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

5 Years On Campus Bachelors Program

Griffith University Gold Coast Campus

Program Overview

The Bachelor of Engineering (Honours) in Electrical and Electronic Engineering / Bachelor of Science at Griffith University’s Gold Coast Campus is a comprehensive 5-year double degree that combines advanced engineering expertise with scientific knowledge and research capabilities. Designed for students who are passionate about innovation, technology, and scientific discovery, this program equips graduates with the technical and analytical skills needed to address complex challenges across a broad range of industries, from renewable energy and telecommunications to advanced electronics and scientific research.

Curriculum Structure:

Year 1: Students establish a strong foundation in engineering, science, mathematics, physics, and programming. Core courses introduce engineering design, scientific inquiry, problem-solving methodologies, and fundamental electrical engineering concepts, while developing the analytical skills essential for both engineering and scientific disciplines.

Year 2: The curriculum progresses into specialised engineering topics such as circuit analysis, electronics, digital systems, and signals and systems. Science studies deepen students’ understanding of scientific principles, experimental methods, and data analysis, providing a broader perspective on technological innovation and research.

Year 3: Students undertake advanced studies in control systems, electromagnetic fields, embedded systems, communications engineering, and instrumentation. Practical laboratory work and project-based learning allow students to apply theoretical concepts to real-world engineering challenges while strengthening technical and teamwork skills.

Year 4: The program offers opportunities to specialise in areas such as power systems, renewable energy technologies, telecommunications, automation, intelligent systems, and advanced electronics. Science units further develop students’ research, investigative, and analytical capabilities, complementing their engineering expertise.

Year 5: The final year focuses on professional engineering practice, engineering project management, advanced technical electives, and a major capstone project. Students integrate knowledge from both engineering and science to solve complex industry-relevant problems, demonstrating technical competence, innovation, leadership, and professional readiness.

Focus Areas: Electrical engineering, electronic engineering, renewable energy systems, telecommunications, automation, control systems, power engineering, embedded systems, scientific research, and intelligent technologies.

Learning Outcomes: Graduates develop expertise in designing, analysing, and implementing electrical and electronic systems while applying scientific methods to investigate and solve complex technical challenges. They gain strong skills in engineering design, research, project management, teamwork, communication, innovation, and critical thinking.

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 science provides graduates with a competitive advantage across sectors such as renewable energy, telecommunications, advanced manufacturing, research, technology development, infrastructure, and emerging industries.

Experiential Learning (Research, Projects, Internships etc.)

At Griffith University’s Gold Coast Campus, the Bachelor of Engineering (Honours) in Electrical and Electronic Engineering offers students a dynamic blend of theoretical knowledge and practical experience. This program is designed to equip you with the skills needed to thrive in the fast-evolving engineering landscape. You’ll have access to state-of-the-art facilities and tools that enhance your learning experience, ensuring you’re well-prepared for your future career.

Experiential learning is a cornerstone of this program, allowing you to engage in hands-on projects, collaborate with peers, and apply your knowledge in real-world settings. Here are some of the key features that make this program stand out:

- Advanced Laboratories: Access specialized labs equipped with the latest technology for electronics, telecommunications, and control systems, allowing you to conduct experiments and develop practical skills.

- Industry-Standard Software: Gain proficiency in industry-relevant software such as MATLAB, Simulink, and AutoCAD, which are essential for modeling, simulation, and design in engineering projects.

- Group Projects: Collaborate with fellow students on team-based projects that mimic real-world engineering challenges, fostering teamwork and problem-solving skills.

- Internship Opportunities: Benefit from connections with industry partners that provide internship placements, giving you valuable work experience and networking opportunities.

- Field Trips: Participate in field trips to local industries and engineering firms, where you can see engineering principles in action and gain insights into professional practices.

- Research Institutes: Engage with Griffith’s research institutes, such as the Griffith Institute for Drug Design and Development, where you can explore innovative applications of electrical and electronic engineering.

- Access to Libraries and Resources: Utilize extensive library resources and digital tools that support your research and learning, ensuring you have the information you need at your fingertips.

 

Progression & Future Opportunities

Graduates of the Bachelor of Engineering (Honours) in Electrical and Electronic Engineering / Bachelor of Science at Griffith University graduate with a unique combination of technical engineering expertise and scientific problem-solving skills. This interdisciplinary qualification prepares graduates to design, develop, and optimise advanced electrical and electronic systems while applying scientific principles to solve complex industry challenges. Typical career pathways include Electrical Engineer, Electronics Engineer, Power Systems Engineer, Telecommunications Engineer, Control Systems Engineer, Automation Engineer, Renewable Energy Engineer, and Research Scientist.

This strong career outlook is supported by Griffith University’s industry-focused education and extensive employability initiatives:

  • Career Development and Employability Support: Griffith’s Careers and Employment Service provides personalised career guidance, resume and interview preparation, networking events, employer engagement activities, mentoring programs, and graduate recruitment support.
  • Industry Partnerships: Students benefit from Griffith University’s collaborations with engineering consultancies, energy providers, technology companies, telecommunications organisations, government agencies, and research institutions, creating opportunities for internships, industry projects, and professional networking.
  • Work-Integrated Learning: Practical engineering projects, laboratory experiences, professional placements, and industry engagement activities allow students to apply classroom knowledge to real-world challenges and develop workplace-ready skills.
  • Professional Accreditation: The Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and are eligible for professional recognition in Australia and internationally.
  • Growing Demand Across Engineering Sectors: Global investment in renewable energy, smart infrastructure, telecommunications networks, automation technologies, advanced manufacturing, and sustainable development continues to drive demand for highly skilled electrical and electronic engineers.
  • Research and Innovation Opportunities: Students gain exposure to emerging technologies including renewable energy systems, smart grids, intelligent automation, embedded systems, communications technologies, robotics, advanced electronics, and sustainable engineering solutions.
  • Graduate Outcomes: Graduates are employed across industries such as energy generation and distribution, telecommunications, infrastructure, defence, manufacturing, mining, transportation, research organisations, government agencies, and engineering consulting firms.

Further Academic Progression:

Upon graduation, students may pursue postgraduate qualifications such as a Master of Engineering, Master of Electronic Engineering, Master of Renewable Energy Engineering, Master of Science, Master of Data Science, or other specialised technical programs. Students interested in research can continue to a PhD in Electrical Engineering, Electronic Engineering, Renewable Energy Technologies, Telecommunications, Applied Physics, Intelligent Systems, or related scientific disciplines. Professional certifications in project management, power systems, automation, systems engineering, renewable energy technologies, and data analytics can further strengthen career prospects and support progression into senior technical, consulting, research, and leadership positions.

Program Key Stats

$44,500
$8,600
Febr Intake : 30th Nov


50 %
No

Eligibility Criteria

***
3.0
26
65

1000
22
6.5
79
70.00

Additional Information & Requirements

Country Requirements

Career Options

  • Environmental Engineer
  • Civil Engineer
  • Mechanical Engineer
  • Electrical Engineer
  • Chemical Engineer
  • Environmental Scientist
  • Research Scientist
  • Sustainability Consultant
  • Renewable Energy Engineer
  • Water Resources Engineer
  • Data Analyst
  • Laboratory Scientist
  • Engineering Consultant
  • Project Engineer
  • Science and Technology Specialist  

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