CourseBachelor Honours DegreeBE(Hons)/BCompSci

E3010 Bachelor of Engineering (Honours) and Bachelor of Computer Science

Faculty of Engineering

Bachelor of Engineering (Honours) and Bachelor of Computer Science (E3010) is a 5 years full-time, 240-credit-point, bachelor honours degree course from the Faculty of Engineering, taught at Clayton. In 2024 you can choose from 17 minors and 4 specialisations. Map your units semester by semester with the MonMap planner.

Credit points
240
Duration
5 years full time
10 years part time
Campus
Clayton
On campus
Guaranteed ATAR
85

This is the 2024 handbook entry. See the 2027 entry.

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Requisite map

The 2024 handbook lists no units for E3010 itself. Pick an area of study to see its units.

Overview

Computer science provides solutions to the ever-increasing information challenges in the modern world. Industries need people who can extract and analyse information from the massive datasets generated by engineering processes and devices. Big data presents both a challenge and an opportunity in engineering practice across various industries, ranging from construction and manufacturing, to transport and the energy sector.

In this double-degree course, you will:

  • gain theoretical and practical skills to solve engineering problems, by designing and building more efficient software or by exploiting big data
  • be able to combine mechanical or mechatronics engineering with your computational and mathematical flair to create cutting-edge controller software
  • be able to pair electrical and computer systems engineering or software engineering with computer science, to create innovative solutions at either the hardware or software ends of the IT spectrum
  • specialise in data science and learn how to build and use analytical tools and simulation software to visualise and interpret data from engineering systems of all kinds, from manufacturing and transportation to energy and water.

Course structure

Engineering component144 credit points
You must complete 144 credit points comprising all of Parts A, B, C and D as described in the Bachelor of Engineering (Honours).
You must satisfy the continuous professional development requirements (See ENG0001 or ENG0002).
Computer Science component96 credit points
You must complete 96 credit points from Parts A, B, C, D and E as described in the Bachelor of Computer Science in the Advanced computer science specialisation.

Specialist discipline

48 credit points
The handbook's description of this structure

Double degree courses include the features of the component degree courses, except that electives may be reduced.

Engineering

E3001 Bachelor of Engineering (Honours) is a specialist course that develops through four themes that combine to underpin engineering practice: fundamentals and breadth study; design, knowledge and application; and professional practice.

Part A. Engineering fundamentals and breadth study

These units will develop your understanding of natural and physical sciences, mathematics, numerical analysis, statistics, and computer and information sciences that underpin all engineering disciplines.  If you have not completed the Australian VCE (Units 3 & 4) or equivalent Specialist mathematics and/or Physics with the required study score you will need to enrol in the foundation units ENG1090 and/or PHS1001.

Part B. Engineering design

These units will develop the engineering techniques, tools and resources for the conduct, design and management of engineering design processes and projects, both in the industrial setting and in the development of research experiments.

Part C. Engineering knowledge and application

These units will provide in-depth knowledge of the specific engineering methods of a branch of engineering and will integrate the specific engineering methods and discipline knowledge into practice. You will develop skills to identify and apply knowledge of contextual factors impacting the engineering discipline. Additionally, your studies will focus on your understanding and application of the scope, principles, norms, accountabilities and bounds of contemporary engineering practice in your discipline.

Part D. Professional practice

These units will develop your skills in readiness for the engineering workplace. You will develop skills in effective team membership and team leadership, the use and management of commercially relevant data, and the legal responsibilities of engineers. This study will integrate the theme 'Engineering knowledge and application' with your specialist field of engineering.


Computer Science

C2001 Bachelor of Computer Science is a specialist course that develops through the themes of computer science foundation study, professional skills study, specialist discipline knowledge, problem-solving and analytic skills study, and professional skills study which come together in applied practice.

Part A. Computer science foundation study

This study will develop your understanding of the role and theoretical basis of computer science and computational methods.

Part B. Professional skills study

This study develops professional skills by providing an understanding and appreciation of the ethical and professional guidelines applicable to computer science, developing the ability to work as an effective team member, developing the ability to communicate proficiently and appropriately for professional practice, and developing formal project management skills.

Part C. Specialist discipline knowledge

This study will develop your in-depth knowledge of the specific computer science methods of your specialised field within computer science. Only the advanced computer science specialisation is available in this double degree.

Part D. Problem solving and analytical skills study

This study will develop your ability to apply appropriate methodologies in computer science and develop efficient computational solutions. It develops strong problem-solving skills and the ability to apply analytical thinking.

Part E. Applied practice

The above knowledge and skills are integrated and consolidated in applied practice as demonstrated in a computer science project and in some cases in an industry-based learning placement.

Course progression map

The course progression map provides guidance on unit enrolment for each semester of study.

You must complete 240 points, of which 144 points are from the Bachelor of Engineering (Honours) (including all of the requirements in Parts A, B, C and D for the chosen specialisation - electrical and computer systems engineering, robotics and mechatronics engineering, or software engineering) and 96 points from the Bachelor of Computer Science (including all of the requirements in Parts A, B, C, D and E in the single degree - advanced computer science specialisation).

Areas of study

Entry requirements

Guaranteed ATAR and selection rank

85; International: UERT Year 12/Foundation Band 4+ (87.5-89.99); UERT Post-Secondary Band 2+ (High Credit)

Other applicants

All applicants must satisfy the equivalence of the VCE subject prerequisites.

Applicants will not be admitted to this course solely on the basis of a VET qualification. Please refer to the Higher Education tab for further information about pathways.

Applicants with an achieved ATAR of less than 80.00 or equivalent need to have completed one year of equivalent full-time study load (1 EFTSL) or 48 credit points of bachelor level study with a minimum 65% average.


Applicants with an achieved ATAR of above 80.00 or equivalent need to have completed six months of equivalent full-time study load (0.5 EFTSL) or 24 credit points of bachelor level study with a minimum 65% average.


All applicants must satisfy the equivalence of the VCE subject prerequisites. If you have not met the course prerequisites at Monash or via an Australian Year 12, IB or A Levels you will need to provide unit outlines/syllabus for the prerequisite assessment.
Prerequisites must be completed within the past 10 years.

This course uses the entire academic record as part of its selection considerations.

English language

Monash Level A, that is: IELTS (Academic): 6.5 overall (no band lower than 6.0); or Pearson Test of English (Academic): score of 58 overall with no band lower than 50; or TOEFL Internet-based test: score of 79 overall with minimum scores: Writing: 21, Listening: 12, Reading: 13 and Speaking: 18; or Equivalent approved English test

Pathways

Refer to the Course description for each partner course

More information

Progression to further studies

Refer to the Course description for each partner course.

Professional accreditation

Refer to the Course description for each partner course.

Notes for students

You can enrich your degree to hone your academic and professional skills with a range of flagship rich educational experiences. These flagship rich educational experience units may be credited in place of your general electives in your first or second year if you have space.*

*If you are enrolled in a double degree there may be space available in the non-engineering side of your double degree to undertake flagship rich educational experiences. For information on eligible double degree combinations please see Flagship Rich Educational Experiences.

Other information

Computer science provides solutions to the ever-increasing information challenges in the modern world. Industries need people who can extract and analyse information from the massive datasets generated by engineering processes and devices. Big data presents both a challenge and an opportunity in engineering practice across various industries, ranging from construction and manufacturing, to transport and the energy sector.

In this double-degree course, you will:

  • gain theoretical and practical skills to solve engineering problems, by designing and building more efficient software or by exploiting big data
  • be able to combine mechanical or mechatronics engineering with your computational and mathematical flair to create cutting-edge controller software
  • be able to pair electrical and computer systems engineering or software engineering with computer science, to create innovative solutions at either the hardware or software ends of the IT spectrum
  • specialise in data science and learn how to build and use analytical tools and simulation software to visualise and interpret data from engineering systems of all kinds, from manufacturing and transportation to energy and water.

Common questions

How long is Bachelor of Engineering (Honours) and Bachelor of Computer Science?

5 years full time, 240 credit points. At 24 credit points a semester, that is 10 semesters of full-time study.

What specialisations can I take in Bachelor of Engineering (Honours) and Bachelor of Computer Science?

4 specialisations in 2024, including Advanced computer science; Electrical and computer systems engineering; Robotics and mechatronics engineering; and Software engineering.

What ATAR do I need for Bachelor of Engineering (Honours) and Bachelor of Computer Science?

The guaranteed ATAR listed for 2024 entry is 85.

Where can I study Bachelor of Engineering (Honours) and Bachelor of Computer Science?

At Clayton.

How do I plan my Bachelor of Engineering (Honours) and Bachelor of Computer Science units?

Open the course in the MonMap planner. It lays out your semesters, checks prerequisites as you drag units in, and tracks the credit points each requirement still needs.

Course details

Qualification
Bachelor Honours Degree
AQF level
Level 8
Credit points
240
Full time
5 Years
Part time
10 Years
Maximum time
10 years
Faculty
Faculty of Engineering
CRICOS code
092250J
Abbreviation
BE(Hons)/BCompSci
Award titles
Bachelor of Software Engineering (Honours)Bachelor of Computer ScienceBachelor of Electrical and Computer Systems Engineering (Honours)Bachelor of Robotics and Mechatronics Engineering (Honours)