Course providers in Albany
Get started in civil construction with the RII30820 Certificate III in Civil Construction Plant Operations. This nationally recognised training course accompanies an apprenticeship and teaches you how to work safely on a civil construction site. The course covers levelling, trenches, concreting, earthworks — and you’ll also have the opportunity to learn how to operate a range of heavy vehicles (depending on your chosen electives) including backhoes, graders, dozers, and excavators. Enquire now for more information about how to enrol and where to study.
Learn moreCivil engineers are responsible for ensuring that the infrastructure around us gets developed, is safe, meets our needs, and improves our quality of life. This includes buildings, bridges, railways, tunnels, water distribution, and waste management networks. This practical qualification will ensure you graduate job-ready as a civil and structural engineering technologist. Upon completion of this program, you will gain skills and knowledge in the latest and developing technologies in civil and structural engineering.
Learn moreElectrical engineers are responsible for designing new systems, solving problems, testing equipment, and working on a wide range of components and systems, including communications systems, power plants, electrical machines, navigation systems, and electrical systems for automobiles and aircraft. This practical qualification will ensure you graduate job-ready as an electrical engineering technologist in many industries such as power generation and supply, communications and media, computer systems, and robotics. Upon completion of this program, you will gain skills and knowledge in the latest electrical engineering technologies.
Learn moreThe Master of Engineering (Electrical Systems), developed by electrical and renewable energy experts, will equip you with the necessary skills and knowledge to address the demands of the modern power industry. You will learn how to design the components of a power system including generation, transmission, distribution and the associated systems. The program will also cover the automation, protection and control components that contribute to the high level of reliability expected from modern power systems.
Learn moreThe Master of Engineering Civil Structural will equip you with the necessary skills to address the demands of the structural engineering industry. Students with a background in civil, construction, transport, and systems engineering will especially benefit from this program as it prepares them for further career development in the structural engineering industry. Upon completion of this program, you will gain skills and knowledge in the latest and developing technologies in civil and structural engineering.
Learn moreThis Master of Engineering (Industrial Automation) qualification is inspired and driven by industry, with a strong theoretical underpinning. Concept relevance and knowledge that is critical in this fast-moving work environment has propelled the program design process. Upon completion of this program, you will gain skills and expertise in the latest developing technologies in instrumentation, process control, and industrial automation.
Learn moreThis Master of Engineering (Mechanical) qualification will equip you with the necessary skills to address the demands of the modern mechanical engineering industry. Students with a background in mechanical, instrumentation & control, electrical, or industrial plant and systems engineering will be particularly well-placed to benefit from this program as it is designed to prepare you for further career development in the mechanical design and maintenance industries. Upon completion of this program, you will gain skills and knowledge in the latest and developing technologies in mechanical engineering.
Learn moreMechanical engineers are responsible for the design, manufacture, and operational processes of anything that moves, from the tiniest, simplest micro-particles to the largest, most complex spacecraft and everything in between. As a mechanical engineer, you have a skill set that is applicable to many industries in the world, including automotive, transport, manufacturing, power generation, medical, consumer goods, and more. This practical qualification will ensure you graduate job-ready as a mechanical engineering technologist. Upon completion of this program, you will gain skills and knowledge in the latest mechanical engineering technologies.
Learn moreGraduates of the Doctor of Engineering (DEng) will be able to make original and significant contributions to the development, application, and evaluation of professional knowledge by engaging with practical problems of demonstrated importance to their employment context and the wider body of engineering and technical knowledge.
Learn moreThe TLI50224 Diploma of Logistics provides a broad range of work skills for managing logistics operations. This qualification enables you to oversee people, freight forwarding, warehouse inventory, transport logistics and safety across various industries. You will develop the ability to apply knowledge independently, make informed decisions, and coordinate teams. Responsibilities may include strategic planning, selecting equipment and services, and managing complex technical tasks. This qualification supports roles that require leadership in logistics and supply chain operations. Enquire now for the full list of elective choices, entry requirements, and available enrolment dates.
Learn more- Trade Manager
- Pick Packer
- Ground Operations Supervisor
- Fuel Tanker Driver
- Industrial Engineer
- Customs Broker
- Logistics Manager
- Inventory Controller
- Fleet Manager
- Warehouse Supervisor
- Warehouse Leading Hand
- Logistics Administrator
- Transport Scheduler
- Fleet Controller
- Airport Operations Manager
- Supply Chain Manager
- Supply and Distribution Manager
- Supply Chain Analyst
- Logistics Planner
- Inventory Planner
- Logistics Coordinator
- Transport Manager
- Logistics Specialist
- Logistics Supervisor
Entry requirements
Entry requirements set by ASQA are the basic qualifications and criteria that students must meet before enrolling in a nationally recognised course.
These requirements ensure students have the skills and knowledge needed to undertake this course.
- There are no formal academic requirements
- Additional entry requirements are set by individual course providers
Career opportunities
The Master of Biomedical Engineering will prepare you for the following roles.
Clinical Engineer
A Clinical Engineer ensures that medical equipment in healthcare settings operates safely and effectively. You might work in hospitals, clinics, or...
Research and Development Engineer
A Research and Development Engineer creates and tests new technologies and solutions to meet industry needs and advance innovation. You might work...
Nanotechnologist
Nanotechnologists manipulate the world’s smallest matter and substances (ie, atoms and molecules that are smaller than 100 millionth of a millimetr...
More about Master of Biomedical Engineering
The Master of Biomedical Engineering in Albany offers a comprehensive pathway for students eager to excel in the intersection of engineering and healthcare. Located in the heart of Albany, 6330, Australia, this programme is delivered by esteemed training providers recognised for their excellence and commitment to education. By pursuing this course, individuals can gain crucial skills and knowledge that prepare them for a variety of rewarding career opportunities.
Participants in the Master of Biomedical Engineering will explore a range of engineering courses, including Manufacturing Engineering and Biomedical Engineering. These fields provide an in-depth understanding of the complexities involved in the design and implementation of medical devices and technologies. Additionally, the programme encompasses vital aspects of Chemical Engineering, ensuring a well-rounded education that aligns with current industry demands.
Graduates of the Master of Biomedical Engineering are ideally positioned for exciting careers as Biomedical Engineers, where they can contribute significantly to improving patient care and health outcomes. They are also equipped to become Clinical Engineers, ensuring that medical technology is safely and effectively utilised in clinical settings. The blend of engineering principles and healthcare knowledge makes this an appealing field for many aspiring professionals.
In addition, the course opens doors for students to work as Nanotechnologists, delving into the innovative applications of nanotechnology in medicine. Those who opt for roles as Research and Development Engineers can engage in pioneering projects aimed at advancing medical technology and improving healthcare solutions. The diverse career paths available demonstrate the vast potential for growth and impact within this sector.