Choose one of the methods of analysis or circuit theorems from the following list: a. Superposition b. Source transformation c. Thevenin d. Norton e. Mesh f. Nodal Design a simple RLC AC Source electric circuit that can demonstrate the fundamental principle of the chosen method of analysis/circuit theorem. (Your circuit MUST unique and MUST not be the same as other’s group) Using the chosen methods of analysis/theorem, identify voltage, current, P, Q, S of each load and for the whole circuit. Then, determine the power factor of the whole loads in the circuit. Sketch the power triangle and phasor diagram of voltage and current source for the circuit. Prove your answers of voltage and current by simulating the circuit using any circuit analysis simulation tools. Show that the calculated values are closed to the simulated results.

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Choose one of the methods of analysis or circuit theorems from the following list: a. Superposition b. Source transformation c. Thevenin d. Norton e. Mesh f. Nodal Design a simple RLC AC Source electric circuit that can demonstrate the fundamental principle of the chosen method of analysis/circuit theorem. (Your circuit MUST unique and MUST not be the same as other’s group) Using the chosen methods of analysis/theorem, identify voltage, current, P, Q, S of each load and for the whole circuit. Then, determine the power factor of the whole loads in the circuit. Sketch the power triangle and phasor diagram of voltage and current source for the circuit. Prove your answers of voltage and current by simulating the circuit using any circuit analysis simulation tools. Show that the calculated values are closed to the simulated results.

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