University of North Dakota

USA
1 Scholarships 160 Programs 3 Degree levels
Masters

Master's in Manufacturing Engineering

DegreeMasters
FieldManufacturing Engineering.
B

Cost & earnings at University of North Dakota What students borrow here, and what they go on to earn

You borrow $22,057 median federal debt
You repay $251/mo over 10 years
Graduates earn $63,552 10 yrs after entry
Debt clears in 0.9 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Master of Science in Manufacturing Engineering at the University of North Dakota is a graduate programme that develops advanced technical and managerial skills for designing, analysing and improving manufacturing systems. It suits engineering graduates and practising professionals seeking deeper expertise in areas such as advanced manufacturing processes, automation, materials processing and production systems engineering.

What you'll study

The programme combines coursework and research or project-based options to build competency in both the fundamentals and emerging areas of manufacturing engineering. Students typically follow a mix of core and elective modules that emphasise practical problem solving, experimental methods and systems-level thinking.

  • Core topics: Advanced manufacturing processes (machining, forming, additive manufacturing), manufacturing systems design, production planning and scheduling, quality engineering and statistical process control.
  • Automation and controls: robotics for manufacturing, programmable logic controllers, sensors and industrial networks, and integration of cyber-physical systems.
  • Materials and processes: materials selection for manufacturing, heat treatment, surface engineering, and process-structure-property relationships.
  • Design and analysis: computer-aided design and manufacturing (CAD/CAM), finite element analysis for manufacturing, process modelling and simulation.
  • Advanced electives: lean manufacturing and Six Sigma, sustainable manufacturing, human factors in manufacturing, digital manufacturing and industry 4.0 topics such as IoT and data analytics.
  • Capstone options: a research thesis, a design project, or an industrial practicum that allows students to apply methods to real-world manufacturing challenges.

Programme structure is flexible to accommodate full-time and part-time students. Coursework builds core competencies in the first year, while the second year is often dedicated to electives and the capstone research or project. Laboratory work and access to departmental fabrication, metrology and automation facilities are integral components.

Entry requirements

Admission typically requires a bachelor’s degree in mechanical engineering, industrial engineering, manufacturing engineering, materials science, or a closely related technical discipline from an accredited institution. Applicants with substantial relevant industry experience and appropriate undergraduate preparation may also be considered.

  • Academic preparation: undergraduate coursework in engineering fundamentals such as mechanics, materials, manufacturing processes, and basic mathematics (calculus, linear algebra).
  • Transcripts and references: official academic transcripts and at least two professional or academic references are normally required.
  • English language: international applicants must meet the university’s English language proficiency requirements.
  • Additional materials: a statement of purpose outlining research or career goals and a CV; some applicants may be asked to provide a portfolio of engineering work or to attend an interview.

Career prospects

Graduates are prepared for technical and leadership roles across manufacturing sectors, including aerospace, automotive, defence, energy, medical devices and advanced materials. Career paths commonly include roles such as process engineer, production engineer, manufacturing systems engineer, quality engineer, automation engineer, and operations manager.

Alumni may also move into research and development, product engineering, supply chain optimisation, or pursue doctoral study. The programme’s emphasis on practical skills, laboratory experience and industry-relevant projects helps graduates transition to positions that require both hands-on technical ability and systems-level decision making.

Why study at University of North Dakota

The University of North Dakota offers a focused engineering environment with access to dedicated manufacturing laboratories, fabrication shops and partnerships with regional industry. The faculty bring expertise in machining, additive manufacturing, automation and materials processing, enabling project work that aligns with current industrial needs.

Students benefit from a programme designed for flexibility, supporting full-time study, part-time enrolment and working professionals. Strong connections to local and regional manufacturers provide opportunities for internships, practicum projects and industry collaboration that enhance employability and practical experience.

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Programme details are indicative and may change — always verify current information with the official university website before applying.