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. The Master of Arts (M.A.) degree is normally an incidental degree on the way to full Ph.D. candidacy and is earned after a student successfully: (a) passed the first proposition and successfully defended it orally before a committee of faculty members.. It may also be awarded to students who, for various reasons, leave the Ph.D. program, provided that these requirements have been met.
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 required
ADDITIONAL DEPARTMENTAL REQUIREMENTS:
Please briefly describe how your academic interests, background, or life experiences would promote Princeton's commitment to diversity and inclusion within the Graduate School and to training individuals in an increasingly diverse society. Please submit a succinct statement of no more than 250 words.
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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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申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
Complex materials, produced by highly refined control of structures at multiple length-scales, comprise the very fabric of many modern technologies. Soft materials, mostly synthetic polymers, are lightweight and strong these are found as structural materials in cars, homes or sports equipment, in packaging for food and beverages, but also used as membranes for desalination and other separations. Most polymeric materials introduced into commerce today contain multiple components or phases, with supramolecular structures ranging from nanometers to microns. Organic materials and polymers are also increasingly useful as building blocks for electronic and photovoltaic applications, an area of major activity in this department. Colloidal assemblies are also an important class of materials that have been the focus of significant research efforts at Princeton. Processing and fluid dynamics play an important role in the development of polymeric materials and complex fluids. For example, researchers at Princeton utilize fast mixing of polymer solutions with a poor solvent for the polymers to produce nanoparticles with controlled structure, size, and complex morphologies in a one-step scalable process. Fluid-mechanical instabilities are being used to generate intricate patterns in two and three dimensions.
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