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Hoboken, New Jersey
INTAKE: Jan & Sept
The M.Eng. in Mechanical Engineering is a 30-credit degree program, typically completed within 1.5 to 2 years for full-time students. The curriculum is structured to include two required core courses and at least four courses from one of seven specialized concentrations. Students also select four elective courses, with options to include a 3-credit project course or a 6-credit master's thesis for those interested in a more research-intensive path. The program offers significant flexibility, with classes available both on-campus and through StevensOnline, accommodating a diverse range of students, including working professionals seeking to advance their careers. Stevens boasts excellent career outcomes for its Mechanical Engineering graduates, with a reported 98% employment rate within three months of graduation for the Class of 2023, and a strong mean compensation of $77,600.
STEM-designated: Yes, the Stevens Institute of Technology M.Eng. in Mechanical Engineering program is STEM-designated. This is a significant advantage, particularly for international students. The STEM designation makes them eligible for a 24-month extension of their Optional Practical Training (OPT) in the United States, allowing for a total of up to three years of valuable post-graduation work experience. This designation clearly reflects the program's rigorous quantitative, scientific, and technological focus, which is highly valued by employers across various engineering and technology-driven industries.
Curriculum: The 30-credit curriculum builds a deep and specialized understanding of mechanical engineering. Students are required to take two core courses. They then choose at least four courses from one of seven concentrations: Product Design, Manufacturing, Thermal, Fluids, Energy Requirements, Robotics and Control, Micro/Nano Systems, Aerospace Engineering, and Medical Devices. Elective courses provide further depth in specialized topics within these concentrations or allow for interdisciplinary study. The curriculum emphasizes analytical and design skills, preparing students to tackle complex mechanical engineering problems. It also integrates modern tools and concepts, including AI electives and hands-on education opportunities, fostering critical thinking, interdisciplinary collaboration, and entrepreneurial savvy.
Research Focus: The M.Eng. in Mechanical Engineering program at Stevens has a strong research focus, with faculty members actively engaged in cutting-edge research across a broad spectrum of mechanical engineering disciplines. Research clusters include: Propulsion, Thermal, Fluid, and Energy Systems, Robotics and Autonomous Systems, Biomechanics and Biomechatronics, Additive Manufacturing, and Micro/Nano Systems. The Department of Mechanical Engineering is home to significant research initiatives, including the Center for Neuromechanics (the first of its kind in the nation focusing on the mechanical behavior of the neural system) and the Design & Manufacturing Institute (focused on cost-effective, high-performance product realization). Students have opportunities to engage in advanced, experimental research in Stevens' state-of-the-art labs and facilities, contributing to major engineering advances under the mentorship of nationally renowned faculty.
Industry Engagement: Stevens Institute of Technology places a very high priority on industry engagement for its Mechanical Engineering program. Its strategic location, just minutes from major industrial and technology centers in the New York-New Jersey area, provides students with exceptional networking and professional opportunities. The curriculum is continuously updated to reflect the latest industry trends, ensuring graduates are equipped with in-demand skills. Faculty researchers often have strong ties to industry, bringing real-world case studies and practical insights into the classroom. Stevens' strong alumni network and robust Career Center facilitate extensive networking opportunities, internships, and co-op experiences. Graduates are actively recruited by leading companies in sectors such as automotive, medical devices, aerospace, energy, and manufacturing, including organizations like Picatinny Arsenal, Stryker, General Electric (GE), Becton Dickinson, and United Technologies.
Global Perspective: Stevens Institute of Technology fosters a global perspective within its M.Eng. in Mechanical Engineering program through its diverse international student population and the inherently global nature of mechanical engineering challenges. The university attracts students from around the world, creating a multicultural learning environment that enriches classroom discussions with varied insights into international engineering practices, design philosophies, and technological advancements. The skills acquired—such as product design, manufacturing optimization, robotics, and energy systems—are universally applicable across international markets and industries. This global outlook, combined with Stevens' rigorous technical education, prepares graduates to contribute to technological innovations and collaborate on multidisciplinary projects that span national borders, ensuring they are well-equipped for careers in a globally interconnected professional landscape.
Hoboken, New Jersey
IELTS 6.5
USD 46048
Postgraduate Entry Requirements
Academic Qualifications: Applicants for postgraduate programs typically require a minimum academic achievement of 70% or above in their bachelor's degree.
English Language Proficiency:
Stevens Institute of Technology offers a variety of scholarships specifically designed to support international students, helping to make a world-class education more affordable and accessible. These scholarships recognize academic excellence, leadership potential, and contributions to the campus community.
Merit-Based Scholarships: Stevens provides competitive merit scholarships for international undergraduate and graduate students based on academic performance, standardized test scores, and other achievements. These awards can significantly reduce tuition costs and are automatically considered during the admissions process for many programs.
Need-Based Financial Aid: While limited, some need-based aid options are available to international students. Applicants are encouraged to provide detailed financial information to be considered for such assistance.
Graduate Fellowships and Assistantships: International graduate students may be eligible for fellowships, research assistantships, or teaching assistantships, which offer tuition waivers and stipends. These opportunities not only provide financial support but also valuable hands-on experience in research and academic work.
Special Scholarships: Stevens occasionally offers specialized scholarships targeting students from certain countries, underrepresented fields, or those pursuing specific disciplines like engineering, business, or cybersecurity. Prospective students should check the official Stevens website or contact the admissions office for current scholarship opportunities.
A Master of Engineering (M.Eng.) in Mechanical Engineering from Stevens Institute of Technology, located in Hoboken, New Jersey, is a highly respected and STEM-designated program that uniquely positions graduates for impactful leadership roles within the dynamic field of mechanical engineering.
Mechanical Design Engineer: A core role where graduates conceptualize, design, analyze, and optimize mechanical systems, components, and products using CAD software and simulation tools across industries like consumer goods, automotive, and industrial machinery.
Robotics Engineer: With a strong foundation in robotics and control systems, graduates design, develop, and integrate robotic systems, focusing on their mechanical design, control algorithms, and automation for manufacturing, exploration, or medical applications.
Manufacturing Engineer: These professionals optimize and control manufacturing processes, implement advanced techniques like additive manufacturing (3D printing), and ensure efficiency, quality, and cost-effectiveness in diverse production environments.
Thermal/Fluids Engineer: Specializing in thermal and fluid sciences, graduates work on designing and analyzing systems involving heat transfer, fluid flow, and energy conversion, which is critical for power generation, HVAC systems, and aerospace thermal management.
Control and Instrumentation Engineer (C&I Engineer): These engineers design, develop, install, and maintain control systems and instrumentation that regulate the behavior of machines and processes in various industrial settings, ensuring precision, efficiency, and safety.
Aerospace Engineer: Graduates can apply their mechanical engineering expertise to the design, analysis, and testing of aircraft, spacecraft, propulsion systems, and other aerospace components, often working with leading defense and aviation companies.
Product Development Engineer: Involved in the entire product lifecycle, from initial concept to commercialization, ensuring that mechanical designs meet functional requirements, manufacturability, cost targets, and market needs.
Biomechanics/Medical Devices Engineer: Leveraging specialization in Medical Devices, graduates apply mechanical engineering principles to understand biological systems, design and test prosthetics, implants, medical instruments, and other devices for the healthcare industry.
Research and Development (R&D) Engineer/Scientist: Graduates pursuing this path conduct cutting-edge research to advance mechanical engineering knowledge, develop new materials, processes, or technologies within corporate R&D labs, government agencies, or academic institutions.
Additive Manufacturing Engineer: Focuses on the design, optimization, and production of parts using additive manufacturing (3D printing) technologies, exploring new materials and applications for this transformative manufacturing paradigm.