Courses outlined here for Parts II, III and IV of the Biomedical Engineering specialisation are being taught in 2025.
Please note:
Mechanics of Engineered and Biological Materials
Biology for Biomedical Science: Cellular Processes and Development
Mathematical Modelling 2
Computational Techniques and Computer Systems
Instrumentation and Design
Tissue and Biomolecular Engineering
Professional Skills, Communication, and Collaboration
Biology for Biomedical Science: Organ Systems
Continuum Modelling in Bioengineering
Bioinstumentation and Design
Innovation and Business Cases
The Physiology of Human Organ Systems
Mathematical Modelling 3ES
Computational Techniques 2
Biophysics of Nerve and Muscle
Materials Chemistry
Simulation Modelling for Process Design
Optimisation in Operations Research
Design of Real-Time Software
Pharmacokinetics and Drug Toxicity
Issues in Drug Design and Development
Microcomputers and Embedded Systems
Image and Digital Signal Processing
Computational Design for Physical Systems
Biomechanics 2
Methods in Applied Mathematics
Manufacturing Systems
Digital Circuit Design
Neuroendocrinology of Growth and Metabolism
Immunology
Advanced Biomedical Engineering Design
Research Project
Industrial Materials Engineering
Biological Materials and Biomaterials
Modern Control Systems
Digital Signal Processing
Advanced Mathematical Modelling
Computational Algorithms for Signal Processing
Computational Engineering for Physical Systems
Composite Materials
Advanced Biomedical Imaging
Musculoskeletal and Orthopaedic Biomechanics
Engineering Biotechnology
Formal Methods for Safety Critical Software
Mathematical Modelling
BIomedical MRI