5 Years On Campus Bachelors Program
The Bachelor of Engineering (Honours) (Electrical Engineering) / Bachelor of Engineering Science at the University of New South Wales (UNSW) is a comprehensive five-year dual degree designed for students who are passionate about technology, innovation, and advanced engineering problem-solving. By combining professional electrical engineering training with broader engineering science knowledge, this program equips graduates with the technical expertise, analytical skills, and multidisciplinary perspective needed to address complex engineering challenges across a range of industries.
Curriculum Structure:
Year 1 – Foundations of Engineering and Science
Students establish a strong foundation in mathematics, physics, programming, and engineering principles. Core courses such as Engineering Mechanics, Mathematics for Engineers, Physics, and introductory engineering design subjects develop analytical thinking, problem-solving abilities, and technical competencies essential for future study.
Year 2 – Core Electrical Engineering Principles
The curriculum advances into key engineering areas through subjects such as Electrical Circuits, Signals and Systems, Electronics, and Programming Fundamentals. Laboratory work and practical projects enable students to apply theoretical concepts while developing technical and teamwork skills.
Year 3 – Advanced Engineering Systems and Applications
Students deepen their expertise through courses including Electromagnetic Fields, Control Systems, Digital Systems, and communication technologies. This year emphasizes the integration of engineering theory with real-world applications, helping students develop advanced system analysis and design capabilities.
Year 4 – Engineering Science and Technical Specialisation
Students undertake advanced engineering science studies alongside specialized electrical engineering subjects such as Embedded Systems, Power Engineering, Communication Systems, and Renewable Energy Technologies. The interdisciplinary nature of the degree encourages students to explore innovative solutions across multiple engineering domains.
Year 5 – Professional Practice and Capstone Experience
The final year focuses on advanced electives and a major capstone project that integrates knowledge from both Electrical Engineering and Engineering Science. Students undertake courses such as Power Systems, Digital Signal Processing, and industry-focused engineering projects, allowing them to solve complex real-world challenges and prepare for professional practice.
Focus Areas:
Learning Outcomes:
Graduates will develop:
Professional Alignment (Accreditation):
The Electrical Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognized professional engineering standards and are prepared for engineering practice both in Australia and globally.
Reputation (Employability Rankings):
UNSW is internationally recognized for excellence in engineering, science, and technology education. Consistently ranked among the world's leading universities for engineering and graduate employability, UNSW provides students with access to world-class facilities, industry partnerships, research opportunities, and a global alumni network that supports outstanding career outcomes.
At the University of New South Wales (UNSW), students pursuing a Bachelor of Engineering (Honours) majoring in Electrical Engineering or a Bachelor of Engineering Science 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 tools that enhance the educational experience, allowing students to engage in hands-on projects and collaborative learning. This experiential learning approach not only deepens understanding but also prepares students for successful careers in engineering.
Here are some key aspects of the experiential learning opportunities available in these programs:
- Laboratories and Research Facilities: Access to specialized labs such as the Electrical Engineering Teaching Lab, the Power Electronics Lab, and the Communications Lab, where students can conduct experiments and work on projects using advanced equipment.
- Group Projects: Collaborative projects are a core component of the curriculum, encouraging teamwork and problem-solving skills. Students often work in groups to design and implement engineering solutions.
- Internships and Industry Partnerships: UNSW has strong connections with industry leaders, providing students with internship opportunities that offer valuable work experience and networking possibilities.
- Software and Digital Tools: Students gain proficiency in industry-standard software such as MATLAB, Simulink, and AutoCAD, which are essential for modeling, simulation, and design tasks in electrical engineering.
- Field Trips and Site Visits: The program includes field trips to local engineering firms and facilities, allowing students to see real-world applications of their studies and interact with professionals in the field.
- Research Institutes: Students have the opportunity to engage with research institutes such as the UNSW Centre for Energy and Environmental Markets, where they can participate in cutting-edge research projects.
- Libraries and Learning Resources: The UNSW library system provides extensive resources, including access to engineering journals, databases, and study spaces that support student learning and research.
Graduates of the Bachelor of Engineering (Honours) (Electrical Engineering) / Bachelor of Engineering Science from UNSW are equipped with a powerful combination of professional engineering expertise and multidisciplinary engineering science knowledge. This dual qualification prepares graduates to solve complex technical challenges, lead innovation, and contribute to the development of advanced technologies across a wide range of industries. With strong analytical, research, and practical engineering skills, graduates are highly sought after by employers in Australia and around the world.
Typical career pathways include: Electrical Engineer, Power Systems Engineer, Telecommunications Engineer, Control Systems Engineer, Embedded Systems Engineer, Renewable Energy Engineer, Systems Engineer, Project Engineer, Research Engineer, Engineering Consultant, and Technology Specialist.
This strong career outlook is supported by UNSW's global reputation and extensive industry engagement:
Further Academic Progression:
Upon completing this degree, graduates may pursue advanced postgraduate study through programs such as a Master of Engineering, Master of Engineering Science, Master of Renewable Energy, Master of Project Management, Master of Data Science, Master of Artificial Intelligence, Master of Information Technology, or Master of Business Administration (MBA). Students interested in research can continue into a Master of Philosophy (MPhil) or Doctor of Philosophy (PhD) in electrical engineering, telecommunications, power systems, control engineering, renewable energy, embedded systems, or related engineering disciplines. These pathways can lead to careers in academia, research leadership, advanced technology development, innovation management, consulting, and executive leadership within engineering and technology organizations.



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