With the load resistor R₁ removed, calculate the Thevenin equivalent voltage, VTHV, using the Node Analysis (KCL) method and the Thevenin equivalent resistance, RTHV, across terminals A and B for the circuit in Fig. Q3.

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Q3.
15 V
(a) With the load resistor RL removed, calculate the Thevenin equivalent
voltage, VTHV, using the Node Analysis (KCL) method and the Thevenin
equivalent resistance, RTHV, across terminals A and B for the circuit in
Fig. Q3.
(b) If terminals A and B are short-circuited, what is the value of the short-
circuit current?
(c) What value should the load resistor RL be for maximum power to be
transferred to RL? Calculate the maximum power delivered to RL.
5 ΚΩ
A
§20 ΚΩ
R₁
ww
10 ΚΩ
ww
Fig. Q3
B
30 ΚΩ
5 ΚΩ
WW
10 V
Transcribed Image Text:Q3. 15 V (a) With the load resistor RL removed, calculate the Thevenin equivalent voltage, VTHV, using the Node Analysis (KCL) method and the Thevenin equivalent resistance, RTHV, across terminals A and B for the circuit in Fig. Q3. (b) If terminals A and B are short-circuited, what is the value of the short- circuit current? (c) What value should the load resistor RL be for maximum power to be transferred to RL? Calculate the maximum power delivered to RL. 5 ΚΩ A §20 ΚΩ R₁ ww 10 ΚΩ ww Fig. Q3 B 30 ΚΩ 5 ΚΩ WW 10 V
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