国际学生入学条件
Transcripts: Must be uploaded to application. If admitted, official transcripts are required. All transcripts should be converted to the American 4.0 grade point average (GPA) Scale, if possible.
Letters of Recommendation: 2 letters of recommendation are required. If you are currently in school, letters from academic advisors and other professors are preferred. If you are currently in industry, letters from employers are acceptable. Recommendation letters can be submitted through the on-line application tool.
Test scores: official test scores sent from ETS. TOEFL or IELTS scores (required for all international students) expire after 2 years and expired scores WILL NOT be accepted. GRE test scores (required for all students) expire after 5 years.
Essay: a brief statement of career and research objectives. Essays should clearly articulate your experience and goals. Half a page to two pages is sufficient.
Supplemental Information: applicants should also include a resume or CV, current research or creative work, list of published works, and extracurricular activities.
GPA
3.0/4.0 required for PhD
2.75/4.0 required for MS
Minimum Test Requirements
GRE General Test (School code: 2365, Dept code: 1203)
75th percentile or better on Quantitative
iBT TOEFL (School code: 2365, Dept code: 66)
79 composite score
20 Writing, 20 Speaking, 20 Reading, 15 Listening
IELTS
6.5 Overall Minimum Band Score
6.0 Writing, 6.5 Speaking, 6.5 Reading, 6.0 Listening
展开 IDP—雅思考试联合主办方
雅思考试总分
6.5
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雅思考试指南
- 雅思总分:6.5
- 托福网考总分:79
- 托福笔试总分:550
- 其他语言考试:NA
CRICOS代码:
申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
Whether in the home, commercial or industrial settings, we rely increasingly on electricity-intensive devices and processes. Looking ahead, this reliance will only grow as we depend on electric power to meet more and more of our energy needs. To enable this electric energy future, we require solutions today to drastically improve the generation, delivery and consumption of electricity. The faculty in the Electricity Energy research area are addressing wide ranging technologies that will enable an electric energy future that is more efficient, green, resilient and secure. The efforts include: developing devices and materials that improve green generation and energy-efficient consumption, addressing the overhaul of the physical and cyber infrastructures of the power grid, and improving the power efficiency of existing digital processes. These activities span across a variety of disciplines, both within and outside of Electrical and Computer Engineering, and are closely integrated with several inter-disciplinary programs, including the Center for Optical Technologies and the Integrated Networks for Electricity Research Cluster.
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