Non Thesis Masters Biomedical Engineering

Non Thesis Masters Biomedical Engineering-43
The student's faculty advisor and the Associate Chair for Graduate Studies must approve this list of courses.The Biomedical Engineering program at Brown provides cutting–edge, interdisciplinary, graduate–level education at the interface of engineering, biology, and medicine.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.

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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).

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.

The Master of Science in Bioengineering requires 45 units of coursework.

The curriculum consists of core bioengineering courses, technical electives, seminars and unrestricted electives.

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.

The program features an interdisciplinary approach in four complementary research areas: Research in these areas is advancing the understanding of fundamental problems in biology and medicine, while developing new therapies to improve the quality of life for people with medical problems.

The program is distinguished by its strong and collaborative connections between academic science, clinical medicine, and industry.


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