eee-1109 EEE-1109 Basic Electrical Engineering I. Basic Electrical Engineering (EEE 1109)
• A. Circuit Fundamentals & Laws
◦ Electric, unilateral, active components: definition [Definition] (2022)
◦ Circuit voltage at nodes: determination [Numerical] (2022)
◦ Y-Δ and Δ-Y conversions (resistive network): deduction [Derivation] (2022)
◦ Ampere’s circuital law: state and explain with example [Explanation, Example] (2022, 2023)
◦ Node, branch, loop: definition with diagram [Definition, Diagram] (2022)
◦ KCL and KVL: define, state, explain with figures [Definition, Explanation, Diagram] (2023, 2024)
◦ Active, passive elements: define [Definition] (2023)
◦ Equivalent resistance calculation (terminals A and B) [Numerical] (2023, 2024)
◦ Node voltages & current: determination using nodal analysis [Numerical] (2023, 2024)
◦ Load current: determination using source conversion [Numerical] (2023)
◦ Electric vs magnetic circuit: distinction [Distinction] (2023)
◦ Current I1, I2, I3: determination using mesh analysis [Numerical] (2024)
◦ Dependent vs independent sources: definition, classification [Definition, Classification] (2024)
◦ Power dissipated in resistor [Numerical] (2024)
• B. Network Theorems
◦ Maximum power transfer theorem: condition, 50% efficiency proof, application examples [Derivation, Proof, Explanation] (2022, 2023, 2024)
◦ Superposition theorem: state, current determination for circuit [Statement, Numerical] (2022, 2023)
◦ Mesh current: calculation using loop/mesh analysis [Numerical] (2022, 2023)
◦ Norton equivalent circuit: find between terminals [Numerical] (2022, 2024)
◦ Thevenin equivalent circuit: find between terminals [Numerical] (2023, 2024)
◦ Reciprocity theorem: state, current determination using Norton’s theorem [Statement, Numerical] (2023)
◦ Maximum power transfer: determine RL for max power, calculate max power [Numerical] (2024)
◦ Norton equivalent, current from a-b using it [Numerical] (2024)