Rochester Institute of Technology

1 Scholarships 111 Programs 3 Degree levels
Bachelor

Bachelor's in Mechanical Engineering

DegreeBachelor
FieldMechanical Engineering.
B

Cost & earnings at Rochester Institute of Technology What students borrow here, and what they go on to earn

You borrow $26,778 median federal debt
You repay $304/mo over 10 years
Graduates earn $76,571 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

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The Bachelor of Science in Mechanical Engineering at Rochester Institute of Technology is an ABET-accredited programme that combines fundamental engineering science with extensive hands-on and cooperative education opportunities. It suits students who want a practical, project-based education preparing them for roles in design, manufacturing, energy, robotics and related industries or for advanced study.

What you'll study

The mechanical engineering curriculum builds a strong foundation in mathematics, physics and core engineering principles before moving into specialised areas. Early years focus on calculus, differential equations, mechanics, materials, and thermodynamics. Core engineering modules typically include statics and dynamics, fluid mechanics, heat transfer, mechanical design, machine elements, control systems and manufacturing processes.

Laboratory and hands-on learning are central. Students take multiple lab courses that develop experimental skills, instrumentation and data analysis, and they use industry-standard software for computer-aided design (CAD), finite element analysis (FEA) and computational fluid dynamics (CFD). Project work is integrated throughout the programme, culminating in a capstone senior design project where multidisciplinary teams solve real-world engineering problems.

The programme offers technical electives that allow specialisation in areas such as robotics and mechatronics, thermal and energy systems, advanced manufacturing and additive manufacturing, biomedical engineering applications and aerospace systems. RIT also emphasises interdisciplinary opportunities across engineering, computing and business, and many students pursue minors or double majors to broaden their skill set.

  • Core modules: calculus, mechanics, materials science, thermodynamics, fluids, dynamics, control systems
  • Design and manufacturing: machine design, CAD/CAM, manufacturing processes, quality and production engineering
  • Laboratory work: instrumentation, experimental methods, materials testing, thermal/fluid labs
  • Capstone: team-based senior design project with industry or faculty sponsorship
  • Electives and specialisms: robotics/mechatronics, energy systems, biomedical devices, aerospace applications, advanced manufacturing
  • Experiential learning: co-operative education placements, internships and research opportunities

Entry requirements

Applicants should have completed a secondary school diploma or equivalent with strong preparation in mathematics and science. Typical preparation includes courses in calculus, algebra, geometry and physics; chemistry is recommended. Admissions consider the overall academic record, the strength of mathematics and science subjects, and evidence of problem‑solving ability or technical interest.

International applicants must present equivalent qualifications and demonstrate proficiency in English through recognised tests or institutional pathways if required. Relevant extracurricular experience such as robotics, engineering clubs, technical projects or work placements is helpful but not mandatory.

Prospective students transferring from other institutions should expect to provide detailed transcripts and course descriptions for transfer credit evaluation; placement in the programme may depend on prior coursework in calculus, physics and engineering fundamentals.

Career prospects

Graduates from the mechanical engineering programme enter a wide range of industries owing to the discipline’s broad technical base. Common roles include mechanical or product design engineer, manufacturing or process engineer, systems engineer, test and validation engineer, controls and automation engineer, and applications engineer. Employers span automotive, aerospace, energy and power generation, industrial manufacturing, robotics and automation, medical device companies, and consultancy firms.

The RIT emphasis on co-operative education and industry projects gives students practical experience that improves employability and often leads directly to graduate positions. Graduates also pursue further study at the master’s and doctoral level in engineering, business or specialised fields such as aerospace, materials or biomedical engineering, and some move into technical sales, project management or entrepreneurship.

Why study at Rochester Institute of Technology

RIT is known for its hands-on, career-focused engineering education and its co-operative education programme, which places students in paid industry rotations to apply classroom learning in professional settings. The mechanical engineering programme is ABET-accredited, ensuring it meets recognised standards for engineering education.

Students benefit from well-equipped laboratories, fabrication shops and makerspaces, access to advanced manufacturing and robotics facilities, and opportunities to work on sponsored research and industry projects. Strong links with regional and national employers, dedicated career services, and interdisciplinary collaboration across RIT’s engineering and computing colleges help students transition from study to professional practice.

The campus environment supports a diverse student body and provides additional resources such as academic advising, student engineering societies and global study options, enabling students to tailor their education to personal and career goals.

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