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工程与应用科学

材料科学与工程

 学校:  

凯斯西储大学

   硕士生项目

Materials Science & Engineering

标准考试成绩要求

TOFEL:90

IELTS: 7

学年学制

27 credit hours

学年学费

$1,840 per 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

Deadline for Fall semester is February 1st Deadline for Spring semester is October 1st (international) and November 1st (domestic)

A bachelor’s degree in an engineering or science field. An undergraduate GPA of at least 3.00 is recommended. Admission to the program with an undergraduate GPA less than 3.0 is only possible on a probationary basis and a graduate GPA of 2.75 or better is required to remain in the program. GRE scores are required for all applications and TOEFL exams are required of international students. Three letters of recommendation are required.

Supplemental Materials: Transcripts, GRE, TOEFL scores, resume/CV: listing research experience, publications, awards/honors, etc., and letters of recommendation can be mailed to:Case Western Reserve University

A.W. Smith Building

Room 105

Attention: Theresa Claytor

10900 Euclid Avenue

Cleveland, OH 44106

申请材料清单

Applicants should reach out directly to the program or department to which you are applying for specific program-related questions. Addresses for departments are in the Program Information section of the application or listed on their individual websites. Each program within the School of Graduate Studies is responsible for recommending admission of new graduate students. Final decisions are posted by our staff and can be viewed by logging in to the online application system.

The admissions team is here to assist in making your application and admissions process seamless. If you have specific questions relating any of the following topics, please call (216) 368-4390, stop by Tomlinson Hall, Room 203, or email gradadmit@case.edu.

Transcripts

Letters of recommendation

Test scores

Application fee

Online application system

Admission decisions and acceptance letters

CWRU Network IDs

Submitting official documents

If recommended for admission by your department, the School of Graduate Studies will then make the final decision on your application. If you have been accepted with conditions outlining the need to submit one or more official documents, you can view which documents are missing by logging back in to the online application system and viewing your admission letter.

Test Scores: To send official TOEFL or GRE test scores through ETS, use the institutional code of 1105 for Case Western Reserve University.

Official Transcripts: PDFs sent by email are not considered official and cannot be used for verification purposes. Official transcripts must come directly from the institution either mailed in a sealed envelope or sent electronically to the addresses below. International students - Documents in languages other than English must be accompanied by certified translations in English.

截止申请时间:

2月1日春季/10月1日秋季

专业介绍

Materials science and engineering is a discipline that extends from the microscopic structure and properties of materials to the design and evaluation of materials in engineering systems. Achievements in materials science underpin the revolutionary advances in technology that define the modern standard of living. The role of a materials engineer is to understand why materials behave as they do under various conditions, to recognize the limits of performance that particular materials can attain, and to know what can be done during the manufacture of materials to meet the demands of a given application.

The Department of Materials Science and Engineering of the Case School of Engineering offers programs leading to the degrees of Bachelor of Science in Engineering, Master of Science, and Doctor of Philosophy. The technological challenges that materials engineers face demand a breadth of knowledge across a broad spectrum of engineering materials. The Department conducts academic and research activities with metals, ceramics, polymers, composites, and electronic materials. Timely research and education respond to the demands for new materials and improved materials performance in existing applications, often transcending the traditional materials categories.

While a discipline of engineering, the field brings basic science to bear on the technological challenges related to materials products and their manufacture. Materials science draws on chemistry in its concern for bonding, synthesis, and composition of engineering materials and their chemical interactions with the environment. Physics provides a basis for understanding the mechanical, thermal, optical, magnetic, and electrical properties of materials and provides the tools needed to ascertain the structure and properties of materials. Quantitative physical theories and modeling of fundamental materials science phenomena, microstructural analysis, materials design, and manufacturing processes are examples of the growing importance of mathematics and computation in materials science and engineering.

The M.S. degree in Materials Science and Engineering is awarded through either the Master’s Thesis (Plan A) or Master’s Comprehensive (Plan B). Both require a total of 27 credit hours distributed between courses and independent research.

Plan A involves a thesis based on individual research, totaling no fewer than 9 credit hours, with a final oral defense; this plan is appropriate for full-time graduate students. 

Plan B involves a major project, typically 3 credit hours and completed in a single semester, and a final comprehensive oral exam; this route is usually followed by part-time graduate students who are currently employed as materials engineers. The examining committee consists of three faculty members of the department for either Plan A or Plan B. Additional committee members may be added at the discretion of the student in consultation with his or her advisor.

Plan A requires successful completion of 6 courses (18 credit hours) and at least 9 credit hours of EMSE 651 (Thesis M.S.). Plan B requires the successful completion of 8 courses (24 credit hours) as well as 3 credit hours of EMSE 649 (Special Projects).

The six courses for Plan A and the eight courses for Plan B may include a maximum of two courses from an engineering or science curriculum outside the department. No more than two courses at the 300 level can be included; all other courses must be at the 400 level or higher. A cumulative GPA of 2.75 or higher is required for graduation. Students with a cumulative GPA less than 2.75 will be placed on academic probation. Transfer of credit from another university is limited to six credit hours of graduate level courses (with grade B or better) taken in excess of B.S. degree requirements at the other university.

A Planned Program of Study (PPOS) must be submitted by the end of the second semester for Plan A and for Plan B students. The PPOS should be prepared by the student and his/her advisor and submitted online to the School of Graduate Studies.

课程设置

  • EMSE 110. Transitioning Ideas to Reality I - Materials in Service of Industry and Society. 1 Unit.
  • EMSE 120. Transitioning Ideas to Reality II - Manufacturing Laboratory. 2 Units.
  • EMSE 125. Freshman Research in Materials Science and Engineering. 1 Unit.
  • EMSE 220. Materials Laboratory I. 2 Units.
  • EMSE 228. Mathematical Methods for Materials Science and Engineering. 3 Units.
  • EMSE 276. Materials Properties and Design. 3 Units.
  • EMSE 307. Foundry Metallurgy. 3 Units.
  • EMSE 308. Welding Metallurgy. 3 Units.
  • EMSE 319. Processing and Manufacturing of Materials. 3 Units.
  • EMSE 320. Materials Laboratory II. 1 Unit.
  • EMSE 325. Undergraduate Research in Materials Science and Engineering. 1 - 3 Units.
  • EMSE 327. Thermodynamic Stability and Rate Processes. 3 Units.
  • EMSE 328. Meso-scale Science Including Nanotechnology. 3 Units.
  • EMSE 330. Materials Laboratory III. 2 Units.
  • EMSE 335. Strategic Metals and Materials for the 21st Century. 3 Units.
  • EMSE 343. Materials for Electronics and Photonics. 3 Units.
  • EMSE 345. Materials for Biological and Medical Technology. 3 Units.
  • EMSE 349. Materials for Energy and Sustainability. 3 Units.
  • EMSE 365. Surface Engineering of Materials. 3 Units.
  • EMSE 372. Structural Materials by Design. 4 Units.
  • EMSE 379. Design for Lifetime Performance. 3 Units.
  • EMSE 396. Special Project or Thesis. 1 - 18 Units.
  • EMSE 398. Senior Project in Materials I. 1 Unit.
  • EMSE 399. Senior Project in Materials II. 2 Units.
  • EMSE 400T. Graduate Teaching I. 0 Unit.
  • EMSE 405. Dielectric and Electrical Properties of Materials. 3 Units.
  • EMSE 408. Welding Metallurgy. 3 Units.
  • EMSE 409. Deformation Processing. 3 Units.
  • EMSE 413. Fundamentals of Materials Engineering and Science. 3 Units.
  • EMSE 417. Properties of Materials in Extreme Environments. 3 Units.
  • EMSE 421. Fracture of Materials. 3 Units.
  • EMSE 422. Failure Analysis. 3 Units.
  • EMSE 427. Dislocations in Solids. 3 Units.
  • EMSE 428. Meso-scale Science Including Nanotechnology. 3 Units.
  • EMSE 430. Additive Manufacturing of Metals, Polymers, and Ceramics. 3 Units.
  • EMSE 435. Strategic Metals and Materials for the 21st Century. 3 Units.
  • EMSE 443. Materials for Electronics and Photonics. 3 Units.
  • EMSE 449. Materials for Energy and Sustainability. 3 Units.
  • EMSE 463. Magnetism and Magnetic Materials. 3 Units.
  • EMSE 465. Surface Engineering of Materials. 3 Units.
  • EMSE 499. Materials Science and Engineering Colloquium. 0 - 1 Units.
  • EMSE 500T. Graduate Teaching II. 0 Unit.
  • EMSE 503. Structure of Materials. 3 Units.
  • EMSE 504. Thermodynamics of Solids. 3 Units. EMSE 505. Phase Transformations, Kinetics, and Microstructure. 3 Units.
  • EMSE 509. Conventional Transmission Electron Microscopy. 3 Units.
  • EMSE 512. Advanced Techniques of Transmission Electron Microscopy. 3 Units.
  • EMSE 515. Analytical Methods in Materials Science. 3 Units.
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