Mechanical 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.
Mechanical engineering is the field of engineering that applies physics and the material sciences to develop machinery. Mechanical engineers use the principles of force, energy, and motion to improve the safety, efficiency, and technological advancement of the world around us.
With this qualification, you will have acquired the essential knowledge which underpins both this and other fields of engineering. More importantly, you will have become a mechanical engineering technologist.
The degree consists of a combination of core units, sub-discipline specific ‘stream’ units, industrial work experience, and a final year project.
Unit Code | Subjects | Credit Points |
BSC101C | Engineering Mathematics 1 (Core) | 3 |
BSC102C | Electrical Circuit Theory and Analysis (Core) | 3 |
BSC103C | Engineering Dynamics and Mechanics (Core) | 3 |
BSC203C | Engineering Design and Drawing (Core) | 3 |
BSC109C (Part A) |
Industrial Experience Research Project | 0 |
BSC104C | Engineering Mathematics 2 (Core) | 3 |
BSC201C | Engineering Programming (Core) | 3 |
BME106S | Hydraulics and Pneumatics | 3 |
BSC107C | Physics and Chemistry for Engineers (Core) | 3 |
BSC109C (Part B) |
Industrial Experience Research Project | 3 |
BSC110C | Industrial Experience | 0 |
Unit Code | Subjects | Credit Points |
BME108S | Pumps, Seals, Compressors and Turbines | 3 |
BSC105C | Mechanics of Machines (Core) | 3 |
BSC202C | Engineering Mathematics 3 (Core) | 3 |
BME205S | Process Plant Layout, Piping and Pipeline Systems | 3 |
BSC302C (Part A) |
Project Planning, Management and Costing (Core) | 0 |
BME204S | Mechanical Design | 3 |
BME206S | Fluid Mechanics | 3 |
BME207S | Thermodynamics | 3 |
BME209S | Automation, Measurement, and Control | 3 |
BSC302C (Part B) |
Project Planning, Management and Costing (Core) | 3 |
BSC210C | Industrial Experience | 0 |
Unit Code | Subjects | Credit Points |
BME208S | Energy Systems | 3 |
BME301S | Lubrication, Maintenance and Condition Monitoring | 3 |
BME303S | Heat and Mass Transfer | 3 |
BME304S | Heating, Ventilation and Air-Conditioning Systems | 3 |
BSC305C (Part A) |
Technology, Sustainability and Society (Core) | 0 |
BME306S | Manufacturing Processes and Technology | 3 |
BSC307C | Final Year Project (Mechanical Engineering) | 9 |
BSC305C (Part B) |
Technology, Sustainability and Society (Core) | 3 |
Unit Code | Subjects | Credit Points |
BXX001 | Hands-on Workshop 1 | 0 |
BXX002 | Hands-on Workshop 2 | 0 |
BXX003 | Hands-on Workshop 3 | 0 |
BXX004 | Hands-on Workshop 4 | 0 |
EIT’s Bachelor of Science programs require students to undertake 240 hours of paid or unpaid professional work-integrated learning. This can incorporate paid or unpaid internships, site visits, contributing to industry projects, and networking activities.
In undertaking an internship, students will interact with employees and become exposed to organizational policy and culture. You will familiarize yourself with organizational communication procedures, a variety of engineering disciplines, and obtain insight and practical aptitude in projects from the planning phase to completion.
If you already have some work experience in the relevant engineering field, you may apply to have credit granted by completing the associated recognition of prior learning form.
Entry into our online study mode requires applicants to hold:
A minimum ATAR score is not an admissions requirement.
Applicants who have completed Year 12 (or equivalent for International Students) more than two years ago will also need to show relevant work experience in the field of study applied for; OR
Please Note: Meeting the minimum admission criteria does not guarantee entry to our programs. All applications will be assessed on a case-by-case basis.
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Like all Australian higher education providers and universities, EIT programs are accredited by the exacting standards of the Australian Government’s Tertiary Education Quality and Standards Agency (TEQSA). This bachelor’s degree is provisionally accredited by Engineers Australia under the Sydney Accord. It is internationally recognized under the International Engineering Alliance (IEA) accords and the various signatories.
Find out more about country-specific accreditation and professional recognition.
Potential job roles include engineering and management positions in the following areas of expertise:
Our bachelor’s degrees take three years to complete full-time, and longer for those studying part-time (up to 6 years part-time). You will spend approximately 10 hours per week, per unit, learning the program material, and completing assessments. This includes attending tutorials.
Applications are open for our upcoming intakes. You must submit your application at least four weeks before the start date to be considered for your desired intake.
A census date is the date at which an enrolment is considered to be final. Any withdrawal you make after the study period census date will incur an academic penalty (for example, a fail grade) and a financial penalty (for example, no refund of your student contribution or tuition fees). View our current census dates.
Any student has a right to appeal a decision of the Engineering Institute of Technology (EIT) or any member of the institute’s staff. EIT has a comprehensive Policy on Appeals and Grievances to assist students.