Doctor of Philosophy in Macromolecular and Biomolecular Materials

学历文凭
Ph.D.

专业院系
生物化学,生物物理学和分子生物学

开学时间

课程时长

课程学费

国际学生入学条件
To be considered for admission to UCSB, applicants must have received a bachelor’s degree or its equivalent (with a cumulative grade point average of 3.0 or better) from an accredited university prior to the quarter for which admission is sought.
completed an undergraduate or graduate degree at an institution whose primary language of instruction is English. The minimum score for consideration is 550 when taking the paper-based TOEFL, or 80 when taking the internet-based test; some departments require a higher score. Applicants must make arrangements to take the TOEFL directly with ETS (www.ets.org). Scores should be reported to UCSB using institution code 4835. TOEFL scores must be no more than two years old at the time of application submission. UCSB also considers a minimal score of 7 on the IELTS as an alternative to the TOEFL. IELTS scores must be no more than two years old at the time of application submission.
Applicants whose native language is not English are required to take the Test of English as a Foreign Language (TOEFL), the International English Language Testing System (IELTS), or the Duolingo English Test (DET). TOEFL paper-based test (PBT) – 550, TOEFL internet-based test (iBT) and TOEFL iBT Home Edition – 80, IELTS Academic and IELTS Indicator - Overall Band Score of 7.
IDP—雅思考试联合主办方

雅思考试总分
7.0
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- 雅思总分:7
- 托福网考总分:80
- 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联系 以获取详细信息。
课程简介
The UCSB Materials Department conducts world-class research in Macromolecular and Biomolecular Materials. Organic materials are critical to addressing emerging societal needs through advances in energy, environmental and biomedical research. For example, self-assembled polymer thin films are used to pattern features at the nanoscale in modern electronics. Biomolecular assemblies of DNA and proteins determine both the structure and active mechanical properties of biological cells. The electronic structure of semiconducting polymers provides revolutionary capability in printing low cost electronic devices and solar cells. Our faculty designs and studies the properties of organic and biomolecular materials across length scales to address these challenges and to define new directions of fundamental and applied research.
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52
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