Bachelor of Engineering (Honours) and Bachelor of Science with a major in Electrical and Computer Systems Engineering

5 Years On Campus Bachelors Program

Monash University

Program Overview

The Bachelor of Engineering (Honours) majoring in Electrical and Computer Systems Engineering at Monash University is a comprehensive 5-year engineering program designed for students who are passionate about technology, innovation, and solving complex engineering challenges. The degree combines a strong theoretical foundation with extensive practical learning, preparing graduates to design, develop, and manage advanced electrical and computer-based systems across a wide range of industries.

Curriculum Structure:

Year 1: Students establish a strong foundation in engineering through studies in mathematics, physics, programming, and engineering design. Core units introduce fundamental engineering principles and problem-solving methodologies while developing the analytical and technical skills required for future engineering studies.

Year 2: The curriculum focuses on core electrical and computer systems engineering concepts, including circuit analysis, electronics, digital systems, and signals and systems. Students begin applying theoretical knowledge through laboratory work, practical projects, and collaborative learning experiences.

Year 3: Students progress to more advanced topics such as control systems, communications engineering, microprocessors, data structures, and software development. Project-based learning becomes increasingly important, allowing students to develop practical solutions to real-world engineering problems while strengthening teamwork and project management skills.

Year 4: Specialisation opportunities allow students to deepen their expertise in areas such as embedded systems, telecommunications, power systems, artificial intelligence, robotics, and intelligent technologies. Students undertake complex design projects that integrate multiple engineering disciplines and develop professional engineering competencies.

Year 5: The final year focuses on advanced engineering applications, industry-relevant projects, and a major capstone design project. Students synthesise their knowledge to solve challenging engineering problems, demonstrating their technical proficiency, innovation, leadership, and professional readiness for engineering practice.

Focus Areas: Electrical systems, computer systems engineering, embedded systems, telecommunications, power systems, signal processing, control systems, software development, artificial intelligence, and intelligent technologies.

Learning Outcomes: Graduates develop strong technical expertise in electrical and computer systems engineering, alongside advanced problem-solving, critical thinking, project management, teamwork, communication, and professional engineering skills. They are equipped to design, analyse, and implement complex engineering systems in diverse technological environments.

Professional Alignment (Accreditation): The program 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): Monash University is internationally recognised for excellence in engineering education, research, and graduate employability. Its strong industry partnerships, practical learning opportunities, and global reputation help graduates secure employment across engineering, technology, telecommunications, energy, manufacturing, and innovation-focused industries.

Experiential Learning (Research, Projects, Internships etc.)

At Monash University, the Bachelor of Engineering (Honours) majoring in Electrical and Computer Systems Engineering offers an exceptional opportunity for students to gain practical skills that are essential for their future careers. The program emphasizes experiential learning, allowing students to engage in hands-on projects, collaborate with peers, and apply theoretical knowledge in real-world settings. 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:

- Engineering Design Studio: A dedicated space where students can work on design projects, utilizing advanced tools and technologies.
- Laboratories: Access to specialized labs, including the Electronics and Communications Lab, where students can conduct experiments and develop prototypes.
- Group Projects: Collaborative projects that encourage teamwork and problem-solving, simulating real-world engineering challenges.
- Internships: Opportunities for industry placements that provide valuable work experience and networking connections.
- Field Trips: Visits to engineering firms and technology companies, offering insights into industry practices and innovations.
- Software Tools: Proficiency in industry-standard software such as MATLAB, Simulink, and AutoCAD, which are integral to engineering design and analysis.
- Research Institutes: Collaboration with research centers like the Monash Institute of Medical Engineering, where students can engage in cutting-edge research projects.
- Library Resources: Access to extensive engineering resources and databases that support academic research and project work.

Embarking on this journey at Monash will not only equip you with the technical skills needed in the engineering world but also provide you with 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 Computer Systems Engineering at Monash University are equipped with advanced technical expertise and practical problem-solving skills that are highly sought after across a wide range of industries. With knowledge spanning electrical systems, computer engineering, embedded technologies, communications, and intelligent systems, graduates are well prepared to contribute to the development of innovative technologies that power modern society. Typical career pathways include Electrical Engineer, Computer Systems Engineer, Embedded Systems Engineer, Telecommunications Engineer, Control Systems Engineer, and Systems Integration Engineer.

This strong career outlook is supported by Monash University's commitment to employability, industry engagement, and professional development:

  • Career and Employability Support: Monash Career Connect provides personalised career advice, resume and interview workshops, networking events, mentoring programs, internship support, and access to graduate recruitment opportunities with leading employers.
  • Industry Partnerships: Students benefit from Monash’s extensive collaborations with multinational technology companies, engineering consultancies, telecommunications providers, energy organisations, and government agencies, creating opportunities for industry projects, placements, and professional networking.
  • Work-Integrated Learning: Through practical engineering projects, industry engagement activities, and professional experiences, students develop workplace-ready skills and gain exposure to real engineering environments before graduation.
  • Professional Accreditation: The program is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and are eligible for professional recognition in Australia and overseas through global engineering accords.
  • Strong Employment Demand: The increasing reliance on digital technologies, automation, telecommunications, renewable energy systems, and smart infrastructure continues to drive demand for electrical and computer systems engineers worldwide.
  • Research and Innovation Opportunities: Students gain exposure to emerging fields such as artificial intelligence, robotics, embedded systems, cybersecurity, advanced communications, smart grids, and intelligent automation technologies.
  • Graduate Outcomes: Graduates are employed across industries including technology, telecommunications, energy, defence, manufacturing, transportation, consulting, research, and infrastructure development, with opportunities to progress into specialist, leadership, and management roles.

Further Academic Progression:

Upon completing this degree, graduates may continue their studies through postgraduate programs such as a Master of Engineering, Master of Artificial Intelligence, Master of Data Science, Master of Cybersecurity, or related specialised engineering disciplines. Students interested in research can pursue a PhD in Electrical Engineering, Computer Systems Engineering, Robotics, Telecommunications, or Intelligent Systems. Professional certifications in project management, cloud computing, cybersecurity, embedded systems, automation, and systems engineering can further enhance career advancement and leadership opportunities.

Program Key Stats

$59,600
$9,000
$ 100
Rolling


No

Eligibility Criteria

BCC
3.0
30
80

1240
26
6.5
79
90.00

Additional Information & Requirements

Country Requirements

Career Options

  • electrical engineer
  • computer systems engineer
  • software engineer
  • control systems engineer
  • telecommunications engineer
  • power systems engineer
  • biomedical engineer
  • robotics engineer

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