Wesley Stevens
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Coursework

Explore all relevant coursework I've accomplished to complete my degree.

PHYS 122

Autumn 2025

Electromagnetism

Electric and magnetic fields, Gauss's law, Faraday's law, and Maxwell's equations — the physical foundation underlying all of electrical engineering.

MATH 207

Autumn 2025

Differential Equations

Ordinary differential equations and Laplace transforms, with direct applications to modeling dynamic circuits and physical systems.

CSE 123

Autumn 2025

Computer Programming III

Advanced data structures including trees, graphs, linked lists and hash structures, with algorithm analysis and recursive problem-solving.

E E 215

Winter 2026

Fundamentals of Electrical Engineering

Basic circuit and systems concepts. Kirchhoff's laws. Resistors, sources, capacitors, inductors, and op-amps. First and second order linear differential equations.

MATH 208

Winter 2026

Matrix Algebra

Systems of linear equations, vector spaces, matrices, subspaces, orthogonality, eignvalues & eigenvectors, all with engineering applications.

E E 241

Winter 2026

Programming for Signal Processing

Python programming for signal and information processing applications. Basic data types, packages for data manipulation and visualizing handled in a variety of formats.

E E 242

Spring 2026

Signals, Systems & Data

Signal Processing: Continuous- and Discrete-time signals, systems, and transforms. Fourier series and transforms. Linear, time-invariant filters.

PHYS 123

Spring 2026

Waves, Light & Heat

Oscillatory motion, electromagnetic waves, optics, waves in matter, fluids, thermodynamics, and related experiments for engineering.

E E 271

Spring 2026

Digital Circuits & Systems

Overview of digital computer systems. Logic design, boolean algebra, combinational & sequential circuits, finite state machines, and the design and operation of digital computers, including ALU, memory, and I/O. Programming in Verilog.

E E 233

Autumn 2026

Circuit Theory

Analysis of circuits with sinusoidal signals. Phasors, system functions, complex frequency, and frequency response. Power, energy, and two-port network theory.

E E 280

Autumn 2026

Exploring Devices

Overview of modern electronic and photonic devices underlying products including smartphones, traffic lights, and lasers. Introduction to modeling and principles of physics relevant to device analysis.

E E 469

Autumn 2026

Computer Architecture I

Assembly and machine language, microprocessor organization including control and datapath. Computer arithmetic. Memory systems and caching. Performance modeling of microprocessors.