a. Analytical Calculations: Determine the resulting Thévenin equivalent for Circuit 1 by calculating the Voc (using Voltage Divider Rule or Nodal Analysis), Isc (using Mesh Analysis) and RTH (using Delta-Wye conversion with voltage source deactivated). You must show detailed step-by-step calculations with relevant circuit diagrams. Given: R₁ = 1 kN, R₂ = 2.2 kN, R3 = 820 , R4 = 220 2, R6 = 470 2, RL = 330 №. R1 I source 8Vdc V1 R2 www R6 ww R4 R3 + V load RL I load

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a. Analytical Calculations:
Determine the resulting Thévenin equivalent for Circuit 1 by calculating the Voc (using Voltage Divider
Rule or Nodal Analysis), Isc (using Mesh Analysis) and RTH (using Delta-Wye conversion with voltage
source deactivated). You must show detailed step-by-step calculations with relevant circuit diagrams.
Given: R₁ = 1 kN, R₂ = 2.2 kN, R3 = 820 N, R4 = 220 S, R6 = 470 2, RL = 330 №.
R1
I source
8Vdc
V1
R2
R6
R4
R3
+
V load
RL
I load
Transcribed Image Text:a. Analytical Calculations: Determine the resulting Thévenin equivalent for Circuit 1 by calculating the Voc (using Voltage Divider Rule or Nodal Analysis), Isc (using Mesh Analysis) and RTH (using Delta-Wye conversion with voltage source deactivated). You must show detailed step-by-step calculations with relevant circuit diagrams. Given: R₁ = 1 kN, R₂ = 2.2 kN, R3 = 820 N, R4 = 220 S, R6 = 470 2, RL = 330 №. R1 I source 8Vdc V1 R2 R6 R4 R3 + V load RL I load
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