ELECTRICAL CIRCUIT


  • Kirchhoff's Laws: Kirchhoff's current and voltage laws, loop and nodal analysis, superposition theorem, Thevenin's and Norton's theorems.

  • Time-Varying Signals: Phasors, sinusoidal steady-state analysis, AC circuits, power in AC circuits, three-phase circuits.

  • Network Theorems: Maximum power transfer theorem, reciprocity theorem, Millman's theorem, Tellegen's theorem.

  • Resonance: Series and parallel resonance, quality factor, bandwidth, frequency response of passive networks.

  • Transients: Transient response of RL, RC and RLC circuits, initial and final conditions, step and impulse responses.

  • Two-Port Networks: Impedance, admittance, hybrid and transmission parameters, interconnection of two-port networks.

  • Filters: Low-pass, high-pass, band-pass and band-reject filters, Butterworth, Chebyshev and Bessel filters.

  • Signals and Systems: Fourier series, Fourier transform, Laplace transform, Z-transform, transfer function, poles and zeros, stability.

  • Network Graphs: Graph of a network, incidence matrix, cut-set matrix, loop matrix, potential and current distributions in a network, loop and nodal analysis.