Bachelor of Engineering (Honours)
2024 Deakin University Handbook
Year | 2024 course information |
---|---|
Award granted | Bachelor of Engineering (Honours) |
Deakin course code | S467 |
Faculty | Faculty of Science, Engineering and Built Environment |
Campus | Offered at Burwood (Melbourne), Waurn Ponds (Geelong) |
Online | Yes |
Duration | 4 years full-time or part-time equivalent |
Course Map - enrolment planning tool | The course maps are for new students commencing from Trimester 1 2024:
The course maps are for new students commencing from Trimester 2 2024:
Course maps for commencement in previous years are available on the Course Maps webpage or please contact a Student Adviser in Student Central. |
CRICOS course code | 113508K Burwood (Melbourne), Waurn Ponds (Geelong) |
Australian Qualifications Framework (AQF) recognition | The award conferred upon completion is recognised in the Australian Qualifications Framework at Level 8 |
New course from Trimester 1, 2024. For students commencing Year 1 in 2024:
For pathway students commencing 2024:
|
Course sub-headings
- Course overview
- Indicative student workload
- Professional recognition
- Career opportunities
- Participation requirements
- Mandatory student checks
- Fees and charges
- Course Learning Outcomes
- Course rules
- Major sequences
- Work experience
- Details of major sequences
- Other learning experiences
- Research and research-related study
Course overview
Go beyond the classroom with Deakin’s future-focused Bachelor of Engineering (Honours). Get the skills and hands-on experience to create innovative solutions to real-world engineering problems.
Develop the knowledge and expertise to enter professional engineering practice in civil, environmental, electrical and electronics, mechanical or mechatronics engineering.
Through industry-informed projects you'll combine theory with contemporary practice to develop the skills needed to confidently design, construct and maintain engineering systems.
Whether you're building robots in our state-of-the-art lab spaces or solving complex problems on your industry placement, our flexible approach to project-based learning will help you develop the practical skills necessary for your ultimate career.
Want to turn your big ideas into the creative engineering solutions?
Deakin's Bachelor of Engineering (Honours) focuses on graduate employability and the future needs of industry. Our long-standing partnerships with Engineers Australia and a range of industry leaders informs our teaching, meaning you develop the skills employers want through courses that remain relevant. As a graduate, you'll be well-rounded and ready to meet the challenges of the future.
Gain access to world-class technology, teaching and research facilities at our renowned Melbourne Burwood and Geelong Waurn Ponds campuses. Housing some of the most advanced systems and learning spaces in Australia, they provide the ultimate training ground to design, construct and test your ideas. ManuFutures - a revived manufacturing centre with a vibrant, growing, and resilient SME base across Victoria - and flagship marine, aquaculture and water management projects are a prime example of Deakin's ongoing collaboration with government partners, ensuring our courses and research remain at the forefront of industry innovation and trends. Future focused initiatives you'll explore and contribute to include the Circular Economy Initiative, Hycel, Digital Futures Hub, Carbon Nexus, Aquafi Hub and BatTri-Hub.
Fifty per cent of each trimester is dedicated to project and design-based learning. This ensures you gain the confidence and ability to apply engineering knowledge and skills in an authentic context. You'll tackle real-world industry problems and research, design, test and evaluate solutions, with the support of our expert teaching staff. You'll also work on projects that inspire your creativity, and develop your ability to communicate, collaborate and thrive in a team environment.
Our hands-on approach to learning is extended by work-integrated learning and professional practice skills development opportunities. This not only gives you invaluable industry exposure but helps you kick-start your professional networks while you study and explore future career options.
Indicative student workload
You can expect to participate in a range of teaching activities each week. This could include classes, seminars, practicals and online interaction. You can refer to the individual unit details in the course structure for more information. You will also need to study and complete assessment tasks in your own time.
Professional recognition
Deakin's Bachelor of Engineering (Honours) course is fully accredited by Engineers Australia at our Waurn Ponds and Online campuses. The course is currently not accredited at our Burwood campus. Deakin will be seeking accreditation for the Burwood campus offering as we prepare graduates for transition to employment. Accreditation provides recognition against international benchmarks, allowing graduates to practice as professional engineers around the world.
Career opportunities
With an international skills shortage in the engineering industry, Deakin graduates are in demand both in Australia and abroad. 92.4% of our engineering graduates found full-time employment within four months of graduation according to the Graduate Outcomes Survey 2020-2022.
A recent report from the Australian Council of Engineering Deans (ACED) projected a shortage of qualified engineering in the workforce. They estimated that approximately 100,000 engineers will be required by 2030 to deliver on government initiatives in energy, transport and built infrastructure, advanced manufacturing, minerals, defence, and more.^
Secure your future career by learning the design, development and production skills needed to work in a diverse range of industries that contribute to developing the systems of the future. Depending on your major, you can expect to gain employment in a wide range of private and government organisations. Roles may range from construction to environmental protection, or from robotics to building the infrastructure of tomorrow.
^ Australian Council of Engineering Deans: Shortages of Engineers and Supply Projections, Dec 2021.
Participation requirements
In order to satisfy course accreditation requirements, as specified and administered by Engineers Australia, all online enrolled students, or students enrolled online in specified units, are required to participate in campus-based learning activities at Waurn Ponds (Geelong) during intensive week each trimester to ensure that graduates possess and have demonstrated the minimum necessary knowledge and skill base, engineering application abilities, and professional skills, values and attitudes at successful completion of the course to be sufficiently prepared to enter professional engineering practice.
Attendance and participation in learning activities during intensive week is linked to assessment requirements within the Engineering programmes, and failure to attend may result in students not meeting the hurdle requirement of the respective assessment. This may result in a fail grade being awarded for the respective affected unit(s) for that particular trimester.
International students: Please note that due to Australian Government regulations, student visas to enter Australia cannot be issued to students who enrol in Deakin online. To participate in the mandatory campus based scheduled sessions during the trimester intensive week, it is suggested that you apply for a tourist visa to enter Australia. Please be advised that Deakin University cannot guarantee that you will be granted a tourist visa by the Australian Government.
International students studying online may not be granted a visitor visa to complete mandatory components of the course at a campus.
Placement can occur at any time, including during standard holiday breaks. Learn about key dates at Deakin.Elective units may be selected that include compulsory placements, work-based training, community-based learning or collaborative research training arrangements.
Reasonable adjustments to participation and other course requirements will be made for students with a disability. More information available at Disability support services.
Mandatory student checks
Any unit which contains work integrated learning, a community placement or interaction with the community may require a police check, Working with Children Check or other check.
Articulation and credit transfer
Flexible entry into the course allows students to upgrade their qualifications and to obtain credit for previous studies/experience. Applicants with appropriate TAFE qualifications or other approved post-secondary studies may apply for Recognition of prior learning. Credit may be considered for skills obtained in the workforce or by informal means.
Equipment requirements
Students must have access to a suitable computer and a network connection. The learning experiences and assessment activities within this course may also require that students have access to a range of software. Access to high-cost specialist equipment is provided but students may be required to purchase minor equipment for particular unit(s) as detailed in unit site.
Fees and charges
Fees and charges vary depending on the type of fee place you hold, your course, your commencement year, the units you choose to study and their study discipline, and your study load.
Tuition fees increase at the beginning of each calendar year and all fees quoted are in Australian dollars ($AUD). Tuition fees do not include textbooks, computer equipment or software, other equipment or costs such as mandatory checks, travel and stationery.
Use the Fee estimator to see course and unit fees applicable to your course and type of place. For further information regarding tuition fees, other fees and charges, invoice due dates, withdrawal dates, payment methods visit our Current students website.
Course Learning Outcomes
Deakin Graduate Learning Outcomes | Course Learning Outcomes | |
Discipline-specific knowledge and capabilities | Design, develop, implement, manage and evaluate sustainable and innovative engineering solutions for real-world problems by integrating and applying well-developed knowledge and skills in natural and physical sciences, engineering and project management, and by showing concern for environmental, social and economic impact. Apply engineering and scientific techniques to study engineering problems, evaluate the benefits, risks and uncertainty associated with the use of specific engineering tools and techniques, and evaluate the effectiveness of designs and experiments that are used to determine a solution. Plan and execute practice- based projects to show capacity for advanced knowledge and skills in a discipline of engineering and thereby demonstrate the ability to research and continue professional development and scholarship. | |
Communication | Effectively apply verbal and non-verbal communication skills by actively listening, speaking, reading, writing, and graphically representing an engineering position using appropriate means, considerate of the audience and viewpoint of others. | |
Digital literacy | Identify, select and use digital technologies and tools relevant to an engineering discipline to use, manage, generate and share information, evaluate its reliability, and use the information for engineering design, problem solving and research purposes. Demonstrate the ability to independently and systematically locate and share information, laws, policies and regulations that pertain to engineering practice. | |
Critical thinking | Use knowledge of natural and physical sciences, and engineering skills and processes to identify and define problems in a variety of contexts and to study the nature and the impact of those problems. Apply critical and analytical thinking and judgment in evaluating data and information and integrating knowledge to develop new understanding, formulate appropriate and sustainable engineering design solutions and manage their implementation, operation and delivery ensuring effectiveness and efficiency. | |
Problem solving | Evaluate and use established engineering principles and practice approaches to identify potential solutions to resolve complex, real-world engineering problems and realise solutions independently and collaboratively. Demonstrate innovative and creative approaches and solutions to engineering problems that are constrained by local, national, global, and contemporary issues and show capacity for planning, designing, executing, and managing engineering projects. | |
Self-management | Proactively and critically self-assess and use reflection as a strategy for lifelong learning, professional development, and career thinking. Manage personal actions, priorities, and behaviours effectively in consideration of others, to ensure integrity in professional judgement and decision-making. | |
Teamwork | Demonstrate the value of trust by being a competent, reliable team member, who recognises and respects the roles and viewpoints of others, the fundamentals of team dynamics, and the value in pursuing expert assistance when required to nurture relationships that foster mutual engagement of others to collaboratively solve problems together. Work with, influence, and organise other people and resources to perform necessary work in accordance with a mutually agreed schedule, by applying the fundamentals of business and project planning, financial management, risk management, and human resources to an engineering context. | |
Global citizenship | Value the perspectives of Aboriginal and Torres Strait Islander peoples as well as diverse communities and cultures in a global context and situate own engineering practice by demonstrating commitment to safe, ethical and sustainable practices, and applying social, legal, and environmental responsibilities to exert a positive influence in the community. |
Approved by Faculty Board 6 April 2023
Course rules
To complete the Bachelor of Engineering (Honours), students must attain 32 credit points, which must include the following:
- eleven (11) credit points of core units
- one major - nineteen (19) credit points~
- 2 open elective units (2 credit points)*
- completion of three (3) or four (4) zero-credit point compulsory units:
- SEJ010 Introduction to Safety and Project Oriented Learning
- DAI001 Academic Integrity Module
- STP010 Career Tools for Employability
- SLE010 Laboratory and Fieldwork Safety Induction Program.^
* Students who have not previously completed VCE Mathematical Methods (units 3 and 4) are advised to undertake SIT190 Introduction to Functions, Relations and Graphs in the first trimester of their Engineering course. Therefore, these students may only be required to complete 1 elective unit (instead of 2 elective units).
~Students who have not studied chemistry in Y12 VCE or equivalent are advised to study SLE133 prior to studying SLE155 as part of the Environmental major.
^Students must complete this unit as part of the Environmental major.
Students are required to meet the University's academic progress and conduct requirements.
Major sequences
Refer to the details of each major sequence for availability.
- Civil Engineering *
- Electrical and Electronics Engineering *
- Environmental Engineering
- Mechanical Engineering
- Mechatronics Engineering
* Available at the Burwood (Melbourne) campus from Trimester 1, 2025
Work experience
Through SEL703 Professional Practice, you'll gain industry experience by completing at least 30 to 60 days of practical work experience in an engineering workplace with assessment tasks designed to develop and enhance your understanding of the engineering profession, professional practice and continuing professional development, possible career outcomes, and the opportunity to establish valuable professional networks.
Details of major sequences
Civil Engineering
Campuses
Burwood (Melbourne)*, Waurn Ponds (Geelong), Online
* this major will be offered on campus at Burwood from 2025 (refer to the table below for the rollout of unit offerings at the Burwood (Melbourne) campus)
Unit set code
MJ-S000092
Overview
This major prepares you to be a Civil Engineer and you will combine contemporary theory with industry-led projects to develop the skills needed to confidently design, construct and maintain the built infrastructure systems that are vital in our day-to-day lives. You will learn how to apply scientific and engineering principles to address complex problems and develop innovative solutions that are beneficial to organisations and the community. Throughout the major you will explore a diverse range of civil engineering disciplines related to structural, water, geotechnical and transportation engineering and civil engineering materials.
Units
Students are required to complete the units below, which include all core units in your course and units within your chosen major.
Level 1 - Trimester 1
DAI001 | Academic Integrity Module (0 credit points) |
STP010 | Career Tools for Employability (0 credit points) |
SEJ010 | Introduction to Safety and Project Oriented Learning (0 credit points) |
SIT190 | Introduction to Functions, Relations and Graphs (#) |
SET111 | Sustainable Design (core) |
SEB101 | Engineering Physics (core)+ |
SIT199 | Applied Algebra and Statistics (core) |
SEJ104 | Engineering in Society + |
Level 1 - Trimester 2
SEJ103 | Materials Engineering Project (2 credit points)+ |
SIT194 | Introduction to Mathematical Modelling (core) |
SEP105 | Introduction to Programming for Engineers (core) |
Level 2 - Trimester 1
SEJ202 | Field Investigation (2 credit points)+ |
SEM218 | Fluid Mechanics + |
SEP291 | Engineering Modelling (core) |
Level 2 - Trimester 2
SEJ201 | Structural Design (2 credit points)+ |
SEM216 | Stress and Failure Analysis + |
SEV254 | Road and Pavement Engineering |
Level 3 - Trimester 1
SEV301 | Water Engineering Design (2 credit points)+ |
SEV322 | Hydrology and Hydraulics + |
SEV320 | Theory of Structures |
Level 3 - Trimester 2
SEV300 | Reinforced Concrete and Steel Structures (2 credit points)+ |
SEV362 | Geotechnical Engineering |
SEL703 | Professional Practice (core)^ |
Level 4 - Trimester 1
SEJ441 | Engineering Project A (core)(2 credit points)~ |
SEV402 | Traffic and Transport Engineering |
Plus one (1) open elective (one credit point)
Level 4 - Trimester 2
SEJ446 | Engineering Project B (core)(2 credit points)~+ |
SEN770 | Infrastructure Engineering |
Plus one (1) open elective (one credit point)
~ It is recommended that students undertake SEJ441 and SEJ446 in consecutive trimesters.
^ Students are encouraged to complete this unit in Trimester 3 of the third year of study. Must have successfully completed STP010 Career Tools for Employability (0 credit point unit)
# Students who have not completed Mathematical Methods (or equivalent), will be required to undertake the unit SIT190 in the first trimester of their Engineering course.
+ Students enrolled online for these units are required to attend campus mode conducted activities during the corresponding Intensive Activities in a trimester. Attendance at campus mode activities is linked to assessment requirements within the Engineering programs, failure to attend will result in not meeting the hurdle requirement of the respective assessment. Thus, a fail grade shall be awarded for the respective affected unit(s) for that particular trimester.
Electrical and Electronics Engineering
Campuses
Burwood (Melbourne)*, Waurn Ponds (Geelong), Online
* this major will be offered on campus at Burwood from 2025 (refer to the table below for the rollout of unit offerings at the Burwood (Melbourne) campus)
Unit set code
MJ-S000093
Overview
With a particular emphasis on power, energy, electronics design and communication technologies this major prepares you with the skills and experience required to confidently tackle modern engineering challenges. Whether you study on campus or online, you will have access to the latest electrical and electronics engineering tools and application software - from renewable energy, power systems and high-voltage (HV) labs, to Deakin's microgrid facility with battery storage, visualisation and control centre.
Units
Students are required to complete the units below, which include all core units in your course and units within your chosen major.
Level 1 - Trimester 1
DAI001 | Academic Integrity Module (0 credit points) |
STP010 | Career Tools for Employability (0 credit points) |
SEJ010 | Introduction to Safety and Project Oriented Learning (0 credit points) |
SIT190 | Introduction to Functions, Relations and Graphs (#) |
SET111 | Sustainable Design (core) |
SEJ104 | Engineering in Society + |
SEB101 | Engineering Physics (core)+ |
SIT199 | Applied Algebra and Statistics (core) |
Level 1 - Trimester 2
SEJ102 | Electrical Systems Engineering Project (2 credit points)+ |
SIT194 | Introduction to Mathematical Modelling (core) |
SEP105 | Introduction to Programming for Engineers (core) |
Level 2 - Trimester 1
SEE210 | Power Engineering Design (2 credit points)+ |
SEP291 | Engineering Modelling (core) |
SEE216 | Analogue and Digital Electronics + |
Level 2 - Trimester 2
SEE222 | Embedded Systems Design (2 credit points)+ |
SEE213 | Distributed Generation System +* |
SEE212 | Power Electronics + |
Level 3 - Trimester 1
SEE332 | Transmission and Distribution System Design (2 credit points)+ |
SEE307 | Systems and Signals |
SEE312 | Data Communication + |
Level 3 - Trimester 2
SEJ302 | Control Systems Engineering (2 credit points) |
SEE406 | Power System Analysis |
SEE308 | Electrical Machines and Drives + |
Level 4 - Trimester 1
SEJ441 | Engineering Project A (core)(2 credit points)~+ |
SEL703 | Professional Practice (core)^ |
Plus one (1) open elective (one credit point)
Level 4 - Trimester 2
SEJ446 | Engineering Project B (core)(2 credit points)~+ |
SEE716 | Electrical Systems Protection |
Plus one (1) open elective (one credit point)
~It is recommended students undertake SEJ441 and SEJ446 in consecutive trimesters.
^ Students are encouraged to complete this unit in Trimester 3 of the third year of study. Must have successfully completed STP010 Career Tools for Employability (0 credit point unit)
# Students who have not completed Mathematical Methods (or equivalent), will be required to undertake the unit SIT190 in the first trimester of their Engineering course.
+ Students enrolled online for these units are required to attend campus mode conducted activities during the corresponding Intensive Activities in a trimester. Attendance at campus mode activities is linked to assessment requirements within the Engineering programs, failure to attend will result in not meeting the hurdle requirement of the respective assessment. Thus, a fail grade shall be awarded for the respective affected unit(s) for that particular trimester.
* not available from 2027
Environmental Engineering
Campuses
Burwood (Melbourne)*, Waurn Ponds (Geelong), Online
* (refer to the table below for the rollout of unit offerings at the Burwood (Melbourne) campus)
Unit set code
MJ-S000096
Overview
Become a highly skilled graduate ready to tackle global environmental issues such as climate change, sustainability and pollution. Gain knowledge across environmental engineering industry areas including waste management, water engineering, catchment management and soil and water remediation. This is underpinned by the fundamentals of environmental engineering and the natural and physical sciences, including geography, chemistry, mathematics, environmental science, ecology and hydrology. Develop solutions-led technical and professional skills to put you in high demand in this future-focused field.
Units
Students are required to complete the units below, which include all core units in your course and units within your chosen major.
Level 1 - Trimester 1
DAI001 | Academic Integrity Module (0 credit points) |
STP010 | Career Tools for Employability (0 credit points) |
SEJ010 | Introduction to Safety and Project Oriented Learning (0 credit points) |
SLE010 | Laboratory and Fieldwork Safety Induction Program (0 credit points) |
SIT190 | Introduction to Functions, Relations and Graphs (#) |
SET111 | Sustainable Design (core) |
SIT199 | Applied Algebra and Statistics (core) |
SEB101 | Engineering Physics (core)+ |
Plus 1 open elective (one credit point)
Level 1 - Trimester 2
SLE155 | Chemistry for the Professional Sciences * |
SEV101 | Global Environmental Systems |
SIT194 | Introduction to Mathematical Modelling (core) |
SEP105 | Introduction to Programming for Engineers (core) |
* This unit has an assumed strong knowledge of Chemistry. Students without VCE Chemistry 3 and 4 or an equivalent are strongly encouraged to undertake
SLE133 | Chemistry in Our World |
Molecular science is integral to modern environmental engineering. For this reason, knowledge of chemistry is important for all students in the Bachelor of Environmental Engineering (Honours) course. Students who have a weak or no knowledge of year 12 Chemistry should study SLE133. Students who have a strong knowledge of Chemistry may proceed directly to SLE155, and choose an open elective later in the degree.
Level 2 - Trimester 1
SEJ202 | Field Investigation (2 credit points)+ |
SEP291 | Engineering Modelling (core) |
SEM218 | Fluid Mechanics + |
Level 2 - Trimester 2
SEV201 | Environmental Health Engineering (2 credit points)+ |
SLE245 | Marine Geographic Information Systems |
SLE240 | Quantitative Marine Science |
Level 3 - Trimester 1
SEV301 | Water Engineering Design (2 credit points)+ |
SEV311 | Air and Noise Pollution + |
SEV322 | Hydrology and Hydraulics + |
Level 3 - Trimester 2
SEV331 | Waste Engineering and Transformation Systems (2 credit points) |
SLE207 | Environmental Planning and Impact Assessment |
SLE342 | Risks to Healthy Environments |
Level 4 - Trimester 1
SEJ441 | Engineering Project A (core)(2 credit points)~ |
SEV401 | Integrated Catchment Systems |
SEL703 | Professional Practice ^ |
Level 4 - Trimester 2
SEJ446 | Engineering Project B (core)(2 credit points)~+ |
SEN770 | Infrastructure Engineering |
Plus one (1) elective (one credit point)
^ Students are encouraged to complete this unit in Trimester 3 of the third year of study. Must have successfully completed STP010 Career Tools for Employability (0 credit point unit)
# Students who have not completed Mathematical Methods (or equivalent), will be required to undertake the unit SIT190 in the first trimester of their Engineering course.
~ It is recommended students undertake SEJ441 and SEJ446 in consecutive trimesters.
+ Students enrolled online for these units are required to attend campus mode conducted activities during the corresponding Intensive Activities in a trimester. Attendance at campus mode activities is linked to assessment requirements within the Engineering programs, failure to attend will result in not meeting the hurdle requirement of the respective assessment. Thus, a fail grade shall be awarded for the respective affected unit(s) for that particular trimester.
Mechanical Engineering
Campuses
Burwood (Melbourne)*, Waurn Ponds (Geelong), Online
* (refer to the table below for the rollout of unit offerings at the Burwood (Melbourne) campus)
Unit set code
MJ-S000094
Overview
Mechanical engineers are crucial to the design and development of the complex systems, devices and machinery that will be needed to tackle global challenges of the future, including health assistive technologies and biomedical devices, renewable energy systems, advanced manufacturing facilities and low emissions transport. You will combine contemporary theory with industry-led projects to hone the skills required to develop and run the innovative mechanical systems and technologies of the future.
Units
Students are required to complete the units below, which include all core units in your course and units within your chosen major.
Level 1 - Trimester 1
DAI001 | Academic Integrity Module (0 credit points) |
STP010 | Career Tools for Employability (0 credit points) |
SEJ010 | Introduction to Safety and Project Oriented Learning (0 credit points) |
SIT190 | Introduction to Functions, Relations and Graphs (#) |
SET111 | Sustainable Design (core) |
SEJ104 | Engineering in Society + |
SEB101 | Engineering Physics (core)+ |
SIT199 | Applied Algebra and Statistics (core) |
Level 1 - Trimester 2
SEJ103 | Materials Engineering Project (2 credit points)+ |
SEP105 | Introduction to Programming for Engineers (core) |
SIT194 | Introduction to Mathematical Modelling (core) |
Level 2 - Trimester 1
SEM200 | Machine Design (2 credit points)+ |
SEM218 | Fluid Mechanics + |
SEP291 | Engineering Modelling (core) |
Level 2 - Trimester 2
SEJ201 | Structural Design (2 credit points)+ |
SEM216 | Stress and Failure Analysis + |
SEM202 | Thermodynamics + |
Level 3 - Trimester 1
SED344 | Product Modelling and Design (2 credit points)+ |
SEM302 | Advanced Stress Analysis + |
SEM313 | Manufacturing + |
Level 3 - Trimester 2
SEJ302 | Control Systems Engineering (2 credit points) |
SEM310 | Thermo-Fluid Systems |
SEM327 | Dynamics of Machines + |
Level 4 - Trimester 1
SEJ441 | Engineering Project A (core)(2 credit points)~ |
SEM400 | Computational Fluid Dynamics + |
Plus one (1) open elective (one credit point)
Level 4 - Trimester 2
SEJ446 | Engineering Project B (core)(2 credit points)~+ |
SEL703 | Professional Practice (core)^ |
Plus one (1) open elective (one credit point)
~It is recommended students undertake SEJ441 and SEJ446 in consecutive trimesters.
^ Students are encouraged to complete this unit in Trimester 3 of the third year of study. Must have successfully completed STP010 Career Tools for Employability (0 credit point unit)
# Students who have not completed Mathematical Methods (or equivalent), will be required to undertake the unit SIT190 in the first trimester of their Engineering course.
+ Students enrolled online for these units are required to attend campus mode conducted activities during the corresponding Intensive Activities in a trimester. Attendance at campus mode activities is linked to assessment requirements within the Engineering programs, failure to attend will result in not meeting the hurdle requirement of the respective assessment. Thus, a fail grade shall be awarded for the respective affected unit(s) for that particular trimester.
Mechatronics Engineering
Campuses
Burwood (Melbourne)*, Waurn Ponds (Geelong), Online
* (refer to the table below for the rollout of unit offerings at the Burwood (Melbourne) campus)
Unit set code
MJ-S000095
Overview
This major prepares you to be a practical and industry-ready engineer capable of designing the electronics, robots and autonomous systems of the future. You will learn how to design, program and integrate electronic devices with mechanical designs that communicate with other computers, devices or even cloud-based systems. You will be able to deliver innovative solutions to real-world problems and design autonomous and intelligent devices ranging from self-driving vehicles to biomedical systems.
Units
Students are required to complete the units below, which include all core units in your course and units within your chosen major.
Level 1 - Trimester 1
DAI001 | Academic Integrity Module (0 credit points) |
STP010 | Career Tools for Employability (0 credit points) |
SEJ010 | Introduction to Safety and Project Oriented Learning (0 credit points) |
SIT190 | Introduction to Functions, Relations and Graphs (#) |
SET111 | Sustainable Design (core) |
SEJ104 | Engineering in Society + |
SEB101 | Engineering Physics (core)+ |
SIT199 | Applied Algebra and Statistics (core) |
Level 1 - Trimester 2
SEJ102 | Electrical Systems Engineering Project (2 credit points)+ |
SEP105 | Introduction to Programming for Engineers (core) |
SIT194 | Introduction to Mathematical Modelling (core) |
Level 2 - Trimester 1
SEM200 | Machine Design (2 credit points)+ |
SEP291 | Engineering Modelling (core) |
SEE216 | Analogue and Digital Electronics + |
Level 2 - Trimester 2
SEE222 | Embedded Systems Design (2 credit points)+ |
SEE212 | Power Electronics + |
SER204 | Electromechanical Systems |
Level 3 - Trimester 1
SER300 | Mechatronic Design (2 credit points)+ |
SEE312 | Data Communication + |
SEE307 | Systems and Signals |
Level 3 - Trimester 2
SEJ302 | Control Systems Engineering (2 credit points) |
SEM327 | Dynamics of Machines + |
SER400 | Virtual and Augmented Interfaces + |
Level 4 - Trimester 1
SEJ441 | Engineering Project A (core)(2 credit points)~ |
SEL703 | Professional Practice (core)^ |
Plus one (1) open elective (one credit point)
Level 4 - Trimester 2
SEJ446 | Engineering Project B (core)(2 credit points)~+ |
SEN771 | Intelligent Autonomous Robots |
Plus one (1) open elective (one credit point)
~ It is recommended students undertake SEJ441 and SEJ446 in consecutive trimesters.
^ Students are encouraged to complete this unit in Trimester 3 of the third year of study. Must have successfully completed STP010 Career Tools for Employability (0 credit point unit)
# Students who have not completed Mathematical Methods (or equivalent), will be required to undertake the unit SIT190 in the first trimester of their Engineering course.
+ Students enrolled online for these units are required to attend campus mode conducted activities during the corresponding Intensive Activities in a trimester. Attendance at campus mode activities is linked to assessment requirements within the Engineering programs, failure to attend will result in not meeting the hurdle requirement of the respective assessment. Thus, a fail grade shall be awarded for the respective affected unit(s) for that particular trimester.
Civil Engineering unit offerings at the Burwood (Melbourne) campus:
Tri 1, 2025 | SEJ202 | Field Investigation |
| SEM218 | Fluid Mechanics |
| SEP291 | Engineering Modelling |
Tri 2, 2025 | SEJ201 | Structural Design |
| SEM216 | Stress And Failure Analysis |
Tri 1, 2026 | SEV301 | Water Engineering Design |
| SEV322 | Hydrology And Hydraulics |
Tri 2, 2026 | SEV254 | Road And Pavement Engineering |
Tri 1, 2027 | SEV320 | Theory Of Structures |
| SEJ441 | Engineering Project A |
| SEL703 | Professional Practice |
Tri 2, 2027 | SEV300 | Reinforced Concrete And Steel Structures |
| SEV362 | Geotechnical Engineering |
| SEJ446 | Engineering Project B |
| SEN770 | Infrastructure Engineering |
Tri 1, 2028 | SEV402 | Traffic And Transport Engineering |
Electrical and Electronics Engineering unit offerings at the Burwood (Melbourne) campus:
Units available at the Burwood (Melbourne) campus from this period onwards:
Tri 1, 2025 | SEE216 | Analogue And Digital Electronics |
| SEP291 | Engineering Modelling |
Tri 2, 2025 | SEE212 | Power Electronics |
| SEE222 | Embedded Systems Design |
Tri 1, 2026 | SEE210 | Power Engineering Design |
| SEE307 | Systems And Signals |
| SEE312 | Data Communication |
Tri 2, 2026 | SEE213 | Distributed Generation System (not available from 2027) |
| SEJ302 | Control Systems Engineering |
Tri 1, 2027 | SEE332 | Transmission And Distribution System Design |
| SEJ441 | Engineering Project A |
| SEL703 | Professional Practice |
Tri 2, 2027 | SEE308 | Electrical Machines And Drives |
| SEJ446 | Engineering Project B |
Tri 2, 2028 | SEE406 | Power System Analysis |
| SEE716 | Electrical Systems Protection |
Environmental Engineering unit offerings at the Burwood (Melbourne) campus:
Tri 1, 2025 | SEJ202 | Field Investigation |
| SEM218 | Fluid Mechanics |
| SEP291 | Engineering Modelling |
Tri 2, 2025 | SEV201 | Environmental Health Engineering |
Tri 1, 2026 | SEV301 | Water Engineering Design |
| SEV311 | Air And Noise Pollution |
| SEV322 | Hydrology And Hydraulics |
Tri 2, 2026 | SEV331 | Waste Engineering And Transformation Systems |
Tri 1, 2027 | SEJ441 | Engineering Project A |
| SEL703 | Professional Practice |
Tri 2, 2027 | SEJ446 | Engineering Project B |
| SEN770 | Infrastructure Engineering |
Mechanical Engineering unit offerings at the Burwood (Melbourne) campus:
Tri 1, 2025 | SEM200 | Machine Design |
| SEM218 | Fluid Mechanics |
| SEP291 | Engineering Modelling |
Tri 2, 2025 | SEJ201 | Structural Design |
| SEM202 | Thermodynamics |
| SEM216 | Stress And Failure Analysis |
Tri 1, 2026 | SED344 | Product Modelling And Design |
| SEM302 | Advanced Stress Analysis |
| SEM313 | Manufacturing |
Tri 2, 2026 | SEJ302 | Control Systems Engineering |
| SEM310 | Thermo-Fluid Systems |
| SEM327 | Dynamics Of Machines |
Tri 1, 2027 | SEM400 | Computational Fluid Dynamics |
| SEJ441 | Engineering Project A |
| SEL703 | Professional Practice |
Tri 2, 2027 | SEJ446 | Engineering Project B |
Mechatronics Engineering unit offerings at the Burwood (Melbourne) campus:
Tri 1, 2025 | SEE216 | Analogue And Digital Electronics |
| SEM200 | Machine Design |
| SEP291 | Engineering Modelling |
Tri 2, 2025 | SEE212 | Power Electronics |
| SEE222 | Embedded Systems Design |
| SER204 | Electromechanical Systems |
Tri 1, 2026 | SEE307 | Systems And Signals |
| SEE312 | Data Communication |
| SER300 | Mechatronic Design |
Tri 2, 2026 | SEJ302 | Control Systems Engineering |
| SEM327 | Dynamics Of Machines |
| SER400 | Virtual And Augmented Interfaces |
Tri 1, 2027 | SEN771 | Intelligent Autonomous Robots |
| SEJ441 | Engineering Project A |
| SEL703 | Professional Practice |
Tri 2, 2027 | SEJ446 | Engineering Project B |
Other course information
Course duration
Course duration may be affected by delays in completing course requirements, such as accessing or completing work placements.
Further information
Student Central can help you with course planning, choosing the right units and explaining course rules and requirements.
- Contact Student Central
Other learning experiences
In your final year of the course, you may apply to undertake an international study tour to engage in a structured program of study, usually involving short project work overseas to gain discipline specific technical expertise and to enhance your global engineering awareness and experience.
Research and research-related study
The key assessment of research and research skills in the programme is through the two linked 2 credit point units in the final year of the course. The first of these units is for students to develop a detailed research proposal and undertake preliminary proof-of-concept or testing of their experimental methods. The second unit is designed to undertake the proposed research and critically evaluate the outcomes of the project. The project is predominantly student-led with direction from an academic supervisor that has expertise in the research field.