Bachelor of Engineering (Honours) Electrical & Aerospace/Bachelor of Science

5 Years On Campus Bachelors Program

Queensland University of Technology

Program Overview

The Bachelor of Engineering (Honours) (Electrical & Aerospace) and Bachelor of Science at Queensland University of Technology (QUT) is a comprehensive five-year dual degree program designed for students who are passionate about advanced technologies, aerospace innovation, and scientific discovery. By combining engineering expertise with scientific knowledge, this program prepares graduates to solve complex technical challenges across aerospace, aviation, energy, defence, and emerging technology industries.

Curriculum Structure

Year 1 – Foundations of Engineering and Science
Students begin by developing a strong foundation in mathematics, physics, engineering principles, and scientific inquiry. Core subjects such as Engineering Mechanics, Introduction to Programming, Calculus, Physics, and foundational science units introduce essential analytical and problem-solving skills. This year establishes the technical knowledge required for advanced engineering and scientific studies.

Year 2 – Core Electrical and Aerospace Engineering Concepts
The second year focuses on fundamental engineering systems and scientific applications. Students undertake subjects such as Electrical Circuits, Aerospace Systems, Engineering Design, Electronics, and Applied Mathematics. Laboratory work and practical projects provide opportunities to apply theoretical concepts while developing technical and experimental skills.

Year 3 – Advanced Systems and Industry Applications
Students progress into specialised areas including Control Systems, Aerospace Propulsion, Signals and Systems, Aerodynamics, and Instrumentation. Through collaborative projects and laboratory-based learning, students gain experience solving complex engineering problems while developing a deeper understanding of aerospace technologies and electrical systems.

Year 4 – Professional Engineering and Scientific Integration
The fourth year introduces advanced engineering applications in areas such as Aircraft Systems, Power Engineering, Communications Systems, Flight Technologies, and scientific research methods. Students work on multidisciplinary projects that strengthen teamwork, leadership, project management, and technical communication skills while addressing real-world engineering challenges.

Year 5 – Capstone Project and Specialisation
In the final year, students undertake a major capstone project that integrates their engineering and scientific knowledge to solve industry-relevant problems. Advanced subjects such as Advanced Electrical Engineering, Aerospace Design, Renewable Energy Systems, Autonomous Technologies, and specialised science electives allow students to tailor their studies to their career interests. This culminating experience demonstrates graduates' readiness for professional practice and innovation-driven careers.

Focus Areas

  • Electrical Engineering
  • Aerospace Systems and Technologies
  • Control and Instrumentation Systems
  • Aerospace Propulsion and Design
  • Scientific Research and Analysis
  • Emerging Engineering Technologies

Learning Outcomes

Graduates will develop:

  • Advanced electrical and aerospace engineering expertise
  • Strong scientific and analytical reasoning skills
  • Problem-solving and critical thinking capabilities
  • Technical proficiency in modern engineering technologies
  • Project management and teamwork competencies
  • Research and experimental design skills
  • Professional communication and leadership abilities

Professional Alignment (Accreditation)

The Bachelor of Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and are eligible for professional engineering pathways in Australia and internationally.

Reputation and Employability

Queensland University of Technology (QUT) is recognised for its strong industry engagement, real-world learning approach, and graduate employability outcomes. The combination of engineering and science expertise positions graduates for careers across aerospace, aviation, defence, renewable energy, power systems, advanced manufacturing, research and development, government agencies, and technology consulting, making them highly attractive to employers both in Australia and globally.

Experiential Learning (Research, Projects, Internships etc.)

At Queensland University of Technology (QUT), students in the Bachelor of Engineering (Honours) Electrical & Aerospace and Bachelor of Science programs 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 successful careers in their chosen fields. With state-of-the-art facilities and cutting-edge tools, students can engage in projects that mirror industry standards and expectations.

Here’s how QUT enhances experiential learning for these programs:

- Engineering and Science Precinct: Access to advanced laboratories equipped with the latest technology for electrical and aerospace engineering, including wind tunnels and robotics labs.
- Industry Partnerships: Collaborations with leading companies provide opportunities for internships and real-world projects, allowing students to apply their knowledge in professional settings.
- Software Proficiency: Students gain experience with industry-standard software such as MATLAB, SolidWorks, and ANSYS, which are essential for engineering design and analysis.
- Group Projects: Collaborative projects are a key component of the curriculum, fostering teamwork and communication skills while tackling real engineering challenges.
- Field Trips: Regular excursions to industry sites and research facilities help students understand the practical applications of their studies and connect with professionals in the field.
- Research Opportunities: Access to dedicated research institutes and labs, where students can work alongside faculty on innovative projects in electrical and aerospace engineering.
- Library Resources: QUT’s extensive library system offers a wealth of resources, including access to specialized journals and databases relevant to engineering and science.

These experiential learning opportunities not only enhance academic knowledge but also build essential skills that employers value. By choosing QUT, you’re setting yourself up for a successful future in engineering and science.

 

Progression & Future Opportunities

Graduates of the Bachelor of Engineering (Honours) (Electrical and Aerospace) and Bachelor of Science at Queensland University of Technology (QUT) are equipped with a unique blend of engineering expertise, scientific knowledge, and analytical skills that are highly valued in advanced technology industries. This dual degree prepares graduates to contribute to cutting-edge developments in aerospace systems, electrical infrastructure, aviation technologies, defence, renewable energy, and scientific research. Typical career outcomes include Aerospace Engineer, Electrical Engineer, Avionics Engineer, Systems Engineer, Research Scientist, and Defence Technology Specialist.

This strong career foundation is supported by:

  • Career support and employability services: QUT's Careers and Employability team provides students with career planning assistance, resume and interview workshops, employer networking events, career fairs, mentoring opportunities, and access to employment resources designed to support successful graduate outcomes.
  • Graduate employability and industry reputation: QUT is widely recognised for its strong focus on real-world learning and industry engagement. Through practical learning experiences and professional development opportunities, graduates develop the technical and professional skills employers seek across engineering, science, and technology sectors.
  • Industry partnerships and real-world experience: QUT maintains strong partnerships with organisations across the aerospace, aviation, engineering, defence, technology, and research sectors. These collaborations provide opportunities for industry projects, internships, professional placements, guest lectures, and exposure to real-world engineering challenges.
  • Access to advanced facilities and technology: Students gain practical experience through specialist engineering laboratories, aerospace testing facilities, simulation environments, robotics laboratories, research centres, and industry-standard software used throughout the engineering profession.
  • Long-term accreditation value: The Bachelor of Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognised engineering standards and supporting pathways to Chartered Professional Engineer status in Australia and internationally through the Washington Accord.
  • Graduation outcomes: Graduates are employed across sectors including aerospace and aviation, defence, renewable energy, power generation, telecommunications, advanced manufacturing, research and development, government agencies, transport systems, and technology consulting. Their combined engineering and science expertise enables them to contribute to innovation, research, and technological advancement in highly specialised industries.

Further Academic Progression:

After completing this dual degree, graduates may pursue postgraduate qualifications in areas such as Aerospace Engineering, Electrical Engineering, Avionics Systems, Space Technology, Renewable Energy Engineering, Data Science, Artificial Intelligence, Systems Engineering, Engineering Management, or Applied Science. Students interested in research can continue into Master of Philosophy (MPhil), Master's by Research, or Doctor of Philosophy (PhD) programs, leading to careers in advanced research, academia, defence innovation, aerospace development, and leadership roles within global engineering organisations.

Program Key Stats

$47,500
$8,500

Febr Intake : 30th NovJuly Intake : 30th Apr


44 %
No
Yes

Eligibility Criteria

CCD
3.0
28
60

980
24
6.5
79
84.00

Additional Information & Requirements

Country Requirements

Career Options

  • Electrical Engineer
  • Renewable Energy Engineer
  • Power Systems Engineer
  • Energy Systems Analyst
  • Smart Grid Engineer
  • Electrical Design Engineer
  • Power Generation Engineer
  • Solar Energy Engineer
  • Wind Energy Engineer
  • Control Systems Engineer
  • Energy Consultant
  • Grid Integration Engineer
  • Sustainability Engineer
  • Project Engineer
  • Renewable Power Systems Specialist

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