transcribed Image Text:Multiply with the least common factor to remove any fractions. 12/0° V E2 Iy 1Ω j2 Ω m 1Ω 490° V E1 KVL @ loop A: K11Vx + Z12lx + Z13ly = Source1 KVL @ loop B: K21Vx+Z22lx + Z23ly = Source₂ KVL @ loop C: K31Vx + Z32lx + Z33ly = Source3 www -j4Ω j2 Ω m -j2Ω Μ ΤΩ www 41,
KVL @ loop A:
K11Vx+Z12lx +Z13ly = Source₁
KVL @ loop B:
K21Vx+Z22lx + Z23ly = Source₂
KVL @ loop C:
K31Vx+Z32lx + Z33ly = Source3
DO NOT prefix for the imaginary part.
RE
IM
RE
IM
Blank
k11
Blank
1
212
Blank
3
Blank
4
2
Blank
k21
Blank
10
222
Blank
11
Blank
12
k31
Blank
17
Blank
18
232
Blank
19
Blank
20
Z13
Z23
233
RE
Blank
5
Blank
13
Blank
21
IM
Blank
Blank
14
Blank
22
=
=
RE
Blank
7
Blank
15
Blank
23
IM
Blank
8
Blank
16
Blank
24
Transcribed Image Text:KVL @ loop A: K11Vx+Z12lx +Z13ly = Source₁ KVL @ loop B: K21Vx+Z22lx + Z23ly = Source₂ KVL @ loop C: K31Vx+Z32lx + Z33ly = Source3 DO NOT prefix for the imaginary part. RE IM RE IM Blank k11 Blank 1 212 Blank 3 Blank 4 2 Blank k21 Blank 10 222 Blank 11 Blank 12 k31 Blank 17 Blank 18 232 Blank 19 Blank 20 Z13 Z23 233 RE Blank 5 Blank 13 Blank 21 IM Blank Blank 14 Blank 22 = = RE Blank 7 Blank 15 Blank 23 IM Blank 8 Blank 16 Blank 24
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