3000 1000 www 60V 6000 Σ 60003 RL ob Figure 2: Circuito 2 Given the following circuit in Figure 2: a) Find the Thévenin equivalent between a and b using the method of Thévenin resistance (without sources) and open circuit voltage. b) Find the Thévenin equivalent between a and b using the method of short circuit current and open circuit voltage (already calculated in part a). c) Find the Thévenin equivalent between a and b using the test source method, where the voltage Vab = Voc + Rth Iab d) Calculate Rth using the method e) Calculate Rth using the test source method. f) Connect a resistance Rд between a and b and calculate the power in RI for RL = 502 and RL = 8000. g) Find the value of RL with Vab such that maximum power transfer occurs to RL.
3000 1000 www 60V 6000 Σ 60003 RL ob Figure 2: Circuito 2 Given the following circuit in Figure 2: a) Find the Thévenin equivalent between a and b using the method of Thévenin resistance (without sources) and open circuit voltage. b) Find the Thévenin equivalent between a and b using the method of short circuit current and open circuit voltage (already calculated in part a). c) Find the Thévenin equivalent between a and b using the test source method, where the voltage Vab = Voc + Rth Iab d) Calculate Rth using the method e) Calculate Rth using the test source method. f) Connect a resistance Rд between a and b and calculate the power in RI for RL = 502 and RL = 8000. g) Find the value of RL with Vab such that maximum power transfer occurs to RL.
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter7: Parallel Circuits
Section: Chapter Questions
Problem 3PP: Using the rules for parallel circuits and Ohmslaw, solve for the missing values....
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