M.S. in Computer Aided Engineering

Ypsilanti, Michigan

 

INTAKE: Jan & Aug

Program Overview

The Master of Science (M.S.) in Computer Aided Engineering program at Eastern Michigan University (EMU) is a cutting-edge academic pathway designed to equip students with advanced engineering skills and proficiency in utilizing computer-aided tools and simulations. The program is STEM-designated, signifying its focus on Science, Technology, Engineering, and Mathematics. The M.S. in Computer Aided Engineering program at EMU, with its STEM designation, offers a robust educational experience that prepares students for successful careers in various engineering sectors. Graduates emerge with the ability to use advanced simulation tools to address complex engineering challenges and drive innovation in their chosen fields.The M.S. in Computer Aided Engineering at EMU opens doors to a wide range of career opportunities in industries where computer-aided simulations and engineering analysis are integral. Graduates are well-prepared to tackle complex engineering challenges and make significant contributions in their chosen fields.

Curriculum:

1. STEM Designation: The M.S. in Computer Aided Engineering holds the prestigious STEM (Science, Technology, Engineering, and Mathematics) designation. This designation signifies that the program aligns with the evolving needs of industries and sectors that rely on advanced technical skills. The STEM designation is particularly important for international students, as it often allows them to extend their Optional Practical Training (OPT) in the United States, providing valuable work experience.

2. Curriculum and Coursework: The program offers a comprehensive curriculum that combines theoretical knowledge with hands-on experience. Students will engage in coursework that covers areas such as finite element analysis, computational fluid dynamics, structural analysis, optimization, and CAD/CAM (Computer-Aided Design and Computer-Aided Manufacturing) systems. The program's courses are carefully designed to ensure students are well-prepared to address real-world engineering challenges.

3. Advanced Simulation Tools: Students will gain proficiency in utilizing advanced simulation and modeling software. This includes industry-standard software packages for structural analysis, computational fluid dynamics, and more. The program equips students with the skills to perform intricate simulations, allowing for the analysis and optimization of complex engineering systems.

4. Research Opportunities: EMU encourages research and collaboration with faculty, providing students with the opportunity to engage in cutting-edge research projects. This hands-on experience enhances their problem-solving abilities and equips them to address challenges in various engineering domains.

5. Industry-Relevant Skills: The M.S. in Computer Aided Engineering program ensures that graduates acquire the skills needed to excel in diverse industries. This includes proficiency in applying engineering principles, conducting simulations, optimizing designs, and solving complex engineering problems.

6. Career Prospects: Upon completion of the program, graduates can pursue a wide array of career opportunities. They are well-prepared to work in industries such as automotive manufacturing, aerospace, civil engineering, energy, and more. Graduates may find roles as simulation engineers, research analysts, design optimization specialists, and project managers, contributing to the development of innovative solutions and enhancing the efficiency of engineering processes.

7. Integration of Theory and Practice: EMU places a strong emphasis on the practical application of knowledge. Students have the opportunity to work with state-of-the-art equipment and software in well-equipped laboratories. This practical experience complements the theoretical aspects of the program.

8. Faculty Expertise: Students will benefit from the expertise of experienced faculty members who are actively involved in research and industry collaborations. The faculty's guidance and mentorship are invaluable in shaping students into proficient engineers.

Pollster Education

Location

Ypsilanti, Michigan

Pollster Education

Score

IELTS: 6.5

Pollster Education

Tuition Fee

USD 26854

Entry Requirements for Postgraduate Programs

Application Fees : US$ 45

Academic Requirements:

  1. Undergraduate Degree: International students should have completed an undergraduate degree from a recognized institution.A minimum of 60% or its equivalent in the undergraduate program is required.

English Language Proficiency:

  1. IELTS: An overall IELTS score of 6.5 with no individual band score less than 6 is required.
  2. TOEFL iBT: A minimum overall TOEFL iBT score of 79 is required.
  3. DET (Duolingo English Test): An overall DET score of 105 is required.
  4. PTE (Pearson Test of English): A minimum PTE score of 53 is required.

WES (or ECE, EP, SpanTran) Evaluation Required

Scholarships for International Students at Eastern Michigan University

  1. Global Leadership Scholarship: EMU offers the Global Leadership Scholarship to exceptional international students. This scholarship is competitive and based on academic merit. It provides partial tuition coverage.

  2. International Student Tuition Scholarships: These scholarships are awarded based on academic achievement and may cover a portion of the tuition fees for international students.

  3. Graduate Assistantships: EMU provides graduate assistantships to qualified international graduate students. These positions often include a stipend and tuition remission in exchange for work within the department or university.

  4. EMU Foundation Scholarships: International students can also apply for scholarships offered through the EMU Foundation. These scholarships are typically based on academic achievement, leadership, and community involvement.

  5. External Scholarships: EMU encourages international students to explore external scholarship opportunities, such as those offered by government agencies, foundations, and international organizations. The ISSO (International Students and Scholars Office) can assist students in finding these opportunities.

  6. Departmental Scholarships: Some academic departments at EMU offer scholarships specifically to students within their field of study. International students should inquire with their respective departments for such opportunities.

  7. Cultural Scholarships: EMU recognizes and values diversity. As a result, there may be cultural scholarships available to international students from specific regions or countries. These scholarships aim to promote cross-cultural understanding.

  8. Financial Aid: In addition to scholarships, EMU offers financial aid options, including loans and work-study programs, to assist international students in covering educational expenses.

It's important for international students to meet the eligibility criteria and application deadlines for these scholarships.

The Master of Science (M.S.) in Computer Aided Engineering program at Eastern Michigan University (EMU) equips graduates with the knowledge and skills to excel in the dynamic field of computer-aided engineering. This program combines advanced engineering principles with cutting-edge computational tools, preparing students for a wide range of career opportunities in various industries.  

1. Automotive Industry: The automotive industry is a prominent employer of computer-aided engineering professionals. Graduates can find opportunities with automotive manufacturers and suppliers, working on vehicle design, structural analysis, crash simulations, and aerodynamics. They play a vital role in optimizing vehicle performance, safety, and fuel efficiency.

2. Aerospace and Defense: In the aerospace and defense sector, computer-aided engineering experts are in demand to design and analyze complex aircraft, spacecraft, and defense systems. Graduates can work on projects related to structural integrity, materials selection, and aerodynamic simulations.

3. Manufacturing and Product Design: Manufacturing companies leverage computer-aided engineering to enhance product design and production processes. Graduates may work on optimizing manufacturing processes, ensuring product quality, and reducing production costs.

4. Civil Engineering and Construction: In the construction and civil engineering field, professionals use computer-aided engineering to design infrastructure, such as bridges, buildings, and highways. Graduates can contribute to projects focused on structural analysis, sustainability, and safety.

5. Energy and Renewable Resources: The energy sector offers opportunities for computer-aided engineering professionals to work on the design and analysis of renewable energy systems, such as wind turbines and solar arrays. They can also be involved in optimizing energy distribution and management.

6. Consulting and Software Development: Graduates can enter the consulting industry, providing their expertise to various clients across different sectors. Additionally, there are opportunities to work in software development companies that create and refine computer-aided engineering tools and simulation software.

7. Research and Development: For those interested in advancing the field of computer-aided engineering, a career in research and development is an option. Graduates can work in research labs, universities, or private companies, contributing to innovations in simulation techniques and software.

8. Academia and Education: Some graduates choose to pursue careers in academia, becoming educators and trainers in engineering programs. They can teach the next generation of engineers and share their expertise.

9. Entrepreneurship: Entrepreneurial individuals can use their skills and knowledge to start their own consulting firms or software companies, offering specialized computer-aided engineering services or developing innovative simulation tools.

10. Project Management: With a strong background in computer-aided engineering, graduates are well-suited for project management roles. They can oversee engineering projects, ensuring they meet design specifications, budget constraints, and deadlines.


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