Michigan Technological University

USA
1 Scholarships 115 Programs 3 Degree levels
Bachelor

Bachelor's in Mechanical Engineering

DegreeBachelor
FieldMechanical Engineering.
B

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

You borrow $24,990 median federal debt
You repay $284/mo over 10 years
Graduates earn $78,198 10 yrs after entry
Debt clears in 0.7 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 Michigan Technological University is a four-year, ABET-accredited undergraduate programme that prepares students to design, analyse and manufacture mechanical systems. It suits students with strong interests in mathematics, physics and hands-on problem solving who want options in industry, research or further study.

What you'll study

The curriculum builds a foundation in mathematics and physical sciences before moving into core mechanical engineering subjects and application-based laboratories. Early years emphasise calculus, differential equations, physics, chemistry and computing. Core mechanical engineering modules typically include:

  • Statics and Dynamics — kinematics and kinetics of particles and rigid bodies.
  • Mechanics of Materials — stress, strain, failure theories and material behaviour.
  • Thermodynamics — energy principles, cycles and properties of pure substances.
  • Fluid Mechanics — fluid statics and dynamics, boundary layers and flow measurement.
  • Heat Transfer — conduction, convection and radiation heat transfer methods.
  • System Dynamics and Controls — modelling, feedback control and stability analysis.
  • Computer-Aided Design and Manufacturing — CAD, CNC, additive manufacturing and rapid prototyping.
  • Materials Engineering — selection and processing of metals, polymers and composites.
  • Laboratory and Experimental Methods — measurement, data analysis and instrumentation.
  • Senior Design Project — capstone team project addressing an open-ended engineering problem, often in partnership with industry or research groups.

Students also choose technical electives to specialise in areas such as energy systems, automotive and vehicle engineering, robotics and controls, biomechanics, aerospace, manufacturing and mechatronics. The programme emphasises hands-on learning through laboratory courses, maker spaces and project-based teams (for example student design competitions and research assistantships).

Entry requirements

Admission is competitive and based on a strong secondary-school academic record with emphasis on mathematics and physical sciences. Typical successful applicants present:

  • High achievement in courses such as calculus, physics and chemistry (or their national equivalents).
  • Demonstrated ability in problem solving and technical subjects; practical experience with computers, programming or engineering projects is advantageous.
  • For international applicants, an equivalent secondary-school credential and proof of English proficiency where required.
  • Portfolio materials such as descriptions of relevant projects, extracurricular STEM activities or work experience can strengthen an application.

Transfer students are evaluated on completed college-level coursework; credits in calculus, physics and introductory engineering courses facilitate progression into the major. Applicants should consult Michigan Technological University admissions for specific credential and documentation requirements.

Career prospects

Graduates leave prepared for roles across manufacturing, energy, transportation, aerospace, robotics, consulting and product development. Common entry-level job titles include mechanical engineer, design engineer, test engineer, manufacturing engineer and systems engineer. Many alumni also pursue graduate study (master's or PhD) in mechanical engineering and related fields or obtain professional engineering licensure.

Typical employer sectors and roles:

  • Automotive and heavy vehicle design, testing and manufacturing.
  • Aerospace and defence systems engineering and propulsion.
  • Energy supply and power-generation systems, including renewables and thermal systems.
  • Robotics, automation and controls for industrial and research applications.
  • Medical device and biomechanical design.
  • Research and development in industrial firms or national laboratories.

Why study at Michigan Technological University

Michigan Tech is known for a practical, experiential approach to engineering education. The university maintains well-equipped teaching and research laboratories, machine shops and fabrication facilities that support project-based learning. Students benefit from close industry connections across the Great Lakes region and beyond, and from career services that help secure internships, co-ops and job placements.

The campus culture emphasises teamwork and outdoor activity in a small-university environment, with many student design teams and clubs that give hands-on experience in mechanical systems. Faculty research strengths span energy systems, materials, manufacturing, robotics and thermal sciences, offering undergraduates opportunities to assist in research and pursue specialised undergraduate projects.

Overall, the programme combines solid theoretical foundations with applied skills and project experience suited to students aiming for technical careers or advanced study in mechanical engineering.

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