Marymount University

USA
1 Scholarships 74 Programs 3 Degree levels
Masters

Master's in Mechanical Engineering

Offered at Marymount University, USA
DegreeMasters
FieldMechanical Engineering.
B

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

You borrow $25,000 median federal debt
You repay $284/mo over 10 years
Graduates earn $67,516 10 yrs after entry
Debt clears in 0.9 yrs of the salary premium
US Department of Education figures See the full breakdown →
B

Mechanical Engineering graduates earn a median $81,702 Across 247 US programmes, two years after finishing

See the degree grade →

The Master’s in Mechanical Engineering at Marymount University is a professionally oriented graduate programme that deepens core mechanical engineering principles while emphasising hands‑on design, simulation and laboratory practice. It suits graduates with a technical undergraduate background or practising engineers seeking advanced technical skills, applied research experience and stronger links to industry in the Washington, DC metropolitan region.

What you'll study

The programme builds on foundational subjects in mechanics and thermofluids and progresses to advanced topics in design, materials and control systems. Typical modules combine theory, computational methods and laboratory work and may include:

  • Advanced Dynamics and Vibrations — dynamic modelling, modal analysis and vibration control techniques.
  • Computational Fluid Dynamics and Heat Transfer — numerical methods for fluid flow and thermal systems, using industry software.
  • Advanced Solid Mechanics and Materials — stress analysis, fracture mechanics and material selection for design.
  • Mechanical Design and CAD/CAE — parametric modelling, finite element analysis and design optimisation.
  • Control Systems and Mechatronics — sensors, actuators, microcontrollers and control theory applied to electromechanical systems.
  • Experimental Methods and Instrumentation — laboratory measurement techniques, data acquisition and uncertainty analysis.
  • Electives / Specialisms — options typically include robotics, renewable energy systems, manufacturing processes, and advanced materials.
  • Capstone Project or Thesis — an independent, faculty‑mentored project that emphasises applied problem‑solving, prototyping or computational research. Projects may be industry‑sponsored or campus‑based research.

The programme emphasises practical skills through laboratory work, project courses and use of contemporary engineering tools (CAD, FEA, CFD, control software). Students frequently undertake multidisciplinary projects that simulate workplace engineering challenges.

Entry requirements

Applicants are normally expected to hold a bachelor’s degree in mechanical engineering, a closely related engineering discipline, or a science degree with substantial engineering content. Typical application requirements include:

  • Official transcripts from undergraduate and any prior graduate study.
  • A minimum competitive GPA (programme may specify a preferred threshold at application stage).
  • A current résumé or CV outlining academic background, work experience and technical skills.
  • A personal statement describing academic interests, career goals and reasons for choosing the programme.
  • Letters of recommendation (academic and/or professional) to support the application.

Applicants whose undergraduate preparation is not in engineering may be required to complete prerequisite coursework in key fundamentals such as calculus, differential equations, statics/dynamics and introductory mechanics. International applicants must also meet English language proficiency requirements.

Career prospects

Graduates of the Master’s in Mechanical Engineering pursue careers in technical and leadership roles across industry and research. Common career paths include:

  • Design and product development engineer in sectors such as automotive, aerospace, defence and consumer products.
  • Manufacturing and process engineer, focusing on production efficiency, quality and automation.
  • Thermal systems and HVAC engineer working on energy systems, building services and renewable technologies.
  • Controls and robotics engineer developing embedded systems, automation and mechatronic solutions.
  • R&D engineer or technical specialist in materials, testing and simulation centres.
  • Continuing into doctoral research or transitioning into management roles with additional professional experience.

The programme’s practical project work and proximity to a dense regional network of government agencies, contractors and technology companies help students secure internships and employment in the Washington, DC metropolitan area and beyond.

Why study at Marymount University

Marymount University offers a personalised graduate experience with small class sizes and direct access to faculty who combine academic credentials with industry and applied research experience. The university’s location in the Arlington/Washington, DC region provides strong opportunities for internships, partnerships and employment with government labs, defence contractors and technology firms.

Students benefit from hands‑on laboratory facilities, project‑based coursework and a curriculum designed to integrate contemporary engineering tools and professional skills. The programme’s emphasis on applied projects and local industry engagement supports a smooth transition from study to professional practice.

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