国际学生入学条件
All official Transcripts. A bachelor's degree or its foreign equivalent from an accredited college or university. Official transcripts of your grades. Three letters of recommendation. Applicants are required to upload a transcript (may be unofficial at this time) including the key from all attended colleges or universities.The transcript must show the name of the student, name of the issuing institution, name of courses taken, and the grades received in those courses. The Graduate School does not have a minimum TOEFL or IELTS score requirement. If you are offered admission and accept our offer and have scored below a 27 on the Speaking sub-section of the TOEFL iBT or below an 8.0 on the Speaking sub-section of the IELTS you will be required to take an English placement test at the start of the fall term. Students who do not pass the test will be required to enroll in English Language Program classes.
General Test and Physics Subject Test required
Admission to the program is highly competitive. Successful applicants generally present strong undergraduate training, with concentrations in mathematics, physics, or engineering, and high scores on the Graduate Record Exam (GRE), both on the GRE General Test and the GRE Subject Test in physics. Students accepted to the program are normally offered research assistantships, which include tuition expenses and a generous stipend. Prospective students are encouraged, however, to apply for any outside fellowships for which they may qualify.
Please note: The GRE General Test and Subject Test in Physics are Optional/Not Required for Fall 2022 Admission, but strongly recommended.
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雅思考试总分
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雅思考试指南
- 雅思总分:6
- 托福网考总分:60
- 托福笔试总分:160
- 其他语言考试:NA
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课程简介
Plasmas, the fourth state of matter, are collections of freely moving charged particles (mainly electrons and ions) in which collective phenomena, such as waves, dominate the system's behavior. Plasmas are essential to many high-technology applications. One example is fusion energy, for which the fuel is a high-temperature plasma. Low-temperature plasmas are used for a growing number of materials fabrication processes, including the formation of complex microscopic and nanoscopic patterns for microelectronic and micro-optical components, and the deposition of tribological, magnetic, optical, conducting, insulating, polymeric, and catalytic thin-films. Plasmas are also important for illumination, display technology, microwave generation, destruction of toxic wastes, lasers, spacecraft propulsion, astrophysics, and advanced-design accelerators for fundamental particle research. Applications of plasma science and technology meld several traditional scientific and engineering specialties. This program aims to provide strong interdisciplinary support and training for graduate students working in these areas. The scope of interest includes fundamental studies of the plasmas, their interaction with surfaces and surroundings, and the technologies associated with their applications.
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