Electrical Engineering
University — Year 1
Kirchhoff's Laws→Capacitors→Inductors→AC Circuits→Impedance→Ohm's Law→Kirchhoff's Voltage Law (KVL)→Kirchhoff's Current Law (KCL)→Series and Parallel Circuits→Resistor Color Codes→Power and Energy in Circuits→DC Circuit Analysis Methods→Nodal Analysis→Mesh Analysis→Superposition Theorem→Thevenin's Theorem→Norton's Theorem→Maximum Power Transfer Theorem→Capacitance and Capacitors→Inductance and Inductors→AC Circuit Fundamentals→Phasors and Complex Numbers→Impedance and Admittance→AC Circuit Analysis→Resonance in AC Circuits→Power Factor and Reactive Power→Three-Phase Circuits→Transformers Fundamentals→Electromagnetic Fields→Electric Field Intensity→Magnetic Field Intensity→Magnetic Flux and Flux Density→Semiconductor Fundamentals→Diode Operation and Characteristics→Bipolar Junction Transistor (BJT)→Field-Effect Transistor (FET)→Boolean Algebra→Combinational Logic Circuits→Operational Amplifier (Op-Amp)→Transient Response Analysis→Steady-State Response→Laplace Transform Basics→Transfer Function→Bode Plots→Passive Filters (RL, RC, LC)→Two-Port Networks→Transmission Lines Introduction→Frequency Response Analysis→Fourier Series→
University — Year 2
Transistors→Operational Amplifiers→Logic Gates→Ohm's Law and Circuit Analysis→Kirchhoff's Voltage Law (KVL)→Kirchhoff's Current Law (KCL)→Thévenin's Equivalent Theorem→Norton's Equivalent Theorem→Maximum Power Transfer Theorem→Impedance and Phasor Representation→Power Factor and Reactive Power→AC Power Calculations and Analysis→Three-Phase AC Systems→Sinusoidal Steady-State Analysis→Frequency Response Analysis→Bode Plots and Diagrams→Laplace Transform Fundamentals→Fourier Series Expansion→Fourier Transform Analysis→Transfer Function and System Analysis→Faraday's Law of Electromagnetic Induction→Ampère's Law and Magnetic Field→Magnetic Flux Density and Permeability→Inductance Calculations and Coils→Capacitance and Dielectric Materials→Resonance in RLC Circuits→RLC Circuit Transient Response→Step Response and Impulse Response→Semiconductor Diode Characteristics→Bipolar Junction Transistor (BJT)→Field-Effect Transistor (FET) and MOSFET→Operational Amplifier (Op-Amp) Circuits→Logic Gates and Boolean Operations→Boolean Algebra and Logic Minimization→Flip-Flops and Sequential Logic Circuits→Combinational Logic Design→Power Systems Fundamentals→Transformer Theory and Operation→DC Motor Principles and Characteristics→AC Induction Motor Fundamentals→Generator Theory and Operation→Network Theorems and Analysis→Two-Port Network Parameters (Z, Y, h, ABCD)→System Stability and Pole Location→Control Systems Basics→Feedback Control Systems→Energy, Power, and Efficiency→
University — Year 3
Power Flow Analysis→Synchronous Machine Modeling→Induction Motor Operation→Transmission Line Parameters→Three-Phase Fault Analysis→Power System Stability→Root Locus Method→Bode Plot Analysis→Nyquist Stability Criterion→State-Space Representation→Digital Control Systems→PID Controller Design→Transient Response Analysis→Steady-State Error→Frequency Response Methods→DC-DC Power Converters→AC-DC Rectifier Circuits→Inverter Design and PWM→Voltage Regulation→Power Factor Correction→Electromagnetic Induction→Magnetic Circuits Analysis→Three-Phase Power Systems→Per Unit System→Harmonic Distortion Analysis→Reactive Power Compensation→Motor Starting Methods→Variable Frequency Drives→Electrical Machine Protection→Relay Coordination Schemes→Circuit Breaker and Switchgear→Load Flow Distribution→Optimal Power Flow→Economic Dispatch→Power System Transients→Lightning Protection Systems→Grounding and Earthing Systems→Power Quality Issues→Demand-Side Management→Smart Grid Technologies→Distributed Generation→Renewable Energy Integration→Energy Storage Systems→Microgrid Operation→