Rochester Institute of Technology

1 Scholarships 111 Programs 3 Degree levels
PhD

PhD in Engineering

DegreePhD
FieldEngineering, General.
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 →
C

Engineering-Related Technology graduates earn a median $57,318 Across 30 US programmes, two years after finishing

See the degree grade →

The PhD in Engineering at Rochester Institute of Technology is a research-focused doctorate designed for students aiming to advance knowledge in applied engineering fields through original research. It suits candidates with a strong technical background who want to pursue careers in academic research, industrial R&D or technical leadership in interdisciplinary engineering domains.

What you'll study

The PhD in Engineering emphasises deep, original research built on advanced coursework and interdisciplinary collaboration. Students take a combination of core and elective courses that strengthen fundamentals while supporting specialised research. Typical course topics include advanced mechanics and materials, computational methods and numerical modelling, control systems and robotics, sensors and instrumentation, micro- and nano-fabrication, manufacturing systems, design of experiments, and optimisation for engineering systems.

After completing required coursework, students undertake qualifying assessments and a candidacy process that lead into an extended period of dissertation research under the supervision of a faculty advisor. Coursework is complemented by seminar participation, research group meetings and teaching or mentoring responsibilities. The programme strongly encourages cross-college collaboration, allowing students to draw on resources from allied areas such as imaging science, microelectronic fabrication, sustainability, and biomedical engineering.

  • Core advanced topics: mechanics, materials, control theory, computational engineering
  • Electives and special topics: micro/nano technologies, robotics, additive manufacturing, energy systems, sensors
  • Research components: qualifying exam, dissertation proposal, original research, dissertation defence
  • Professional development: teaching experience, technical communication, ethics in research

Entry requirements

Applicants are expected to hold a relevant master’s degree in engineering, applied science or an equivalent background with substantial research or professional experience. A strong academic record, demonstrated technical skills and a clear research interest are essential.

Required application materials typically include a CV, academic transcripts, a statement of research interests, and letters of recommendation. Candidates with prior research experience or publications are especially competitive. Standardised test requirements may vary by department; applicants for whom English is not a first language must provide evidence of English proficiency through recognised tests unless otherwise exempted.

Career prospects

Graduates of the PhD in Engineering pursue a wide range of careers. Many go into academic roles as faculty or postdoctoral researchers, while others join industrial research and development teams in sectors such as advanced manufacturing, aerospace, medical devices, microelectronics, energy and robotics. Additional career paths include leadership roles in technology start-ups, technical consulting, government national laboratories and policy organisations focused on engineering and innovation.

The programme’s applied research focus and industry connections also prepare graduates for positions that require translating research into commercial products, leading multidisciplinary engineering teams, or directing long-term R&D strategy.

Why study at Rochester Institute of Technology

Rochester Institute of Technology offers a research environment with strong links to industry and a practical orientation that supports translational engineering research. The university provides access to specialised facilities such as microfabrication and materials laboratories, advanced machine shops, high-performance computing resources and interdisciplinary research centres. Faculty at RIT often work at the interface of theory and application, allowing PhD students to engage in projects with immediate technological relevance.

Doctoral students benefit from a collaborative community, opportunities for funded research assistantships, and mentorship aimed at both scholarly development and career preparation. The co‑operative and industry-engaged culture of the institution helps students build professional networks that are valuable for academic and industrial career paths alike.

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