3 Years On Campus Bachelors Program
The Edith Cowan University Bachelor of Technology (Engineering) (Chemical) is designed to prepare students for technical and operational roles within the chemical, manufacturing, energy, and process industries through practical engineering and applied technology training. This program is ideal for students who enjoy hands-on problem-solving, industrial systems, sustainable processing, and applied engineering technologies in real-world industrial environments.
The program is delivered at the Joondalup Campus in Perth, Western Australia, where students gain access to engineering laboratories, technical workshops, digital engineering resources, and collaborative STEM learning facilities focused on applied engineering practice.
Curriculum Structure
Year 1
In the first year, students build foundational knowledge in engineering science, mathematics, chemistry, and technical problem-solving. You’ll study subjects such as Engineering Design and Professional Practice, Engineering Mathematics, and Engineering Mechanics, developing practical analytical and technical skills required for engineering technology environments. Students are introduced to engineering systems, sustainability principles, and industrial applications from the beginning of the program.
Year 2
Year 2 focuses on developing core chemical engineering technology capability through subjects including Fluid Mechanics, Thermodynamics, and Electrical Engineering Fundamentals. Students learn how industrial systems operate while applying scientific and engineering principles to process technologies and operational systems. Practical laboratory work and engineering analysis activities become increasingly important throughout this stage.
Year 3
In the final year, students study advanced applied engineering topics such as Heat and Mass Transfer, Process Control, and Chemical Process Engineering. Learning focuses on industrial process operations, systems optimisation, sustainability-focused engineering solutions, and professional engineering technology practice. Students also complete project-based learning activities reflecting real-world industrial and manufacturing challenges.
Focus Areas
Chemical process technology, industrial systems, process optimisation, sustainable manufacturing, thermodynamics, plant operations, engineering analysis, and industrial safety.
Learning Outcomes
Graduates develop the ability to apply engineering technology principles to industrial chemical processes, operational systems, and sustainability-focused manufacturing environments. You’ll gain strong technical, laboratory, analytical, and problem-solving skills suited to engineering technology and industrial operations careers.
Professional Alignment (Accreditation)
The program supports preparation for engineering technology and applied industrial practice within engineering and manufacturing sectors.
Reputation (Employability & Rankings)
Edith Cowan University is recognised for practical, industry-focused STEM education and strong graduate employability outcomes. ECU graduates are valued for their hands-on technical capability, applied engineering knowledge, and workplace readiness across industrial and engineering sectors.
At Edith Cowan University, the Bachelor of Technology (Engineering) (Chemical) focuses heavily on applied technical training, helping students build practical engineering technology skills through laboratory activities, engineering projects, and industrial systems analysis. At the Joondalup Campus in Perth, students learn in modern engineering facilities where they work with process systems, engineering technologies, and sustainability-focused industrial applications. The program is designed to prepare students for operational and technical engineering environments through practical, industry-oriented learning experiences:
These experiences help graduates develop strong operational, analytical, and technical engineering skills suited to engineering technology, manufacturing, and industrial process environments.
Graduates of the Edith Cowan University Bachelor of Technology (Engineering) (Chemical) are prepared for technical and operational careers within industries such as manufacturing, chemical processing, mining, energy, water treatment, and industrial production systems. The program develops strong applied engineering technology skills, practical problem-solving capability, and industry-focused technical knowledge suited to modern industrial environments.
Typical career pathways include engineering technologist, process operations specialist, production technologist, plant systems technician, and industrial process coordinator.
With strong practical and industry-oriented preparation:
Further Academic Progression:
After completing this degree, graduates may continue into advanced study such as a Bachelor of Engineering (Honours), Master of Engineering, Master of Project Management, or postgraduate engineering technology programs. These pathways can support progression into professional engineering roles, advanced technical specialisation, industrial leadership, or engineering consulting careers.



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