Bachelor of Engineering(Electronic & Computer Systems Engineering)(Hon)/Bachelor of Computer Science

5 Years On Campus Bachelors Program

RMIT University

Program Overview

The Bachelor of Engineering (Electronic & Computer Systems Engineering) (Honours) / Bachelor of Computer Science at RMIT University is a comprehensive 5-year dual degree that combines advanced engineering expertise with cutting-edge computer science knowledge. Designed for students passionate about emerging technologies, intelligent systems, and digital innovation, this program equips graduates with the skills to develop both the hardware and software that power modern technological solutions.

Curriculum Structure

Year 1:
Students establish strong foundations in mathematics, programming, engineering principles, and computing fundamentals. Core courses such as Programming Fundamentals, Engineering Mathematics, Introduction to Engineering Design, and Digital Systems develop analytical thinking, computational skills, and a broad understanding of engineering and computer science concepts.

Year 2:
The curriculum advances into specialist technical areas. Students study Data Structures and Algorithms, Circuit Analysis, Object-Oriented Programming, and Electronics Fundamentals, building expertise in software development, system design, and electronic engineering principles. Practical laboratory work reinforces theoretical learning.

Year 3:
Students explore more advanced topics including Embedded Systems, Operating Systems, Computer Networks, Database Systems, and Signals and Systems. This year focuses on the integration of hardware and software, enabling students to understand how complex digital systems are designed, developed, and managed.

Year 4:
The focus shifts toward emerging technologies and large-scale system development. Students undertake advanced studies in areas such as Artificial Intelligence, Software Engineering, Control Systems, Cybersecurity, and Internet of Things (IoT) technologies. Team-based projects provide opportunities to solve real-world engineering and computing challenges.

Year 5:
In the final year, students complete a major engineering capstone project and advanced computer science electives. The capstone experience allows students to apply interdisciplinary knowledge to industry-relevant challenges, demonstrating technical expertise, innovation, project management capabilities, and professional engineering practice.

Focus Areas

Electronic Systems, Computer Systems Engineering, Software Development, Artificial Intelligence, Embedded Systems, Cybersecurity, Computer Networks, Internet of Things (IoT), Data Analytics, Intelligent Technologies.

Learning Outcomes

Graduates will develop advanced programming skills, electronic systems design expertise, software engineering capabilities, problem-solving proficiency, project management experience, and the ability to design, develop, and manage complex integrated technology systems.

Professional Alignment (Accreditation)

The engineering component of the program is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and are eligible to pursue Chartered Engineer status.

Reputation (Employability Rankings)

RMIT University is internationally recognised for its industry-connected education, strong graduate employability outcomes, and leadership in engineering, technology, and innovation. Graduates benefit from extensive industry engagement, practical learning opportunities, and strong employer demand across technology-focused sectors.

Future Career Opportunities

Graduates may pursue careers as Electronic Engineers, Computer Systems Engineers, Software Engineers, Embedded Systems Engineers, Cybersecurity Specialists, Artificial Intelligence Engineers, Network Engineers, Data Engineers, Systems Architects, IoT Engineers, Automation Engineers, Technology Consultants, and Research Engineers.

Graduate Salary Potential

Graduates entering engineering and technology sectors typically earn between AUD $85,000–$115,000 per year, depending on industry, location, and role. Professionals with specialised expertise in software engineering, cybersecurity, artificial intelligence, and systems engineering often progress to salaries exceeding AUD $140,000–$250,000+ annually.

Further Study Opportunities

Graduates may pursue postgraduate qualifications such as a Master of Engineering, Master of Artificial Intelligence, Master of Data Science, Master of Cybersecurity, Master of Information Technology, Master of Engineering Management, or Doctor of Philosophy (PhD) in engineering, computing, or emerging technology disciplines.

This interdisciplinary degree provides an exceptional combination of engineering and computing expertise, positioning graduates to lead innovation across industries ranging from advanced manufacturing and telecommunications to artificial intelligence, robotics, software development, and digital transformation.

Experiential Learning (Research, Projects, Internships etc.)

At RMIT University, students pursuing the Bachelor of Engineering (Electronic & Computer Systems Engineering) (Honours) and Bachelor of Computer Science programs are immersed in a dynamic learning environment that emphasizes practical skills and real-world applications. The university is equipped with state-of-the-art facilities and cutting-edge tools that enhance the learning experience, ensuring that students are well-prepared for their future careers.

Through hands-on projects, collaborative group work, and access to industry-standard software, students gain invaluable experience that bridges the gap between theory and practice. Here’s a glimpse of what you can expect in terms of experiential learning opportunities:

- Industry-Standard Laboratories: Access to specialized labs such as the Electronics and Computer Systems Engineering Lab, where you can work on real-world projects using advanced equipment.
- Software Tools: Proficiency in industry-relevant software like MATLAB, AutoCAD, and various programming environments that are essential for engineering and computer science.
- Group Projects: Engage in collaborative projects that simulate real-world engineering and software development challenges, fostering teamwork and problem-solving skills.
- Internship Opportunities: RMIT has strong connections with industry partners, providing students with internship placements that offer practical experience and networking opportunities.
- Field Trips: Participate in excursions to tech companies and engineering firms, giving you insights into the industry and current practices.
- Research Facilities: Access to dedicated research institutes and labs, such as the RMIT Robotics Research Group, where you can contribute to innovative projects.
- Digital Tools: Utilize cutting-edge digital tools and platforms for coding, simulation, and project management, preparing you for the demands of the tech industry.
- Library Resources: Benefit from extensive library resources, including access to technical journals, e-books, and databases that support your studies and research.

 

Progression & Future Opportunities

Graduates of the Bachelor of Engineering (Electronic & Computer Systems Engineering) (Honours) / Bachelor of Computer Science at RMIT University possess a highly sought-after combination of engineering expertise and advanced computing knowledge. This dual qualification prepares students to design, develop, and manage the sophisticated technologies that power modern industries, from intelligent devices and communication networks to artificial intelligence systems and advanced software solutions.

As organisations across the globe accelerate digital transformation, automation, cybersecurity initiatives, cloud computing adoption, and smart technology development, professionals who understand both hardware and software systems are increasingly valuable. RMIT's strong focus on industry engagement, practical learning, and emerging technologies ensures graduates are well-positioned to excel in a wide range of technology-driven careers.

Key future opportunities include:

  • Career Development and Employability Support: Students benefit from RMIT's career services, industry networking events, mentoring programs, employer partnerships, and professional development workshops designed to enhance career readiness.

  • Industry Experience and Professional Networks: Through internships, work-integrated learning, industry-sponsored projects, and collaborative research initiatives, students build practical experience and valuable professional connections before graduation.

  • Professional Accreditation: The engineering component of the degree is accredited by Engineers Australia, enabling graduates to meet internationally recognised engineering standards and pursue Chartered Engineer status.

  • Interdisciplinary Technical Expertise: Graduates develop capabilities across electronic engineering, computer systems, software development, embedded systems, artificial intelligence, cybersecurity, networking, cloud technologies, data analytics, automation, and intelligent systems.

  • Research and Innovation Opportunities: Students can engage in emerging technology fields including machine learning, robotics, autonomous systems, Internet of Things (IoT), quantum technologies, cybersecurity, smart infrastructure, and advanced computing.

  • Strong Industry Demand: Organisations across technology, telecommunications, finance, healthcare, defence, manufacturing, energy, and consulting sectors actively seek professionals who can bridge engineering and computing disciplines.

  • Graduate Career Opportunities: Potential roles include Software Engineer, Computer Systems Engineer, Electronic Engineer, Embedded Systems Engineer, Artificial Intelligence Engineer, Cybersecurity Specialist, Data Engineer, Network Engineer, Cloud Engineer, Automation Engineer, Systems Architect, Technology Consultant, and Product Development Engineer.

  • Graduate Salary Potential: Graduates typically enter the workforce earning between AUD $90,000–$120,000 per year, depending on role, employer, and location. Professionals specialising in software engineering, AI, cybersecurity, cloud computing, and systems architecture often progress to salaries exceeding AUD $140,000–$250,000+ annually.

  • Median Industry Salary: Professionals working across engineering and computing disciplines generally earn median salaries ranging from AUD $120,000–$145,000 per year, while senior engineers, architects, technology managers, consultants, and technical leaders frequently earn significantly higher remuneration.

Further Academic Progression:

Graduates may pursue postgraduate qualifications such as a Master of Engineering, Master of Artificial Intelligence, Master of Data Science, Master of Cybersecurity, Master of Information Technology, Master of Engineering Management, Master of Business Administration (MBA), or specialised programs in robotics, machine learning, cloud computing, software engineering, and advanced digital technologies. Research-focused graduates may continue into higher-degree research pathways, including a Master by Research or Doctor of Philosophy (PhD) in engineering, computer science, artificial intelligence, electronics, or related disciplines.

With expertise spanning both engineering and computer science, graduates are uniquely positioned to lead technological innovation, develop next-generation digital solutions, and drive transformation across industries that increasingly rely on intelligent, connected, and data-driven systems.

Program Key Stats

$51,744
$9,537
Febr Intake : 30th Nov


No

Eligibility Criteria

CCD
3.0
27
70

1130
23
6.5
79
83.00

Additional Information & Requirements

Country Requirements

Career Options

  • Computer scientists
  • Computer engineers
  • Telecommunication operators
  • Equipment manufacturers
  • IT departments
  • Governments (defence
  • security
  • emergency services)
  • Aerospace
  • Automotive
  • Manufacturing
  • Embedded systems
  • Computing
  • Resource
  • Defence
  • Primary industries

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