
Plasma | Radiation | Nuclear Power |
---|---|---|
Plasma Engineering 1, 2 | Special Topic in Radiation Beam Science 1, 2 | Special Topic on Nuclear Reactor Safety Engineering |
Plasma Engineering Seminar | Special Topic in Material Analysis by Radiation Beam 1, 2 | Nuclear Safety and Security Colloquium |
Plasma Processing of Nuclear Materials 1, 2 | Advanced Radiation Engineering 1, 2, 3 | Nuclear Nonproliferation and Safeguards |
Advanced Fusion Engineering 1, 2 | Advanced Radiation Interaction with Matter | Decommissioning of Nuclear Power Plant |
Plasma Processing of Semiconductor | Advanced Radiation Measurements | |
Environmental Technology of Plasma | Modern Health Physics | |
Plasma Diagnostics | Radiation Safety Analysis | |
Plasma Chemistry | Monte Carlo Simulation Methods | |
Advanced Electromagnetics | Radiation Imaging Techniques | |
Numerical Analysis for Plasma Simulation |
Graduation Requirements
Master’s Degree: Minimum of 6 credits in thesis research + 24 course credits
Doctoral Degree: Minimum of 9 credits in thesis research + 36 course credits
(Up to 24 credits earned during the master’s program may be recognized as part of the doctoral major credits)
Integrated Program: Minimum of 15 credits in thesis research + 36 course credits