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ECE 325 ECE 325. Electromagnetic Engineering. 3 Hours.

Examine electrostatics and magnetostatics; properties of conductive, dielectric, and magnetic materials; solutions of Maxwell's equations; uniform plane wave applications; and frequency- and time-domain analyses of transmission lines. Three lecture hours a week for one semester. Electrical and Computer Engineering 325 and Electrical Engineering 325 may not both be counted. Prerequisite: Electrical and Computer Engineering 411 (or Electrical Engineering 411) or 411H, Mathematics 427J or 427K, Physics 303L, and Physics 105N or 103N with a grade of at least C- in each; and credit with a grade of at least C- or registration for Mathematics 427L.

Bachelor of Science in Electrical and Computer Engineering

Undergraduate

http://catalog.utexas.edu/undergraduate/engineering/degrees-and-programs/bs-electrical-engineering/

The curriculum in electrical engineering and computer engineering is designed to educate students in the fundamentals of engineering, which are built upon a foundation of mathematics, science, communication, and the liberal arts. Graduates should be equipped to advance their knowledge while contributing professionally to a rapidly changing technology. Areas in which electrical and computer engineers contribute significantly are: communications, signal processing, networks and systems, electronics and integrated circuits, energy systems and renewable energy, fields, waves and electromagnetic systems, nanoelectronics and nanotechnology, computer architecture and embedded systems, and software engineering and design. Typical career paths of graduates include design, development, management, consulting, teaching, and research. Many graduates seek further education in law, medicine, business, or engineering.