Bachelor of Science and Bachelor of Engineering (Honours) major Electrical and Electronic Engineering

5 Years On Campus Bachelors Program

Macquarie University

Program Overview

The Bachelor of Science and Bachelor of Engineering (Honours) majoring in Electrical and Electronic Engineering at Macquarie University is a comprehensive 5-year double degree that combines scientific inquiry with advanced engineering expertise. This interdisciplinary program equips students with a strong foundation in science and engineering, preparing them to develop innovative solutions in areas such as renewable energy, telecommunications, automation, electronics, and intelligent technologies. Graduates emerge with both the analytical skills of a scientist and the technical capabilities of a professional engineer.

Curriculum Structure:

Year 1: Students establish a strong foundation in scientific and engineering principles through studies in mathematics, physics, chemistry, programming, and engineering design. Core units develop problem-solving, analytical thinking, and technical skills while introducing the engineering design process and scientific methodologies.

Year 2: The curriculum progresses into key electrical and electronic engineering topics such as circuit analysis, electronics, digital systems, and signals and systems. Science units deepen students' understanding of scientific concepts and research methods, supporting a broader perspective on technological innovation and engineering applications.

Year 3: Students undertake advanced studies in areas such as control systems, electromagnetics, instrumentation, communications, and embedded systems. Practical laboratory work and project-based learning enable students to apply theoretical knowledge to real-world engineering challenges while strengthening technical and teamwork skills.

Year 4: Specialised engineering studies focus on areas such as power systems, renewable energy technologies, telecommunications, automation, robotics, and intelligent systems. Students also engage in advanced scientific investigations and interdisciplinary projects that integrate scientific research with engineering problem-solving.

Year 5: The final year centres on advanced engineering electives, professional practice, and a major capstone project. Students apply their knowledge to solve complex industry-relevant challenges, demonstrating technical competence, innovation, leadership, and professional readiness for engineering careers.

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

Learning Outcomes: Graduates develop advanced technical expertise in electrical and electronic engineering alongside strong scientific reasoning and research capabilities. They gain skills in engineering design, systems analysis, innovation, project management, teamwork, communication, and multidisciplinary problem-solving.

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): Macquarie University is recognised for its strong industry engagement, innovative teaching approach, and graduate employability outcomes. The combination of science and engineering provides graduates with a competitive advantage across a broad range of industries, including energy, telecommunications, advanced manufacturing, technology, research, and infrastructure.

Experiential Learning (Research, Projects, Internships etc.)

At Macquarie University, the Bachelor of Science and Bachelor of Engineering (Honours) majoring in Electrical and Electronic Engineering is designed to provide students with a robust blend of theoretical knowledge and practical skills. The program emphasizes experiential learning, allowing students to engage in hands-on projects and real-world applications. With state-of-the-art facilities and cutting-edge tools, students are well-equipped to tackle the challenges of the engineering field.

Here are some key aspects of the experiential learning opportunities available in this program:

- Dedicated Laboratories: Access to specialized labs such as the Electronics and Communications Lab, where students can work on circuit design and testing.
- Industry-Standard Software: Use of advanced software tools like MATLAB, Simulink, and LabVIEW for simulation and analysis, which are essential in the engineering industry.
- Group Projects: Collaborative projects that encourage teamwork and problem-solving, simulating real-world engineering challenges.
- Internship Opportunities: The program includes options for industry placements, allowing students to gain valuable work experience and network with professionals in the field.
- Field Trips: Organized visits to local industries and engineering firms, providing insights into practical applications of electrical and electronic engineering.
- Research Institutes: Collaboration with research centers such as the Macquarie University Research Centre for Advanced Photonics, where students can engage in cutting-edge research.
- Access to Libraries: Extensive resources available at the Macquarie University Library, including engineering journals, databases, and study spaces tailored for engineering students.

These experiential learning components not only enhance your academic experience but also prepare you for a successful career in engineering. If you're ready to take the next step in your education, consider applying to Macquarie University for a program that truly values hands-on learning.

 

Progression & Future Opportunities

Graduates of the Bachelor of Science and Bachelor of Engineering (Honours) majoring in Electrical and Electronic Engineering at Macquarie University develop a powerful combination of scientific knowledge and advanced engineering expertise. This dual qualification prepares graduates to solve complex technological challenges, drive innovation, and contribute to industries that are shaping the future, including renewable energy, telecommunications, automation, electronics, and advanced manufacturing. Typical career pathways include Electrical Engineer, Electronics Engineer, Power Systems Engineer, Telecommunications Engineer, Control Systems Engineer, Automation Engineer, and Research Engineer.

This strong career outlook is supported by Macquarie University’s industry-focused learning environment and comprehensive employability support:

  • Career and Employability Services: Macquarie University provides dedicated career support through career coaching, resume and interview workshops, networking events, employer engagement programs, and access to graduate employment opportunities.
  • Industry Connections: Students benefit from the university’s partnerships with engineering firms, technology companies, telecommunications providers, government organisations, and research institutions, creating opportunities for internships, industry projects, and professional networking.
  • Practical Industry Experience: Through laboratory work, project-based learning, industry placements, and collaborative research opportunities, students develop workplace-ready skills that are highly valued by employers.
  • Professional Accreditation: The Engineering (Honours) degree is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and are eligible for professional recognition both in Australia and globally.
  • Growing Demand for Engineering Professionals: Ongoing investment in renewable energy, smart infrastructure, automation, communications technologies, and digital transformation is driving strong demand for electrical and electronic engineering graduates worldwide.
  • Research and Innovation Opportunities: Students gain exposure to emerging fields such as renewable energy systems, intelligent automation, advanced electronics, telecommunications networks, photonics, robotics, and sustainable engineering technologies.
  • Graduate Outcomes: Graduates are employed across diverse sectors including energy generation and distribution, telecommunications, defence, transportation, mining, technology, manufacturing, research organisations, and engineering consulting firms.

Further Academic Progression:

Upon graduation, students may continue their studies through postgraduate qualifications such as a Master of Engineering, Master of Renewable Energy, Master of Electronics Engineering, Master of Telecommunications Engineering, or related specialist programs. Students interested in research may pursue a PhD in Electrical Engineering, Electronic Engineering, Applied Physics, Telecommunications, Renewable Energy Systems, or other advanced technology disciplines. Professional certifications in project management, automation, power systems, data analytics, systems engineering, and emerging technologies can further enhance career opportunities and support progression into technical leadership, consulting, and executive roles.

Program Key Stats

$46,400
$8,021
$ 0

Febr Intake : 30th NovJuly Intake : 30th Apr


No

Eligibility Criteria

CCC
3.0
28
70 - 74

1160
22
6.5
86
83

Additional Information & Requirements

Country Requirements

Career Options

  • Electrical engineer
  • Electronics engineer
  • Telecommunications engineer
  • Control systems engineer
  • Robotics engineer
  • Software engineer
  • Research and development engineer
  • Project manager
  • Consultant

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