Bachelor of Engineering (Honours) (Electrical) / Master of Biomedical Systems and Technology

5 Years On Campus Bachelors Program

Queensland University of Technology

Program Overview

The Bachelor of Engineering (Honours) majoring in Electrical, combined with a Master of Biomedical Systems and Technology at Queensland University of Technology (QUT), offers a unique pathway for students passionate about engineering and healthcare technology. This program is ideal for those who want to innovate in the biomedical field, equipping them with the skills to design and develop advanced medical devices and systems.

Curriculum Structure:

In the first year, students will build a solid foundation in engineering principles through courses like "Engineering Mathematics" and "Introduction to Engineering Design." These subjects introduce essential concepts and problem-solving techniques that are crucial for any aspiring engineer.

During the second year, the focus shifts to more specialized knowledge with courses such as "Electrical Circuits" and "Digital Systems." Here, students delve deeper into the workings of electrical systems and gain hands-on experience in designing and analyzing circuits, preparing them for more complex challenges ahead.

In the third year, students will engage in advanced topics like "Control Systems" and "Electromagnetic Fields." This year emphasizes practical applications and theoretical understanding, allowing students to explore how electrical systems interact with biomedical technologies, setting the stage for their future studies.

In the final year of the Bachelor’s program, students will undertake a capstone project and courses such as "Power Electronics" and "Signal Processing." This year is pivotal as it allows students to apply their knowledge in real-world scenarios, culminating in a project that showcases their engineering capabilities.

Upon entering the Master of Biomedical Systems and Technology, students will explore advanced topics such as "Biomedical Instrumentation" and "Medical Imaging Systems." This program focuses on the integration of engineering principles with medical applications, preparing graduates to tackle complex challenges in the healthcare sector.

Focus Areas: Biomedical engineering, electrical systems, medical device design, healthcare technology.

Learning Outcomes: Proficiency in engineering principles, ability to design biomedical systems, understanding of electrical systems in healthcare, and skills in project management.

Professional Alignment (Accreditation): The program is accredited by Engineers Australia, ensuring that graduates meet the professional standards required for engineering practice.

Reputation (Employability Rankings): QUT consistently ranks highly for employability, with QS World University Rankings placing it among the top universities for engineering and technology.

 

Experiential Learning (Research, Projects, Internships etc.)

At Queensland University of Technology (QUT), students pursuing the Bachelor of Engineering (Honours) majoring in Electrical Engineering and the Master of Biomedical Systems and Technology are immersed in a rich environment of experiential learning. This hands-on approach not only enhances theoretical knowledge but also equips students with practical skills that are essential in today’s job market. With state-of-the-art facilities and cutting-edge tools, students can engage in real-world projects, collaborate with peers, and gain invaluable industry experience.

Here are some key aspects of the experiential learning opportunities available in these programs:

- Industry-Standard Laboratories: Access to specialized labs such as the Electrical Engineering Lab and Biomedical Engineering Lab, where students can work on real projects using advanced equipment.

- Collaborative Projects: Engage in group projects that simulate industry scenarios, allowing students to apply their knowledge in a team setting and develop essential teamwork skills.

- Internship Opportunities: QUT has strong connections with industry partners, providing students with internship placements that offer practical experience and networking opportunities.

- Software Proficiency: Students gain experience with industry-standard software such as MATLAB, LabVIEW, and AutoCAD, which are crucial for engineering and biomedical applications.

- Field Trips: Participate in field trips to local industries and research facilities, giving students insights into the practical applications of their studies and exposure to potential career paths.

- Research Institutes: Access to QUT’s research institutes, such as the Centre for Biomedical Technologies, where students can engage in cutting-edge research projects.

- Digital Tools: Utilize digital tools and platforms for project management and collaboration, enhancing the learning experience and preparing students for modern workplaces.

- Library Resources: Benefit from extensive library resources, including access to engineering and biomedical journals, databases, and study spaces designed for collaborative work.

These experiential learning opportunities not only enrich the academic experience but also prepare students for successful careers in engineering and biomedical technology. If you’re ready to take the next step in your education and career, consider applying to QUT’s Bachelor of Engineering (Honours) majoring in Electrical Engineering and the Master of Biomedical Systems and Technology.

 

Progression & Future Opportunities

Graduates of the Bachelor of Engineering (Honours) (Electrical Engineering)/Master of Biomedical Systems and Technology at Queensland University of Technology (QUT) are uniquely positioned at the intersection of engineering, healthcare, and technology. By combining expertise in electrical systems with advanced knowledge of biomedical technologies, graduates are prepared to develop innovative solutions that improve healthcare delivery, medical diagnostics, and patient outcomes. Typical career pathways include Biomedical Engineer, Medical Device Engineer, Clinical Technology Specialist, Systems Engineer, Healthcare Technology Consultant, and Research and Development Engineer.

This strong career outlook is supported by QUT’s industry-connected learning environment and professional development services:

  • Career Development Support: QUT’s Careers and Employability team provides one-on-one career coaching, resume and interview preparation, networking opportunities, career fairs, and access to graduate employment resources that help students transition successfully into the workforce.
  • Industry Engagement: Students benefit from QUT’s collaborations with healthcare providers, medical technology companies, research institutes, and government organisations, creating opportunities for internships, industry projects, and professional networking.
  • Work-Integrated Learning: Practical engineering projects and real-world biomedical applications allow students to develop technical expertise while gaining valuable industry experience before graduation.
  • Professional Accreditation: The Bachelor of Engineering (Honours) component is accredited by Engineers Australia, providing graduates with a recognised pathway towards professional engineering registration and international career recognition.
  • Growing Healthcare Technology Sector: Advances in medical devices, digital health, biotechnology, artificial intelligence in healthcare, and biomedical systems continue to drive demand for professionals with interdisciplinary engineering and healthcare expertise.
  • Research and Innovation Opportunities: Students are exposed to emerging technologies in medical instrumentation, health monitoring systems, bioelectronics, rehabilitation technologies, and healthcare innovation, preparing them for leadership roles in a rapidly evolving sector.
  • Graduate Outcomes: Graduates are equipped to work across hospitals, medical technology companies, research organisations, healthcare consultancies, government agencies, and advanced manufacturing industries focused on healthcare innovation.

Further Academic Progression:

After completing this dual degree, graduates may pursue doctoral research through a PhD in Biomedical Engineering, Electrical Engineering, Medical Technology, Digital Health, Biotechnology, or related fields. They may also undertake specialised professional training and certifications in areas such as medical device regulation, clinical engineering, healthcare technology management, biomedical data analytics, artificial intelligence in healthcare, and research commercialisation, supporting long-term career growth in both technical and leadership positions.

Program Key Stats

$47,700
$7,900

Febr Intake : 30th NovJuly Intake : 30th Apr


44 %
No

Eligibility Criteria

BCC
3.0
32
80

1290
32
6.5
79
90.00

Additional Information & Requirements

Country Requirements

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