Week - 1 |
Course Introduction; The Engineering Profession,Main Branches; The Fields of Study in Electrical Engineering ; SI Units System; Electrical Concepts: Atom and electrons, Electric charge, Current, Voltage, Energy, and Power |
Week - 2 |
Electric Circuit; Open Circuit and Short Circuit Concepts; Resistance and Ohm's Law; Passive Sign System; Kirchhoff's Laws. |
Week - 3 |
Series and Parallel Connection; Dependent and Independent Current and Voltage Sources; Ideal and Practical Sources; Analysis Methods: Loop Analysis. |
Week - 4 |
Analysis Methods: Nodal analysis; Source Transformations; Superposition Theorem.
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Week - 5 |
Thevenin and Norton Equivalent Circuits; Power Transfer; Step by Step Solution; Sinusoidal Forcing Function. |
Week - 6 |
Thevenin and Norton Equivalent Circuits; Power Transfer; Step by Step Solution; Sinusoidal Forcing Function. |
Week - 7 |
Capacitance and Inductance; Alternating Current Circuits; Phasor Concept .
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Week - 8 |
Impedance and Admittance, AC Circuit Analysis; Average and Effective Values, Average, Active, Reactive, and Complex Power; Power Factor.
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Week - 9 |
Average and Effective Values; Complex Power.
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Week - 10 |
Mutual Inductance and Transformers: Linear transformers, Ideal transformers. |
Week - 11 |
Mutual Inductance and Transformers: Linear transformers, Ideal transformers. |
Week - 12 |
Three Phase Systems |
Week - 13 |
Three Phase Systems |
Week - 14 |
Semi-conductors: Diodes and Some Diode Circuits. |