This track focuses on Biomedical Engineering, preparing students with the technical knowledge and practical skills the field expects at the Master's level.
Graduates are equipped to pursue relevant engineering career paths, with a self-paced format built for students balancing work and other commitments.
ENG-116Engineering Ethics
Examines ethical responsibilities and decision-making in engineering practice.
- Professional codes of ethics
- Ethical decision-making frameworks
- Case studies in engineering ethics
ENG-163Latest Developments in Engineering
Explores emerging technologies and innovations shaping modern engineering.
- Emerging engineering technologies
- Innovation trends across disciplines
- Impact of new tech on engineering practice
ENG-269Engineering Numerical Methods
Covers numerical techniques used to solve complex engineering problems.
- Numerical approximation methods
- Solving engineering equations computationally
- Error analysis in numerical methods
ENG-516E-Engineering
Graduate-level study of electronic systems integration within engineering.
- Advanced electronic system design
- Integrating electronics into engineering systems
- Electronic system reliability
ENG-626Engineering Management
Covers managing engineering projects, teams, and resources effectively.
- Engineering project planning
- Managing technical teams
- Budgeting for engineering projects
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Specialist Courses
5 Courses
BES-2601Biomedical Engineering Systems Engineering
Covers designing and integrating complex biomedical systems.
- Systems integration basics
- Biomedical system lifecycle
- Testing and validation of systems
ABE-2674Advanced Biomedical Engineering Structures
Graduate-level study of complex structural design in biomedical devices.
- Advanced structural analysis
- Fatigue and stress testing
- Structural optimization techniques
BED-2675Biomedical Engineering Design
Covers the full design process for developing biomedical devices.
- Design process fundamentals
- Prototyping medical devices
- Design validation and testing
BED-2676Biomedical Engineering Dynamics
Graduate-level study of dynamic behavior in biomedical systems.
- Advanced dynamic modeling
- System response analysis
- Dynamic stability considerations
CBE-2677Computational Biomedical Engineering Systems
Covers computational modeling and simulation of biomedical systems.
- Simulation modeling basics
- Computational analysis techniques
- Applying simulations to device design
$60,000
Total Program Cost
Fees are billed per term and are subject to change. Financial aid, scholarships, and flexible payment plans are available to students who qualify.
Explore Financial Aid
Admission requires Bachelor's Degree or equivalent.
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Submit Your Application
Complete the online application with your basic and academic details.
An admissions advisor reviews your application and any transfer credit.
Receive your decision, complete enrollment, and start your first term.
Apply Now