国际学生入学条件
550 TOEFL Minimum score
80 TOEFL IBT Minimum score
7 IELTS Minimum score
Official transcripts (unofficial accepted for evaluation)
Prospective international students must have the equivalent of a U.S. bachelor's degree from an approved institution. Usually this is a minimum of four years of study beyond grade 12.
A grade point average equivalent to a U.S. grade of B or better is required. Transcripts are required for the application review process. A copy of the unofficial transcript (native language and its English translation) for every college and university that the applicant attended is acceptable for the application review process. Applicants with at least a B (3.0 on a 4.0 scale) grade point Avg, or the equivalent in the last 60 graded semester (90 quarter) hours, from an accredited college or university, or at least a B grade point Avg in any graduate work from a recognized graduate school are eligible for admission to regular student status. Applicants with at least 12 semester hours of approved coursework from accredited graduate schools with at least a B grade point Avg are eligible for admission to regular student status.
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IDP—雅思考试联合主办方
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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:80
- 托福笔试总分:550
- 其他语言考试:MELAB - 77
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
Structural metallic alloys, high-temperature ceramics, polymers, composites, and carbon nanotubes are all characterized by a specific microstructure and specific deformation and failure mechanism. In manufacturing and service industries, these components are subjected to loads, heat, and chemically aggressive environments. The first challenge of solid mechanics is understanding microstructures and deformation/failure mechanisms operating over different length and time scales, from understanding atoms to the wing of an airplane. <br>After gaining a qualitative understanding of deformation and failure, the next challenge is dealing in the area of predictive models for manufacturing and service arises. Mathematical formulations give rise to computational models that are then used to simulate deformation and failure processes on different scales with variable resolution. The overall goal is to design new materials and new manufacturing processes and to improve the performance of existing components.
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