国际学生入学条件
There is no minimum required GRE score for admission. Applicants whose native language is not English are also required by the Graduate School to take the Test of English as a Foreign Language (TOEFL). A score of at least 550 (paper based), 213 (computer based), or, writing-22, speaking-23, reading-21, listening-17 (internet based) on the TOEFL is usually required for admission, a score of at least 600 (paper)/230 (computer) /95 (internet-based combined) is usually expected for candidates for a teaching assistantship appointment. An acceptable IELTS score is bandwidth 7. A cumulative grade-point average of 3.0 or better in undergraduate courses is normally required for admission. Admissions decisions are based on the undergraduate record, GRE examination scores, personal statement, and letters of recommendation. You must have a 3.0 GPA - an average grade of B or better. For students whose GPAs are closer to 3 than to 4, you are a stronger applicant if your advanced undergraduate physics / astronomy / math course GPA is closer to 4 than 3. Transcripts
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雅思考试总分
7.0
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雅思考试指南
- 雅思总分:7
- 托福网考总分:83
- 托福笔试总分:550
- 其他语言考试:NA
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申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
在罗格斯大学进行的凝聚态物理实验研究有着悠久而杰出的历史。物理学系以伯纳德·塞林(Bernard Serin)的名字命名,他在1950年发现了超导体中的同位素效应。延续这一传统,凝聚态实验(CMX)小组在现代凝聚态物理的最前沿开展了针对主题的有力研究计划。具体来说,该小组正在积极致力于:新型材料的合成,涡旋物质的动力学,介观导体中的量子输运和相互作用,金属-绝缘体跃迁和相关电子效应,低维量子磁体,量子流体和固体,二维电子系统,声致发光,巨大的磁阻,铁电,磁性和最前沿的X射线表征研究。
Experimental research on condensed matter physics at Rutgers has a long and distinguished history. The physics department is named after Bernard Serin, who in 1950 discovered the isotope effect in superconductors. Continuing this tradition, the condensed matter experimental (CMX) group is pursuing a vigorous research program on topics at the forefront of modern condensed matter physics. Specifically, the group is actively working on: the synthesis of novel materials, the dynamics of vortex matter, quantum transport and interactions in mesoscopic conductors, the metal-insulator transition and correlated-electron effects, low dimensional quantum magnets, quantum fluids and solids, two-dimensional electron systems, sonoluminescence, colossal magneto-resistance, ferroelectricity, magnetism, and forefront x-ray characterization studies.
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