Cost & earnings at University of Mount Union What students borrow here, and what they go on to earn
Engineering-Related Technology graduates earn a median $57,318 Across 30 US programmes, two years after finishing
See the degree grade →The Bachelor’s in Biomedical Engineering at the University of Mount Union is an undergraduate engineering degree that integrates engineering principles with biological and medical sciences to design healthcare technologies. It suits students who want a hands‑on, interdisciplinary education preparing them for careers in medical device design, clinical engineering, or further professional and graduate study.
This programme combines foundation engineering subjects with biology, physiology and medical technology. Core topics typically include circuits and electronics, mechanics, materials science, biomedical instrumentation, biomaterials, biomechanics, signals and systems, and biomedical ethics. Laboratory work and design projects are emphasised across the curriculum, with courses that may cover medical imaging principles, tissue engineering concepts, control systems for medical devices, sensors and instrumentation, and data analysis for physiological signals.
Students follow a structured sequence of mathematics and basic science courses in the early years — calculus, differential equations, chemistry and biology — then progress to specialised biomedical engineering modules and capstone design projects. The course usually includes computer programming for engineers, CAD and prototyping, and opportunities for team‑based design, testing and validation of biomedical devices.
Hands‑on learning is supported by lab courses, workshops and a senior design project that places students in multidisciplinary teams to solve clinically relevant problems. There are also opportunities for independent research with faculty, internships or cooperative placements with local healthcare organisations and medical technology companies.
Graduates of biomedical engineering commonly pursue careers in medical device and equipment design, clinical engineering in hospitals, quality assurance and regulatory affairs, research and development, and biomedical instrumentation. Others move into related roles in biomechanics, biomaterials, rehabilitation engineering, or technical consulting. The degree also provides a strong foundation for graduate study in biomedical engineering, medicine, physical therapy, or other health and engineering disciplines.
Alumni find employment with medical technology companies, hospitals and health systems, research laboratories, and manufacturing firms, as well as startups in the healthcare sector. The programme’s emphasis on design projects, internships and industry partnerships helps students build practical experience and professional networks valuable in job searches and graduate applications.
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