MS in Nuclear Engineering--University of California Berkeley

课程名称:Master of Science in Nuclear Engineering

授予学位:硕士学位 (Masters)
 
授予机构:UNIVERSITY OF CALIFORNIA BERKELEY
 
学院:College of Engineering, Department of Nuclear Engineering

课程介绍: 

In this program, there are two plans for the students, they can choose either of the plan. Plan I requires a minimum of 20 semester units of coursework plus a thesis. Plan II requires a minimum of 24 semester units of coursework, and a comprehensive examination and a research project report. The choice of Plan I or Plan II should be made by the student at the beginning of the first semester as a graduate student. The graduate program is divisible into 11 areas, each representing an important aspect of nuclear technology - applied nuclear physics; bionuclear and radiological physics; nuclear materials and chemistry; energy and the environment; fission reactor analysis; fusion science and technology; nuclear thermal hydraulics; laser, particle beam, and plasma technologies; fuel cycles and radioactive waste; risk, safety, and systems analysis; and ethics and the impact of technology on society. Coursework and research opportunities are available in each area. A program of study is selected for each individual student.

国际学生入学要求:

Students must have a bachelor's degree in one of the fields of engineering or the physical sciences or recognized equivalent from an accredited institution with a minimum grade-point average (GPA) of 3.0 and enough undergraduate training to do graduate work in their chosen field International students of recognized academic institutions outside the United States should have completed degree programs representing a minimum of 16 years of schooling with at least 12 years at the primary and secondary level. Students must have the TOEFL score of at least 570 for the paper and pencil test or at least 230 for the computer based test, or at least 68 for the internet based test (ibt) or IELTS overall band score must be at least 7 on a 9-point scale.

 课程安排:

The modules are NE 201 Nuclear Reactions and Interactions of Radiation with Matter (4), NE 204 Advanced Concepts in Radiation Detection and Measurements (3), NE 220 Irradiation Effects in Nuclear Materials (3), NE 221 Corrosion in Nuclear Power Systems (3), NE 224 Safety Assessment for Geological Disposal of Radioactive Wastes, NE 225 Nuclear Fuel Cycle, NE 230 Analytical Methods for Non-Proliferation (3), NE 250 Nuclear Reactor Theory (4), NE 255 Numerical Methods of Reactor Analysis (3), NE 260 Thermal Aspects of Nuclear Reactors (4), NE 265 Design Analysis of Nuclear Reactors (3), NE 267 Nuclear Reactor Safety (3), NE 275 Principles and Methods of Risk Analysis (4), NE 280 Fusion Reactor Engineering (3), NE 281 Fully Ionized Plasmas (3), NE 282 Ion Source and Beam Technology (3), NE 290G Scientific and Regulatory Basis for Environmental Protection in Nuclear Fuel Cycle (3), NE 296 Integrative Capstone Project (2, 3 units).

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