Master of Project Management
The Master of Project Management offered by Swinburne University is a ...
Hawthorn
INTAKE: Jul & Feb
Swinburne University of Technology offers a dynamic dual degree program combining Bachelor of Engineering (Honours) with Bachelor of Science (Biomedical). This interdisciplinary course equips students with essential skills in engineering principles alongside specialized biomedical knowledge, preparing them for careers at the intersection of engineering and healthcare.
Curriculum: The curriculum integrates core engineering subjects such as mechanics, materials science, and electrical systems with biomedical sciences including anatomy, physiology, and medical device technology. Students engage in practical learning through laboratory sessions, design projects, and industry placements, gaining hands-on experience crucial for their future careers.
Research Focus: Swinburne emphasizes a research-oriented approach within this program, encouraging students to explore innovative solutions to biomedical challenges. Research projects span areas like biomedical instrumentation, medical imaging, prosthetics, and biomaterials, fostering critical thinking and problem-solving abilities.
Industry Engagement: The university maintains strong ties with industry leaders in both engineering and biomedical sectors. Students benefit from guest lectures, industry-sponsored projects, and internships, gaining real-world insights and networking opportunities that enhance their employability upon graduation.
Global Perspective: With a global outlook, Swinburne integrates international perspectives into the curriculum through collaborations with overseas universities and exchange programs. Students are exposed to diverse cultural and scientific viewpoints, preparing them to work in multicultural environments and tackle global healthcare challenges.
Hawthorn
IELTS 6
AUD 40600
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 the Bachelor of Engineering (Honours) / Bachelor of Science (Biomedical) program from Swinburne University of Technology are well-prepared for a variety of career paths that merge engineering expertise with biomedical sciences.
Biomedical Engineer: Design and develop medical devices, equipment, and software. Work closely with healthcare professionals to improve patient care and develop innovative solutions.
Clinical Engineer: Ensure the safe and effective use of medical technology in hospitals and healthcare settings. Collaborate with medical staff to optimize equipment performance and patient outcomes.
Biomechanical Engineer: Focus on the mechanics of biological systems and design prosthetics, orthotics, and other medical devices to enhance mobility and quality of life for patients.
Medical Device Engineer: Specialize in the design, testing, and manufacturing of medical equipment and devices. Ensure compliance with regulatory standards and contribute to advancements in healthcare technology.
Research Scientist: Conduct research in biomedical engineering, exploring new materials, techniques, and technologies to address healthcare challenges. Work in academic institutions, research laboratories, or private sector R&D departments.
Healthcare Technology Manager: Oversee the implementation and maintenance of medical technology systems in healthcare facilities. Manage projects, budgets, and staff to ensure efficient and effective use of technology.
Biomedical Consultant: Provide expert advice to healthcare organizations, medical device companies, or government agencies on regulatory compliance, technology adoption, and healthcare strategy.
Quality Assurance Engineer: Ensure the safety, reliability, and effectiveness of biomedical products through rigorous testing and quality control processes. Play a crucial role in product development and regulatory approval.
Entrepreneur/Startup Founder: Use engineering and biomedical knowledge to launch startups or innovations in healthcare technology. Develop new products, services, or software solutions to address unmet medical needs.
Academic Advisor or Educator: Share expertise and mentor future generations of biomedical engineers as a faculty member or academic advisor at universities or technical institutions.