Master of Engineering (Biomedical Engineering)

2 Years On Campus Masters Program

RMIT University

Program Overview

The Master of Engineering (Biomedical Engineering) at RMIT University is a two-year research postgraduate program designed for graduates who want to undertake advanced biomedical engineering research that addresses real-world healthcare challenges. Working closely with experienced supervisors, students develop innovative engineering solutions in areas such as biomaterials, biomechanics, medical electronics, tissue engineering, and biomedical technologies while gaining advanced research and technical expertise.

Curriculum Structure

First Year
Students complete compulsory research training, including research methods, research integrity and ethics, and qualitative or quantitative research techniques. Under academic supervision, they begin developing their research proposal and commence an independent research project in their chosen biomedical engineering field.

Second Year
Students continue their supervised research project, undertake advanced research and data analysis, and complete a thesis that demonstrates an original contribution to biomedical engineering. Opportunities for research placements with industry partners further strengthen practical research experience.

Focus Areas: Biomaterials, Biomechanics, Tissue Engineering, Medical Electronics, Signal Processing, Lab-on-Chip Diagnostics, Sensors and Systems Technologies, Biomedical Research.

Learning Outcomes: Develop advanced research expertise, apply engineering principles to healthcare challenges, and produce an original research thesis that contributes to biomedical engineering knowledge.

Professional Alignment: Prepares graduates for careers in universities, research organisations, government agencies, and biomedical industries, while providing a pathway to doctoral research.

Reputation (Employability): Students benefit from world-class research facilities, industry collaborations, and access to leading biomedical engineering researchers, supporting strong research and professional career opportunities.

Experiential Learning (Research, Projects, Internships etc.)

At RMIT University, the Master of Engineering (Biomedical Engineering) program is designed to provide students with a rich blend of theoretical knowledge and practical skills. This hands-on approach ensures that you not only learn the principles of biomedical engineering but also apply them in real-world scenarios. The university boasts state-of-the-art facilities and cutting-edge tools that enhance your learning experience, preparing you for a successful career in the field.

 

Through a combination of group projects, internships, and access to specialized laboratories, you will engage in experiential learning that is both comprehensive and impactful. Here are some key features of the program that highlight the experiential learning opportunities available to you:

- Advanced Laboratories: Access to well-equipped biomedical engineering labs where you can conduct experiments and research using the latest technology.
- Industry Partnerships: Collaborations with leading biomedical companies provide opportunities for internships and real-world projects, allowing you to gain valuable industry experience.
- Software Proficiency: Training in industry-standard software such as MATLAB, SolidWorks, and ANSYS, which are essential for modeling and simulation in biomedical applications.
- Group Projects: Engage in collaborative projects that mimic real-world engineering challenges, fostering teamwork and problem-solving skills.
- Field Trips: Opportunities to visit hospitals, research institutes, and biomedical companies to see how engineering principles are applied in practice.
- Research Institutes: Access to RMIT’s research centers focused on biomedical innovation, where you can participate in cutting-edge research initiatives.
- Digital Tools: Utilization of digital platforms for project management and collaboration, enhancing your ability to work effectively in teams.

These experiential learning opportunities are designed to ensure that you graduate not only with theoretical knowledge but also with the practical skills and experience that employers are looking for.

Embarking on this journey at RMIT will equip you with the tools and experiences necessary to excel in the dynamic field of biomedical engineering.

Progression & Future Opportunities

Graduating with a Master of Engineering (Biomedical Engineering) from RMIT University opens up a world of exciting career opportunities. Graduates are well-prepared for roles such as Biomedical Engineer, Clinical Engineer, and Research Scientist, among others. The program equips you with the skills and knowledge to innovate and improve healthcare technologies, making a real impact in the field.

 

Here’s what you can expect in terms of progression and future opportunities:

- University Services: RMIT offers dedicated career services, including resume workshops, interview preparation, and networking events with industry professionals to help you secure your dream job.
- Employment Stats and Salary Figures: The employment rate for graduates in engineering is high, with many securing roles shortly after graduation. The average salary for biomedical engineers in Australia is around AUD 80,000 to AUD 100,000, depending on experience and location.
- University–Industry Partnerships: RMIT has strong connections with leading companies in the biomedical sector, such as Medtronic and Cochlear, providing students with valuable internship and job placement opportunities.
- Long-term Accreditation Value: The program is accredited by Engineers Australia, ensuring that your qualification is recognized both nationally and internationally, enhancing your employability.
- Graduation Outcomes: RMIT graduates are known for their practical skills and industry readiness, with many finding employment in top-tier companies and research institutions.

Further Academic Progression: After completing your Master’s degree, you may choose to pursue a PhD in Biomedical Engineering or related fields. This can lead to advanced research opportunities, academic positions, or specialized roles in industry, allowing you to further contribute to innovations in healthcare technology.

By choosing RMIT, you’re not just earning a degree; you’re setting yourself up for a successful and impactful career in biomedical engineering.

Program Key Stats

$ 44,160
$0
$100
Rolling


No
Yes

Eligibility Criteria

NA
4 Years

NA
NA
NA
6.5
79
NA

Additional Information & Requirements

Country Requirements

Career Options

  • academic career in a university
  • senior leadership and management positions in government
  • scientific and industrial research laboratories

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