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Learn to analyse and design fundamental electrical systems and networks.
Exam‑style questions with instant feedback.
Section 1: Basic Concepts
Section 2: DC Circuit Analysis
Section 3: Network Theorems
Section 4: Capacitance & Inductance
Section 5: AC Fundamentals
Section 6: AC Steady-State Analysis
Section 7: Resonance
Section 8: Transient Analysis
Section 9: Three-Phase Systems
Section 10: Magnetics & Transformers
What you’ll achieve
Master the fundamentals of Ohm’s law, Kirchhoff’s laws, and circuit theorems.
Analyse AC and DC circuits in steady-state and transient conditions.
Understand resistive, capacitive, and inductive circuit behaviour.
Apply electrical circuit principles to real-world engineering problems.
Develop strong analytical and problem-solving skills for electrical systems.

Course overview
Electrical Circuits introduces the concepts, laws, and techniques used to analyse and design electrical networks. Students explore Ohm’s law, Kirchhoff’s laws, circuit theorems, AC/DC analysis, and transient and steady-state responses. The course also covers practical applications in electrical engineering, including resistive, capacitive, and inductive circuits, as well as power distribution. By integrating theory with problem-solving exercises, learners gain the skills necessary to design, test, and troubleshoot circuits in real-world engineering contexts.
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