国际学生入学条件
Students applying for admission to the M.S. program in atmospheric sciences should have an adequate background in atmospheric sciences and/or in the appropriately related sciences and mathematics. The latter would include at least three semesters of calculus, two of general physics, and one of general chemistry. Students with little or no background in atmospheric sciences would be expected to take selected undergraduate courses as prerequisites and to remove other deficiencies. : No GRE scores are required. IELTS Academic-6.5 or higher (minimum of 6.5 in each sub score), Provide Test of English as a Foreign Language (TOEFL) with a total score of at least 80 on the Internet-based Test (iBT), and with minimum test scores for each section of: Listening 18 points, Reading 18 points, Writing 18 points, Speaking 18 points – for admission , Toefl paper-based test requires a score of 550 or higher (with scores of 50 on at least two of the three sections and no section score below 45).
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雅思考试总分
6.5
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- 雅思总分:6.5
- 托福网考总分:80
- 托福笔试总分:550
- 其他语言考试:Duolingo with a total score of 110 or better.
课程简介
The Ph.D. degree program in atmospheric sciences was initiated with the establishment of the Department of Marine, Earth and Atmospheric Sciences in 1981. The Atmospheric Sciences program at NC State has grown significantly and the total research grants and contracts currently amount to several million dollars. The number of graduate students enrolled is about sixty of which over one-third are Ph.D. students. Research is an integral part of graduate study and should be a major consideration in the selection of a graduate program. An M.S. student should determine a general area of research within atmospheric sciences, while a Ph.D. applicant should consider in-depth research on a specific topic. At present, the faculty and graduate students research in the atmospheric sciences program at NC State concentrates in the following areas: Air-sea interaction, Boundary layer meteorology, Climatology, Cloud chemistry and microphysics, Convective dynamics and physics, Geophysical fluid dynamics, Meteorological observations and instrumentation, Mesoscale processes,Satellite remote sensing, Storm structure and dynamics, Synoptic-dynamic meteorology, Tropical meteorology, Weather systems and forecasting.
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