iii. Complete the equation given by the independent voltage source 12 =12 iv. Use Nodal Analysis to find the voltage at node A: v. Use Nodal Analysis to find the volage at Node C:

EBK ELECTRICAL WIRING RESIDENTIAL
19th Edition
ISBN:9781337516549
Author:Simmons
Publisher:Simmons
Chapter27: Service-entrance Equipment
Section: Chapter Questions
Problem 44R
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please help me on the incorrect part, thanks

i. Complete the formula below for the application of KCL at supernode A & B. (please ensure each term in your summation represents the current in mA. Use the symbols A, B,
and C for the voltages at the nodes)
b.
KCL at A&B:
В-С
A- C
A
무+
=0mA
2
1
ii. Similarly, write the formula for the application of
KCL at C:
C-B
C-A
=0mA
2
iii. Complete the equation given by the independent voltage source 12
=12
iv. Use Nodal Analysis to find the voltage at node A:
V
v. Use Nodal Analysis to find the volage at Node C:
V
vi. What is the current I, in mA?
Transcribed Image Text:i. Complete the formula below for the application of KCL at supernode A & B. (please ensure each term in your summation represents the current in mA. Use the symbols A, B, and C for the voltages at the nodes) b. KCL at A&B: В-С A- C A 무+ =0mA 2 1 ii. Similarly, write the formula for the application of KCL at C: C-B C-A =0mA 2 iii. Complete the equation given by the independent voltage source 12 =12 iv. Use Nodal Analysis to find the voltage at node A: V v. Use Nodal Analysis to find the volage at Node C: V vi. What is the current I, in mA?
B
12 V (+
32 kn
I,
A
1 kM
2 kN
1 kN
2 mA
D
Transcribed Image Text:B 12 V (+ 32 kn I, A 1 kM 2 kN 1 kN 2 mA D
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