Q6. (Optional) For the circuit shown in Figure, determine the Thévenin equivalent circuit by analysing the open-circuit output voltage and the equivalent resistance viewed from the two terminals. The open-circuit voltage is the voltage across two output terminals, A and B. Once both are computed, calculate the short circuit current through Ohm's law. (R1-R2-2.2k2, R3-47052, R4=1kΩ, R5=4.7kΩ) R₂ E R₂ R₁ www Rs W R₁ A

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q6. (Optional) For the circuit shown in Figure, determine the Thévenin equivalent circuit by
analysing the open-circuit output voltage and the equivalent resistance viewed from the two
terminals. The open-circuit voltage is the voltage across two output terminals, A and B. Once both
are computed, calculate the short circuit current through Ohm's law. (R1- R2-2.2k2, R3-47002,
R4=1kΩ, R5=4.7kΩ)
E
R₁
www
R₂
R3
www
www
R₁
Rs
ww
A
Transcribed Image Text:Q6. (Optional) For the circuit shown in Figure, determine the Thévenin equivalent circuit by analysing the open-circuit output voltage and the equivalent resistance viewed from the two terminals. The open-circuit voltage is the voltage across two output terminals, A and B. Once both are computed, calculate the short circuit current through Ohm's law. (R1- R2-2.2k2, R3-47002, R4=1kΩ, R5=4.7kΩ) E R₁ www R₂ R3 www www R₁ Rs ww A
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