Bachelors of Engineering (Honours) major Electrical and Electronic Engineering / Computer Science

5 Years On Campus Bachelors Program

Griffith University Nathan Campus

Program Overview

The Bachelor of Engineering (Honours) majoring in Electrical and Electronic Engineering / Computer Science at Griffith University’s Nathan Campus is a comprehensive 5-year double degree that combines advanced engineering expertise with cutting-edge computer science knowledge. Designed for students who are passionate about technology, innovation, and digital transformation, this program equips graduates with the skills to design intelligent systems, develop advanced software solutions, and solve complex engineering challenges across a wide range of industries.

Curriculum Structure:

Year 1: Students establish a strong foundation in engineering, computer science, mathematics, programming, and problem-solving. Core courses introduce engineering design, computational thinking, programming fundamentals, and mathematical analysis, providing the essential knowledge required for both disciplines.

Year 2: The curriculum progresses into specialised engineering topics such as circuit analysis, electronics, digital systems, and signals and systems. Alongside these studies, students build computer science expertise through data structures, algorithms, object-oriented programming, and software development principles. Practical laboratory work reinforces theoretical concepts through hands-on learning.

Year 3: Students explore advanced topics including embedded systems, microprocessors, communications engineering, software engineering, databases, and computer networks. Project-based learning enables students to integrate hardware and software solutions while developing teamwork, project management, and technical problem-solving skills.

Year 4: The program offers opportunities to specialise in areas such as control systems, intelligent automation, cybersecurity, cloud computing, machine learning, artificial intelligence, telecommunications, and advanced electronics. Students undertake complex projects that address contemporary technological and engineering challenges.

Year 5: The final year focuses on professional engineering practice, advanced electives, and a major capstone project. Students apply their multidisciplinary knowledge to design innovative engineering and computing solutions, demonstrating technical competence, leadership, creativity, and professional readiness.

Focus Areas: Electrical engineering, electronic engineering, computer science, software development, embedded systems, artificial intelligence, cybersecurity, telecommunications, intelligent systems, and digital technologies.

Learning Outcomes: Graduates develop expertise in designing and analysing electrical and electronic systems, developing software applications, integrating hardware and software solutions, managing technical projects, and solving complex engineering and computing challenges. They also gain strong communication, teamwork, leadership, and innovation skills.

Professional Alignment (Accreditation): The Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognised professional engineering standards and are eligible for professional recognition through global engineering accords.

Reputation (Employability Rankings): Griffith University is recognised for its strong industry engagement, practical learning opportunities, and graduate employability outcomes. The combination of engineering and computer science provides graduates with a significant competitive advantage in industries increasingly driven by automation, artificial intelligence, software innovation, and digital transformation.

Experiential Learning (Research, Projects, Internships etc.)

At Griffith University’s Nathan Campus, students pursuing a Bachelor of Engineering (Honours) majoring in Electrical and Electronic Engineering or Computer Science are immersed in a dynamic learning environment that emphasizes practical skills and real-world applications. The university is committed to providing hands-on experiences that prepare students for the challenges of the industry. With state-of-the-art facilities and cutting-edge tools, students can engage in projects that enhance their understanding and application of theoretical concepts.

Experiential learning at Griffith is enriched through various opportunities, including:

- Dedicated Laboratories: Access to specialized labs such as the Electronics and Communications Lab, where students can work with industry-standard equipment and software.
- Group Projects: Collaborative projects that encourage teamwork and problem-solving, simulating real-world engineering challenges.
- Internships: Opportunities to gain industry experience through internships with leading companies, allowing students to apply their knowledge in professional settings.
- Software Tools: Proficiency in industry-relevant software such as MATLAB, AutoCAD, and various programming languages, which are integral to the curriculum.
- Field Trips: Visits to local industries and engineering firms, providing insights into the practical applications of engineering concepts.
- Research Institutes: Collaboration with research institutes that focus on innovative technologies, giving students exposure to cutting-edge research and development.
- Digital Resources: Access to Griffith’s extensive library resources and online databases, supporting research and project work.

These elements of experiential learning not only enhance academic knowledge but also equip students with the skills and confidence needed to excel in their careers. By choosing Griffith University, you’re not just earning a degree; you’re gaining invaluable experiences that will set you apart in the job market.

 

Progression & Future Opportunities

Graduates of the Bachelor of Engineering (Honours) majoring in Electrical and Electronic Engineering / Computer Science at Griffith University develop a highly valuable combination of engineering expertise and advanced computing skills. This interdisciplinary qualification prepares graduates to design intelligent systems, develop innovative software solutions, and solve complex technological challenges across industries undergoing rapid digital transformation. With strong foundations in both hardware and software, graduates are highly sought after by employers worldwide. Typical career pathways include Electrical Engineer, Electronics Engineer, Software Engineer, Embedded Systems Engineer, Artificial Intelligence Engineer, Systems Engineer, Cybersecurity Specialist, Data Engineer, and Technology Consultant.

This strong career outlook is supported by Griffith University's industry-connected learning environment and commitment to graduate employability:

  • Career Development and Employability Support: Griffith’s Careers and Employment Service provides personalised career coaching, resume and interview preparation, networking events, mentoring programs, employer engagement activities, and graduate recruitment support.
  • Industry Partnerships: Students benefit from Griffith University's collaborations with engineering firms, technology companies, software developers, telecommunications providers, government agencies, and research organisations, creating opportunities for internships, industry projects, and professional networking.
  • Work-Integrated Learning: Through practical laboratory work, engineering design projects, software development projects, professional placements, and industry engagement activities, students gain valuable workplace experience and develop job-ready skills before graduation.
  • Professional Accreditation: The Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and are eligible for professional recognition both in Australia and globally.
  • High Demand for Digital Technology Professionals: Growth in artificial intelligence, automation, cybersecurity, cloud computing, embedded systems, smart infrastructure, software engineering, and digital transformation is driving strong demand for graduates with expertise in both engineering and computer science.
  • Research and Innovation Opportunities: Students gain exposure to emerging fields such as artificial intelligence, machine learning, cybersecurity, robotics, intelligent automation, Internet of Things (IoT), advanced communications systems, cloud technologies, and intelligent electronic systems.
  • Graduate Outcomes: Graduates are employed across sectors including software development, telecommunications, engineering consulting, defence, advanced manufacturing, financial technology, healthcare technology, energy, government agencies, research organisations, and multinational technology companies.

Further Academic Progression:

Upon graduation, students may pursue postgraduate qualifications such as a Master of Engineering, Master of Computer Science, Master of Information Technology, Master of Artificial Intelligence, Master of Cybersecurity, Master of Data Science, or other specialised technology and engineering programs. Students interested in research may continue to a PhD in Electrical Engineering, Electronic Engineering, Computer Science, Artificial Intelligence, Robotics, Telecommunications, Cybersecurity, or related disciplines. Professional certifications in cloud computing, software engineering, cybersecurity, project management, systems engineering, networking, artificial intelligence, and data analytics can further strengthen career prospects and support progression into senior technical, consulting, innovation, and leadership roles.

Program Key Stats

$42,500
$9,000
Febr Intake : 30th Nov


No

Eligibility Criteria

***
3.0
26
65

1000
22
6.5
79
70

Additional Information & Requirements

Country Requirements

Career Options

  • Software Engineer
  • Computer Engineer
  • Systems Engineer
  • Full Stack Developer
  • Cyber Security Analyst
  • Cloud Engineer
  • Data Engineer
  • Artificial Intelligence Engineer
  • Machine Learning Engineer
  • Embedded Systems Engineer
  • Network Engineer
  • DevOps Engineer
  • Solutions Architect
  • Technology Consultant
  • Engineering Project Manager

Book Free Session with Our Admission Experts

Admission Experts