Cost & earnings at University of Dayton What students borrow here, and what they go on to earn
The Master’s in Engineering Physics at the University of Dayton is an interdisciplinary graduate programme that blends advanced physics with engineering problem‑solving, suited to students who want to develop experimental, modelling and applied research skills. It is appropriate for candidates with an undergraduate background in physics, engineering or a closely related discipline who are aiming for careers in research, high‑technology industry or further doctoral study.
The programme emphasises the application of fundamental physics to engineering systems. Core themes typically include quantum mechanics and solid‑state physics as applied to materials and devices, optics and photonics, electronic materials and devices, computational methods and numerical modelling, and experimental techniques. Students usually combine coursework with significant laboratory work, a research thesis or a capstone project.
Applicants are expected to hold a bachelor’s degree in physics, engineering (for example electrical, mechanical, materials) or a closely related scientific discipline, with a strong record in relevant mathematics and physical sciences courses. Typical preparation includes undergraduate coursework in classical mechanics, electromagnetism, thermodynamics/statistical mechanics, and introductory quantum mechanics or electronic circuits.
Graduates of Engineering Physics combine deep physical insight with engineering practice, making them attractive to employers in research and development, instrumentation, semiconductor and photonics industries, aerospace and defence, and advanced manufacturing. Common roles include research scientist, device engineer, photonics or optical engineer, materials engineer, systems engineer, and roles in testing and metrology. Many alumni also progress to doctoral study in physics, materials science or engineering disciplines.
The University of Dayton offers a close‑knit learning environment with small classes and access to faculty engaged in applied physics and engineering research. The university’s engineering programmes emphasise experiential learning and laboratory‑based training, and benefit from links with regional high‑technology and aerospace industries. Students can expect mentorship from research‑active staff, opportunities to work with contemporary instrumentation, and support for co‑operative or internship placements that connect academic learning with industry practice.
Shortlist scholarships and plan your application — free guidance from our advisors.