Question 1: For the shown circuit; a) Find Norton equivalent circuit at terminals a-b. b) Use Norton equivalent circuit to obtain Thevenin equivalent circuit. c) If a load resistance R, is connected between terminals a-b; • Use the equivalent circuit to find the load voltage and maximum power delivered RL. Hint: - Use the node voltage method to obtain open-cireuit voltage at the terminals a-b. - Use the mesh current method to obtain short-circuit current at the terminals a-b. 0.2 iA 2 kN 2 k2 a 280 V 3 2 kn 5.6 kN

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Question 1:
For the shown circuit;
a) Find Norton equivalent circuit at terminals a-b.
b) Use Norton equivalent circuit to obtain Thevenin equivalent circuit.
c) If a load resistance R, is connected between terminals a-b;
• Use the equivalent circuit to find the load voltage and maximum power delivered to
RL.
Hint: - Use the node voltage method to obtain open-cireuit voltage at the terminals a-b.
- Use the mesh current method to obtain short-circuit current at the terminals a-b.
0.2 iA
2 kn
2 k2
a
280 V
3 2 kn
5.6 kN
Transcribed Image Text:Question 1: For the shown circuit; a) Find Norton equivalent circuit at terminals a-b. b) Use Norton equivalent circuit to obtain Thevenin equivalent circuit. c) If a load resistance R, is connected between terminals a-b; • Use the equivalent circuit to find the load voltage and maximum power delivered to RL. Hint: - Use the node voltage method to obtain open-cireuit voltage at the terminals a-b. - Use the mesh current method to obtain short-circuit current at the terminals a-b. 0.2 iA 2 kn 2 k2 a 280 V 3 2 kn 5.6 kN
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