Master of Project Management
The Master of Project Management offered by Swinburne University is a ...
Hawthorn
INTAKE: March
Swinburne University of Technology offers a Bachelor of Engineering Honours Professional (Biomedical) program designed for students interested in the intersection of engineering and healthcare. This program focuses on developing technical expertise in biomedical engineering, preparing graduates for careers in medical device development, healthcare technology, and biomedical research.
Curriculum: The curriculum of the Bachelor of Engineering Honours Professional (Biomedical) at Swinburne integrates foundational engineering principles with specialized courses in biomedical instrumentation, biomaterials, medical imaging, and physiological systems. Students engage in hands-on laboratory work, design projects, and clinical placements to apply engineering principles in healthcare contexts.
Research Focus: Swinburne University emphasizes a research-driven approach within the Bachelor of Engineering Honours Professional (Biomedical) program. Students have opportunities to conduct research in areas such as bioengineering, medical imaging technologies, rehabilitation engineering, and biomedical signal processing. The program encourages innovation and the development of solutions to healthcare challenges through interdisciplinary research.
Industry Engagement: Industry engagement is integral to Swinburne's Bachelor of Engineering Honours Professional (Biomedical) program. Students collaborate with healthcare providers, medical device companies, and research institutions on projects and internships. They gain practical experience, industry insights, and networking opportunities essential for launching careers in the biomedical engineering field.
Global Perspective: The Bachelor of Engineering Honours Professional (Biomedical) program at Swinburne promotes a global perspective by addressing international healthcare challenges, biomedical innovation trends, and ethical considerations in medical technology development. Students explore global case studies, cultural influences on healthcare practices, and opportunities for international collaborations to broaden their perspective on biomedical engineering.
Hawthorn
IELTS 6.5
AUD 39429
Undergraduate Entry Requirements
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 65% or above in their previous academic qualifications.
English Language Proficiency:
Students must provide:
It's important to note that entry requirements can vary by program and may change over time. Additionally, some programs may have additional requirements, such as interviews, portfolios, or work experience.
Swinburne University offers a range of scholarships designed to assist international students in achieving their educational goals. These scholarships are awarded based on various criteria, including academic merit, financial need, and specific areas of study.
Swinburne International Excellence Scholarship: This merit-based scholarship recognizes outstanding academic achievements. It provides financial support to high-achieving international students pursuing undergraduate or postgraduate degrees.
Swinburne Sports Excellence Scholarship: Aimed at supporting talented athletes, this scholarship assists international students who excel in sports while pursuing their academic studies at Swinburne.
Swinburne Student Achievement Award: Recognizing not only academic achievements but also contributions to the community, this scholarship provides financial support and acknowledges a holistic approach to personal growth and success.
Government Scholarships: Swinburne University collaborates with various governments and organizations worldwide to provide scholarships and sponsorships for international students from specific countries. These opportunities vary by nation and are offered in conjunction with external partners.
Graduates of Swinburne University of Technology's Bachelor of Engineering Honours Professional (Biomedical) program are equipped with specialized skills that open doors to diverse career opportunities at the intersection of engineering and healthcare.
Biomedical Engineer: Biomedical engineers design and develop medical equipment, devices, and systems used in healthcare settings. They collaborate with healthcare professionals to innovate technologies that improve patient care, diagnostics, and treatment outcomes.
Medical Device Engineer: Medical device engineers specialize in designing, testing, and manufacturing medical devices such as prosthetics, imaging equipment, and surgical instruments. They ensure devices meet regulatory standards, are safe for patient use, and enhance medical procedures.
Clinical Engineer: Clinical engineers work in hospitals and healthcare facilities to manage medical equipment, troubleshoot technical issues, and ensure equipment safety and efficiency. They collaborate with healthcare teams to integrate technology into patient care workflows.
Biomechanical Engineer: Biomechanical engineers study the mechanics of biological systems and develop solutions to improve human movement, rehabilitation, and sports performance. They design prosthetics, orthotics, and assistive devices that enhance mobility and quality of life.
Research Scientist: Research scientists in biomedical engineering conduct studies to advance knowledge in areas such as tissue engineering, medical imaging, bioinformatics, and biomedical signal processing. They work in research institutions, universities, or biomedical companies to develop new technologies and therapies.
Regulatory Affairs Specialist: Regulatory affairs specialists ensure medical devices and equipment comply with local and international regulations. They navigate regulatory processes, submit documentation for product approvals, and maintain compliance throughout the product lifecycle.
Biomedical Consultant: Biomedical consultants provide technical expertise and advice to healthcare organizations, medical device companies, or government agencies. They offer solutions in areas such as healthcare technology integration, risk management, and quality assurance.
Healthcare Technology Manager: Healthcare technology managers oversee the implementation and maintenance of medical technology systems within healthcare settings. They manage technology budgets, coordinate system upgrades, and train staff on equipment use and safety protocols.
Biomedical Entrepreneur: Graduates with entrepreneurial aspirations may start their own biomedical engineering companies or consultancies. They develop innovative solutions, secure funding for projects, and navigate business challenges in the healthcare technology sector.
Academic Educator: Academic educators in biomedical engineering teach and mentor students in universities or technical institutes. They conduct research, publish findings, and contribute to the education and training of future biomedical engineers and researchers.