Marymount University

USA
1 Scholarships 74 Programs 3 Degree levels
Bachelor

Bachelor's in Mechanical Engineering

Offered at Marymount University, USA
DegreeBachelor
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 Related Technology graduates earn a median $58,522 Across 103 US programmes, two years after finishing

See the degree grade →

The Bachelor of Science in Mechanical Engineering at Marymount University is a four-year undergraduate degree that prepares students in the fundamentals of mechanics, materials, thermodynamics, dynamics and design, with strong emphasis on hands-on laboratory work and project-based learning. It suits students who enjoy problem solving, mathematics and applied physics and who are aiming for technical careers in design, manufacturing, energy, or further study in engineering.

What you'll study

The programme combines foundational courses in mathematics, physics and computing with core mechanical engineering subjects and practical laboratory experience. Typical modules include:

  • Mathematics for Engineers — calculus, differential equations and linear algebra applied to engineering problems.
  • Fundamental Physics — mechanics and electromagnetism as the physical basis for engineering analysis.
  • Statics and Dynamics — analysis of forces, motion and mechanical systems.
  • Thermodynamics and Heat Transfer — energy conversion, properties of ideal and real gases, and conduction/convection fundamentals.
  • Fluid Mechanics — behaviour of fluids, flow analysis and applications to systems and machines.
  • Materials Science — material properties, selection and failure modes relevant to mechanical design.
  • Mechanical Design and CAD — computer-aided design, solid modelling and design for manufacture.
  • Control Systems and Mechatronics — sensors, actuators, feedback and embedded system basics.
  • Manufacturing Processes — production methods, machining, additive manufacturing and quality considerations.
  • Laboratory Work and Technical Communication — experimental methods, data analysis and engineering reporting.
  • Capstone Senior Design Project — team-based, semester-long project that integrates design, analysis, prototyping and presentation skills.

Alongside technical coursework, students complete general education requirements in the liberal arts and have opportunities to take electives or special topics courses in areas such as robotics, renewable energy, biomechanics or advanced materials. Internships and cooperative placements are encouraged and supported to provide industry experience.

Entry requirements

Applicants normally need a completed secondary school qualification equivalent to a US high school diploma with demonstrated strength in mathematics. Recommended preparation includes higher-level algebra, precalculus or calculus and physics; chemistry is also helpful. Admissions typically consider academic record, recommendation letters and personal statements.

For transfer applicants, relevant college-level credits in calculus, physics and engineering science are usually required for entry to intermediate standing. International students must present an approved secondary credential equivalent to the domestic requirement and meet the university's English proficiency expectations.

The programme may accept standardised test results where provided, but applicants should check the university's admissions guidance for current testing policies. Mature applicants with relevant work experience or technical qualifications are considered on an individual basis.

Career prospects

Graduates with a mechanical engineering degree pursue roles in design, analysis, manufacturing and project engineering across a wide range of industries. Common early-career job titles include mechanical engineer, design engineer, manufacturing engineer, systems engineer and test engineer. Employers span sectors such as aerospace and defence, automotive, energy and utilities, medical devices, HVAC and building services, robotics and automation, and consulting.

Many graduates also continue to postgraduate study in specialised engineering fields or related disciplines such as materials science, structural mechanics or engineering management. The programme provides the technical foundation needed for professional development pathways, including preparation for engineering licensure examinations where relevant.

Why study at Marymount University

Marymount University offers a personalised learning environment with relatively small class sizes, allowing close interaction with faculty and opportunities for mentored research and design work. The curriculum emphasises hands-on laboratory and project-based learning so students build practical skills alongside theoretical knowledge.

Located near a major metropolitan area, the university provides access to industry partners, government agencies and a broad range of internship and employment opportunities. Students benefit from career services, networking events and support for obtaining experiential placements that connect coursework to real-world engineering challenges.

Finally, the programme integrates engineering education with Marymount's broader liberal arts curriculum, developing graduates who are technically competent and able to communicate, lead and work ethically in multidisciplinary environments.

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