Fundamental Electrical Engineering 1 provides essential foundations for understanding modern power systems and electrical devices. Students master Ohm's Law (V=IR), Kirchhoff's circuit laws for network analysis, and AC/DC distinctions with RMS calculations, enabling circuit solving across residential (single-phase 230V) and industrial (three-phase 400V) applications.

The course covers transformer operation via electromagnetic induction, voltage transformation ratios, efficiency testing (no-load/short-circuit), and single-phase motor starting methods like capacitor-start and shaded-pole designs, contrasting with efficient three-phase motors. Power calculations unify DC (P=VI) and AC systems (P=√3 V_L I_L cosφ for balanced three-phase), emphasizing power factor correction for optimal efficiency.

Practical applications span household appliances, distribution transformers, and industrial drives, building skills for telecommunications power supplies and electrotechnics (TS322 module). Mastery equips engineers to analyze, design, and troubleshoot real-world electrical systems effectively.

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