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工程与应用科学

机械工程(汽车工业)

 学校:  

罗切斯特大学

   硕士生项目

Mechanical Engineering( M.S.)Automotive Engineering

学年学制

30 credit hours

学年学费

$1,596.00 / credit hour

奖学政策

提供奖学金

所在校区

暂无

专业排名

暂无

招生人数

暂无

录取要求

The MS degree in mechanical engineering requires 30 hours of graduate credit. Students are also required to complete a thesis (Plan A) or an oral exam (Plan B).

No more than 10 credits can be transferred from non-matriculated study at Rochester or from an outside institution. See the Graduate Bulletin for steps on how to request transfer credit.

All students need to complete the Program of Study Form, available from the graduate coordinator, by the end of their second semester of study.

Plan A, Thesis Option

Plan A requires a written dissertation prepared by the student under the supervision of his/her advisor. Of the 30 required credit hours, this option requires:

6 to 12 hours of thesis research

At least 16 hours of courses 400 level or higher

At least 12 of these 16 course must be ME courses

The formal defense of the dissertation takes place after the completion of all coursework, and the student must be registered for the semester in which the defense takes place.

See the ME Graduate Handbook for more information about Plan A and the thesis defense.

Plan B, Coursework Option

Plan B requires at least 20 hours of ME courses, at least 16 of which must be at the 400 level or higher. Reading and research credits cannot be counted towards the 20 required ME credit hours. The maximum number of research credits for this option is 6. At least 20 of the 30 credit hours must be in formal courses at the 400 level or higher.

Plan B students are required to take a comprehensive oral examination at the end of their coursework. Students should speak to the graduate coordinator and their faculty advisor to schedule the exam.

See the ME Graduate Handbook for more information about Plan B and the oral exam.

Applicants who are not US Citizens or Permanent Residents

Any documents or letters submitted in support of your application should be in English or should be accompanied by an English translation. Please do not send secondary school records.

The University requires applicants whose native language is not English to take the Test of English as a Foreign Language (TOEFL). Official copies of the TOEFL score will be sent directly to us if you specify the University code is 7267 and the department code is 68.

To obtain a visa for study in the United States, international students must present the Certificate of Eligibility (I-20 or IAP-66) at a US consulate or embassy and demonstrate full proof of ability to pay all tuition and living expenses for the first year of study.

Note: University fellowships may not cover all of these expenses; students will ordinarily need some additional funds. The International Student Office will issue the I-20 or IAP-66 after a student has been admitted and demonstrated proof of his/her ability to pay all expenses for at least the first year of study.

For detailed information about visas please refer to the International Services Office.

申请材料清单

Application consists of the following parts:

A full online application

Personal statement

Official transcripts from each university that you have attended - uploaded to the online application and official copy mailed to the department

Official copies of GRE scores – uploaded to the online application or mailed to the department

GRE University code: 2928

GRE department code: 1502

Official copies of TOEFL or IELTS scores for applicants whose native language is not English

TOEFL University code: 7267

TOEFL department code:68

Three letters of recommendation submitted electronically

截止申请时间:

1月1日

专业介绍

What is Mechanical Engineering

Mechanical engineering is the analysis, design, and development of mechanical systems. Mechanical engineers combine design, manufacturing, industry collaborations, and research innovations on a daily basis to further advances in mechanical design.

Our Program

Based on a firm foundation of basic science, applied mathematics, and engineering sciences, the Department of Mechanical Engineering offers a rigorous program designed to prepare well-trained, creative, responsible engineers capable of assuming leadership roles in their profession.

Students apply the latest software to problems in the mechanics of:

Solids and fluids

Materials science

Mechanical systems

Advanced power applications

Broad hands-on laboratory and advanced design projects offer significant experience in experimental and computational work. These experiences complement a curriculum that includes a strong focus on the analysis, design, and development of mechanical and thermal systems.

In addition to strengthening leadership and communications skills necessary for excelling in the field, the program offers a deep understanding of the broad social and economic impacts of engineering.

We apply these same principles to the geomechanics undergraduate degree program, which is offered jointly with the Department of Earth and Environmental Sciences.

Educational Objectives*

The overall educational objective of the bachelor of science program in mechanical engineering at the University of Rochester is to develop effective practitioners in mechanical engineering and associated fields.

Our graduates will confidently apply knowledge in the basic sciences, mathematics, engineering analysis, computation, experimentation, and design to address emerging and evolving engineering challenges.

Our graduates will contribute to the advancement of their chosen field, while remaining mindful of the ethical, safety, and social implications of their work. They will be able to communicate effectively and work in multidisciplinary teams, and will be well equipped for leadership roles in industry, academia, and government.

In keeping with the continuously evolving nature of mechanical engineering, we expect that our alumni will engage actively in lifelong learning and professional development activities, and that many of them, inspired by research experiences as undergraduates, will continue their education in advanced degree programs.

*approved unanimously by the Mechanical engineering faculty and the Industrial Advisory Board in December, 2015 and January 2016, respectively.

Educational Outcomes

To achieve the educational objectives described above, the mechanical engineering program is designed to provide students with important knowledge and skills in key areas.

All students who complete the University of Rochester’s bachelor of science in mechanical engineering will be able to:

Apply knowledge of mathematics, science, and engineering

Design and conduct experiments, as well as analyze and interpret data

Design a system, component, or process to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, health and safety, manufacturability, and sustainability

Function on multidisciplinary teams

Identify, formulate, and solve engineering problems

Communicate effectively

Use the techniques, skills, and modern engineering tools necessary for engineering practice

Gain an understanding of professional and ethical responsibility

Understand the impact of engineering solutions in a global, economic, environmental, and societal context

Recognize of the need for, and an ability to, engage in lifelong learning

Know contemporary issues


联系方式:

Main Office

Department of Mechanical Engineering

235 Hopeman Building

Box 270132

University of Rochester

Rochester, NY 14627-0132

Graduate Program Coordinator:

Sarah Ansini

sansini@hse.rochester.edu

235 Hopeman Building

Phone: (585) 275-2849

课程设置

  • ME 400 APPLIED BOUNDARY VALUE PROB
  • ME 401 MATHEMATICAL METHODS
  • ME 402 PARTIAL DIFFERENTIAL EQUATIONS
  • ME 403 NUMERICAL METHODS
  • ME 404 COMPUTATIONAL METHODS APPLIED TO BIOLOGICAL SYSTEMS
  • ME 406 DYNAMICAL SYSTEMS
  • ME 407 ADVANCED DYNAMICS
  • ME 408 PHASE TRANSFORMATION
  • ME 412 VISCO IN BIO TISSUES
  • ME 424 INTRODUCTION ROBUST DESIGN & QUALITY ENGINEERING
  • ME 431 COMPUTATIONAL METHODS
  • ME 432 OPTO-MECHANICAL
  • ME 434 INTRODUCTION TO PLASMA PHYSICS I
  • ME 435 INTRODUCTION TO PLASMA PHYSICS II
  • ME 436 COMPRESSIBLE FLOW
  • ME 437 INCOMPRESSIBLE FLOW
  • ME 439 TURBULENCE
  • ME 440 MECHANICS OF STRUCTURES
  • ME 441 FINITE ELEMENTS
  • ME 443 APPLIED VIBRATION ANALYSIS
  • ME 444 CONTINUUM MECHANICS
  • ME 445 PRECISION INSTRUMENT DESIGN
  • ME 449 ELASTICITY
  • ME 451 Characterization Methods in Materials
  • ME 453 INTRO TO NUCLEAR ENGINEERING
  • ME 458 NON-LINEAR FINITE ELEMENTS
  • ME 460 THERMODYNAMICS OF SOLIDS
  • ME 461 FRACTURE & ADHESION
  • ME 462 SOLIDS & MATERIALS LAB
  • ME 463 MICROSTRUCTURES
  • ME 466 CORROSION
  • ME 481 MECHANICAL PROP OF MATERIALS
  • ME 482 BIOSOLID MECHANICS
  • ME 483 BIOFLUID MECHANICS
  • ME 485 NONLINEAR FINITE ELEMENT
  • ME 491 MASTER'S READING COURSE ME
  • ME 492 SPEC TOP:HIGH ENERGY DEN PHY
  • ME 493 MASTER'S ESSAY
  • ME 494 MASTERS INTERNSHIP
  • ME 495 MASTER'S RESEARCH IN ME
  • ME 496 CURRNT RESEARCH IN MECHANICS
  • ME 532 MAGNETOHYDRO DYNAMICS
  • ME 533 INTRO-INERTIAL CONFINEMENT FUSION
  • ME 535 LASER PLASMA INTERACTIONS
  • ME 536 INERTIAL CONFINEMENT FUSION
  • ME 541 NANOSCALE CRYSTALLINE DEFECT
  • ME 545 ADVANCED PLASMA PHYSICS
  • ME 591 PHD READING COURSE IN ME
  • ME 594 RESEARCH INTERNSHIP
  • ME 595 PHD RESEARCH IN ME
  • ME 595A PHD RESEARCH IN ABSENTIA
  • ME 890 SUMMER IN RESIDENCE - MA
  • ME 895 CONT OF MASTER'S ENROLLMENT
  • ME 897 MASTERS DISSERTATION
  • ME 899 MASTER'S DISSERTATION
  • ME 899A MSTRS DISERTATN IN ABSENTIA
  • ME 985 LEAVE OF ABSENCE
  • ME 986V FULL TIME VISITING STUDENT
  • ME 987V PART TIME VISITING STUDENT
  • ME 990 SUMMER IN RESIDENCE
  • ME 995 CONT OF DOCTORAL ENROLLMENT
  • ME 997 DOCTORAL DISSERTATION
  • ME 997A DOCT DISSERTATN IN ABSENTIA
  • ME 999 DOCTORAL DISSERTATION
  • ME 999A DOCT DISSERTATN IN ABSENTIA
  • ME 999B IN-ABSENTIA ABROAD
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