国际学生入学条件
Undergraduate Preparation:
Applicants are expected to have a degree in physics or a related discipline from an accredited institution.
Standardized Tests:
Scores from the GRE General or Physics subject exam are not required to apply but will be considered if submitted. For example, Physics GRE scores can be useful in evaluating applicants with a non-standard path to graduate study in physics. All applications will receive full consideration whether GRE scores are submitted or not.
Transcripts
Applicants must upload unofficial transcripts of their entire post-secondary academic record to the online application, including all undergraduate- and graduate-level coursework. Applicants are expected to have achieved a minimum GPA of 3.0 in their undergraduate programs.
Statement of Purpose
The statement of purpose should indicate your reasons for applying to the proposed program at the University of Virginia and describe your preparation for this field of study, research interests, future career plans, and intellectual or life experiences in order to aid the admissions committee in evaluating your aptitude and motivation for graduate study. Your commitment to a selected field of study is presumed in the receipt of your application, instead, please discuss specific issues in the field that engage you. Please limit your submission to between 500 and 1,000 words.
The minimum internet-based (iBT) TOEFL score requirement is 90 (including sectional minimums of 22 in speaking, 22 in writing, 23 in reading and 23 in listening). The minimum paper-based TOEFL score requirement is 600. Applicants may submit scores from the International English Language Testing System (IELTS) as an alternative to the TOEFL exam. The minimum IELTS score requirement is 7.0 in each section.
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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:90
- 托福笔试总分:600
- 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
The Theoretical Elementary Particle Physics group acknowledges that the fundamental task of physics is to learn the rules of the basic interactions governing the behavior of matter and to search for new laws when present knowledge fails to answer the remaining mysteries of the observable universe. At the foundation of modern theories of particle physics is a deep and beautiful symmetry principle: the invariance of physical laws under symmetry transformations at every space-time point. Theories that show this symmetry are known as Yang-Mills or Gauge Theories. The Standard Model of Strong, Electromagnetic and Weak interactions is the most successful of these theories. It describes all known interactions of matter except gravity.<br>The Electroweak part of the Standard Model is being tested to a high degree of precision. The Strong interaction part, the Quantum Chromodynamics (QCD) Theory, which describes the interactions among the quarks, is being closely scrutinized, both perturbatively and nonperturbatively. The Standard Model is incomplete, however, since a number of fundamental puzzles, such as CP violation and the origin of masses, remain unsolved. The solutions to these problems probably lie outside the framework of the Standard Model. Students admitted to the Ph.D. program are supported financially either by teaching and research assistantships or fellowships. Research leading to the dissertation can be carried out not only within the Department of Physics, but, with appropriate arrangements, either partly or entirely at other locations. Recent dissertation research has been carried out at various national laboratories across the globe, such as the NIST Center for Neutron Research, Jefferson Lab, Fermilab, CERN, and the Paul Scherrer Institute.
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