国际学生入学条件
A bachelors degree or equivalent from an accredited college or university.
To submit and complete your application you must upload a PDF file of your unofficial transcript directly to your online application Unofficial transcripts must be in English.
Please ensure that the scanned documents are readable and include all courses grades ie marks scores etc and credits completed to date The scanned documents should also include information about the institutions grading scale If admitted you will need to provide your official transcript For a transcript to be official it must be in a sealed envelope from the transferring college or university.
Other Documents -
Statement of purpose - 500 words minimum.
Letters of recommendation 2 or 3 for graduate programs.
Curriculum vitae CV Resume.
TOEFL 85, IELTS 7, GPA - 3.0
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- 雅思总分:
- 托福网考总分:
- 托福笔试总分:
- 其他语言考试:
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
在MS级别,学生可以继续学习为高级实践或MS论文研究做准备的程序。所有具有助学金的MS学生都必须完成论文。其他学生可以选择论文或非论文选项。所有课程工作必须获得学术顾问的批准。热流体是机械工程MS学位内的四个浓度之一。东北大学机械与工业工程系为本科生和研究生提供了广泛的教育机会。作为我们排名最高的合作教育计划的一部分,本科生将获得高质量的课堂指导以及行业工作经验。通过在合作伙伴机构出国一个学期,在国外合作或参加全球对话计划,可以获得国际经验。
The Master of Science in Mechanical Engineering program allows students to concentrate in materials science and engineering, mechanics and design, or thermofluids engineering.<br><br>Potential career paths: Mechanical Engineer, Materials Engineer, Development Scientist, Aerospace Engineer, Automotive Engineer<br>Energy Engineer<br>If you want to earn your master’s in Mechanical Engineering at Northeastern, Global Pathways can help you succeed through rigorous language training, cultural activities, and support.<br>The MS in Mechanical Engineering has a Thermofluids concentration. Some of the representative research areas under this concentration may include thermodynamics, fluid dynamics, kinetic theory of gases, and thermophoresis of aerosols; microscale heat transfer phenomena and its effects on laser beam propagation; fundamentals of combustion such as burning speed and onset of auto-ignition measurement and flame stability analysis; development of chemistry reduction such as rate-controlled constrained-equilibrium method; formation and control of combustion-generated pollutants and greenhouse gases; chemistry, transport, and abatement of air pollution; alternative energy sources; combustion-based synthesis of materials; fire propagation, containment, and extinction; nonequilibrium thermodynamics; energy and gas turbine cooling technology; turbine blade cooling; and energy-related and calorimeter studies related to pharmaceutical developments. Our research and teaching together seek to prepare students to understand and exploit thermofluids to enable their future engineering innovations.
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