Mathematics & Engineering
Intermediate

Electrical & Electronic Engineering Fundamentals

Master foundational circuit theory, semiconductor physics, signal analysis, and industrial hardware design.

This intermediate engineering curriculum bridges the gap between fundamental mathematical physics and practical circuit hardware implementation. Students develop rigorous analytical models for analog and digital domains while acquiring standard industrial competencies in SPICE simulation, PCB layout, and bench testing. Both tracks cultivate the analytical and diagnostic proficiencies required to design, model, and validate complex electronic architectures.

Dr. Alistair Vance, Associate Professor of Electrical Engineering & Principal Hardware Consultant 90h + 45h 2 certificates available
Circuit AnalysisAnalog ElectronicsSemiconductor DevicesSignal ProcessingPCB Design

Curriculum

Two complete tracks. Study either or both — each has its own exam and certificate.

An academically rigorous treatment of circuit theory, electromagnetic transient phenomena, and semiconductor device physics based on formal differential models and transform techniques.

Formal derivation of circuit networks, two-port parameters, state-variable formulations, and Laplace transform solutions for higher-order differential circuits.

  • Generalized Nodal and Mesh Matrix Formulations Lab45 min
  • Laplace-Domain Transient Analysis of Second-Order RLC Networks Lab40 min
  • Two-Port Network Parameters and Transfer Function Synthesis Lab35 min

Careers this prepares you for

  • Analog Hardware Design Engineer
  • Power Electronics Engineer
  • Embedded Systems Hardware Specialist
  • Electronics Test & Validation Engineer

Your tutor

DA
Dr. Alistair Vance
Associate Professor of Electrical Engineering & Principal Hardware Consultant