New York Institute of Technology

USA
2 Scholarships 54 Programs 3 Degree levels
Bachelor

Bachelor's in Mechanical Engineering

DegreeBachelor
FieldMechanical Engineering.
B

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

You borrow $23,334 median federal debt
You repay $265/mo over 10 years
Graduates earn $70,080 10 yrs after entry
Debt clears in 0.8 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 New York Institute of Technology is a practice-oriented undergraduate programme that develops core engineering fundamentals alongside hands-on design and manufacturing skills. It suits students who enjoy maths, physics and problem‑solving and who want to work in product design, energy systems, manufacturing, robotics or related fields.

What you'll study

The Mechanical Engineering curriculum builds a strong foundation in mathematics, physics and engineering science before moving to specialised mechanical subjects and design practice. Early years emphasise calculus, differential equations, classical mechanics, materials science and engineering graphics. Middle and later years cover thermodynamics, fluid mechanics, heat transfer, dynamics and control, machine design, materials and manufacturing processes.

Students also gain practical skills through laboratory courses and software-based instruction in computer-aided design (CAD), finite element analysis (FEA) and computational tools. The programme culminates in a senior capstone design project where teams apply systems engineering principles to develop, prototype and test a complete mechanical system.

  • Core modules: calculus and differential equations, physics for engineers, statics and dynamics, materials and manufacturing, engineering mechanics
  • Mechanical subjects: thermodynamics, fluid mechanics, heat transfer, machine design, dynamics and control
  • Practical and computational: CAD/solid modelling, FEA basics, instrumentation and measurement, manufacturing labs
  • Design experience: multidisciplinary labs, project-based courses and a year-long senior capstone design project

Entry requirements

Applicants should hold a recognised secondary-school diploma with strong preparation in mathematics (including calculus where available) and physics. Admissions assess academic transcripts, letters of recommendation and a statement of purpose; standardised test requirements vary and may be considered optional depending on the applicant's profile. International applicants must demonstrate equivalent academic preparation and meet New York Institute of Technology's English-language proficiency requirements.

Typical preparation for successful applicants includes advanced coursework in mathematics and science, demonstrated problem‑solving ability, and evidence of extracurricular engagement such as STEM clubs, competitions, internships or relevant project work. Transfer applicants will be considered with review of college-level STEM coursework for equivalency and transfer credit.

Career prospects

Graduates of the Mechanical Engineering programme are prepared for a broad spectrum of engineering roles in industry, government and research. Common entry positions include mechanical design engineer, manufacturing or process engineer, test and validation engineer, systems or controls engineer, and project engineer.

Alumni work across sectors such as automotive and transportation, aerospace and defence, energy and utilities, HVAC and building systems, robotics and automation, medical devices and industrial manufacturing. The programme also provides a solid foundation for graduate study in engineering, applied sciences or management of technology.

Why study at New York Institute of Technology

New York Institute of Technology combines a curriculum grounded in engineering fundamentals with early and sustained hands-on learning in labs and maker spaces. Students benefit from access to industry-standard CAD and simulation software, prototyping facilities and laboratory courses that reinforce theoretical learning with practical application.

The institute's location and industry connections support internship and cooperative-education opportunities with regional companies, and faculty typically bring applied research and professional experience to teaching. Small class sizes and project-based courses help students develop teamwork, communication and project management skills valued by employers.

The programme emphasises career readiness through capstone design, co-curricular activities, and links to alumni and employer networks, enabling graduates to transition into engineering roles or continue with postgraduate study.

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