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The Master of Science in Bioengineering requires 45 units of coursework.The curriculum consists of core bioengineering courses, technical electives, seminars and unrestricted electives.
Up to 6 units of directed study and research may be used as unrestricted electives.
All courses for the MS degree in Bioengineering must be taken for a letter grade if offered by the instructor (only exceptions are research units).
Seminars highlight emerging research in bioengineering and provide training in research ethics.
Unrestricted electives can be freely chosen by students in association with their advisor.
Core courses focus on quantitative biology and biological systems analysis.
Approved technical electives are chosen by students in consultation with their graduate advisor (who is matched to the student after matriculation in the weeks before they start classes), and can be selected from graduate course offerings in mathematics, statistics, engineering, physical sciences, life sciences, medicine, and many other disciplinary fields.Graduate students take engineering, biology and medical school courses, gain valuable clinical experience at nearby teaching hospitals associated with the Brown Medical School, and engage in stimulating internships at companies commercializing biomedical technologies.These opportunities, coupled with dissertation research, give graduate students both the intellectual and the practical skills required for developing today's emerging science into useful biomedical technology and therapies.Students who elect to pursue a Non-thesis option are required to complete a minimum of 45 credits of coursework to be approved by the School Graduate Advisor.For a more detailed description of the MS requirements, please visit the MS Program Guidelines page.It is expected that the requirements for the MS in Bioengineering can be completed within approximately one year. All students are required to take the following: These courses, together with the Approved Technical Electives, should form a cohesive course of study that provides depth and breadth.These units must be selected from graduate courses in mathematics, statistics, engineering, physical science, life science and medicine.The MS in Biomedical Engineering degree curriculum develops graduates who can identify and address unmet clinical, diagnostic, and healthcare needs by using their knowledge of modern theories, engineering systems, and mathematical and engineering tools.Biomedical engineers require the analytical tools and broad knowledge of modern engineering and science, fundamental understanding of the biological or physiological system, and familiarity with recent technological breakthroughs. non-thesis degree option must complete at least 30 graded course credit hours and satisfactorily pass a comprehensive oral examination. students must also register each semester for one credit hour of 5944 Seminar. plan of study may contain a combination of 5xxx and 6xxx-level courses and a maximum of six hours of approved 4xxx-level courses. Administered by the student’s advisory committee, the examination is expected to cover all mechanics course work as well as the project completed by the student. students must pass an oral examination upon completion of the degree requirements.