1. The curent I1 is equal to 2. The current 12 is equal to 3. The current 13 is equal to 4. The voltage at node 2 is equal to 13 140 60 Node 2 Node 3 200 10 0 5. The voltage at node 3 is equal to 12 A 50 20 V 6. The voltage at 20 Q is equal to 7. The power consumed at 14 2 is equal to Figure 1

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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1. The current Il is equal to
2. The current 12 is equal to.
3. The current 13 is equal to
4. The voltage at node 2 is equal to
13
140
60
Node 2
Node 3
200
10 0
5. The voltage at node 3 is equal to
12 A
O
50
20 V
6. The voltage at 20a is equal to
7. The power consumed at 14 2 is
equal to
Figure 1
Q4: Use the mesh analysis on a circuit at Figure 2 to find:
a- Curents on resistors 5 Q, and 6
60
40
b- Voltages at nodes A, and B?
c- Power dissipated at 2 0, and 302?
Node A
Node B
20 v
10 V
30
10
Figure 2
Transcribed Image Text:1. The current Il is equal to 2. The current 12 is equal to. 3. The current 13 is equal to 4. The voltage at node 2 is equal to 13 140 60 Node 2 Node 3 200 10 0 5. The voltage at node 3 is equal to 12 A O 50 20 V 6. The voltage at 20a is equal to 7. The power consumed at 14 2 is equal to Figure 1 Q4: Use the mesh analysis on a circuit at Figure 2 to find: a- Curents on resistors 5 Q, and 6 60 40 b- Voltages at nodes A, and B? c- Power dissipated at 2 0, and 302? Node A Node B 20 v 10 V 30 10 Figure 2
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