Developing the next generation of engineers and scientists through innovative teaching methods and cutting-edge curriculum
Introduction to electromagnetic fields and waves. Topics include electrostatics, magnetostatics, Maxwell's equations, plane waves, transmission lines, material properties, and introduction to numerical methods in electromagnetics.
Advanced topics in electromagnetic waves, including antenna radiation and reception, plane waves in layered medium, waveguides, cavities, scattering, and applications to communication systems and remote sensing.
Theory and application of digital signal processing. Topics include discrete-time signals and systems, z-transform, Fourier analysis, filter design, and implementation of DSP systems.
Laboratory course complementing ECE 310. Hands-on experience with DSP algorithms, implementation of digital filters, spectral analysis, and real-time signal processing applications.
Introduction to quantum mechanics. Topics include wave-particle duality, photons, Schrödinger equation, quantum states, operators, hydrogen atom, multiple-electron system, spin, and introduction to quantum information.
Our lab is leading the development of a virtual reality enabled and artificial intelligence enhanced electromagnetic laboratory to transform traditional electromagnetics education. This innovative approach provides immersive learning experiences that were previously impossible in traditional classroom settings.
Visualize electromagnetic fields and wave propagation in 3D space
Get personalized guidance and explanations during experiments
Conduct experiments without physical equipment constraints