3 programs, side by side
Rows marked with a dot are where these differ. Everything is each university’s own published wording; the “your average” row is yours, calculated the way each program does it.
| Your average, their wayrequired courses forced in | |||
|---|---|---|---|
| Published rangetheir exact wording | 80–85%“80–85% (regular and co-op)” | 80–83%“Low 80s” | 80–85%“80-85%” |
| Required coursesforced into your top 6 — options are the row below | MCV4UMHF4USCH4USPH4U | ENG4U | MCV4UMHF4USBI4USCH4USPH4U |
| Choose one ofany of these satisfies it | — |
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| Prerequisitesas published |
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| More than marks?supplementary application | Marks only | Marks only | Marks only |
| Co-op | Available | Available | Available |
| Degree | — | — | Bachelor of Applied Science, BASc, Bachelor of Engineering (Co-op), BEng (Co-op) |
| First-year intakewhere published | — | — | 63 |
| What you study | Mechanical EngineeringMedical TechnologyOthers in Subjects Related to Medicine | Others in Subjects Related to MedicineSocial Policy | General or Integrated EngineeringInterdisciplinary StudiesMechanical EngineeringMedical Technology |
| What it is | This program combines mechanical engineering with biomedical applications, so you study how to design and build machines and devices used in medicine and healthcare — from artificial joints to diagnostic equipment. Unlike a straight mechanical engineering degree, you focus on the intersection of mechanics and biology. It suits students who want engineering problem-solving skills but are drawn to healthcare and want to see their work help people directly. | You study how to identify and solve health problems in communities and populations, rather than treating individual patients. This includes research into disease patterns, policy-making, and public health programs. The co-op requirement means you work in real health organizations alongside your coursework, giving you practical experience in areas like disease prevention, health education, and policy development. It suits people interested in the bigger picture of health and wellness across whole communities, not just clinical care. | You study the engineering principles behind medical devices and equipment, combining mechanical engineering with biology and healthcare applications. Unlike pure mechanical engineering, this program integrates biomedical sciences so you design systems that work inside or on the human body. It suits students interested in engineering who also want to apply their skills directly to medicine and health technology, with mandatory paid work terms built into the degree. |
| The door tomajors you reach through it | Applied to directly | Applied to directly | Applied to directly |
| Entrance awardsat this campus, by average | 16 published, 9 with no applicationfrom 75%See them | 4 published, 1 with no applicationfrom 80%See them | 22 published, 5 with no applicationfrom 75%See them |
| Source | Carleton University on OUInfo | Brock University on OUInfo | University of Ottawa on OUInfo |
Also compare with
Same subject area and a similar published range, at a campus you have not got in the table yet.
- Biomedical Mechanical Engineering and Computing Technology (5-year double degree)80–85%+
- Génie mécanique biomédical (4 ans)78–80%+
- Génie mécanique biomédical et technologie de l'informatique (Double grade – 5 ans)78–80%+
- Paramedicine (Joint Program with Centennial College)80–83%+
- Public Health (Regular/Co-op)80–87%+
- Biomedical Engineering (BEng) (co-op admission only)84–89%+
Ranges are what each university publishes, not guaranteed cutoffs, and limited-enrolment programs often admit above them. Confirm anything you are about to act on with the university; each column links to its source.