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Fluid-structure interaction in the human upper airway

This project will apply state of the art experimental diagnostic methods to analyse fluid structure interaction in model reconstructions of the human upper airway. more...

Supervisor(s): Kourmatzis, Agisilaos (Dr)

Positive computing applications - human-computer interaction to change the world

Develop software applications that help people live healthier, happier, empowering lives. more...

Supervisor(s): Calvo, Rafael A. (Associate Professor)

Development of a CFD based numerical approach in predicting wind loads on structures

The purpose of this research is to identify alternative approaches to traditional wind tunnel based design procedure and improve the current design standards. more...

Supervisor(s): Mohotti, Damith (Dr)

Determining Value and Impact of the CPC through stakeholder analysis

The Charles Perkin Centre (CPC) officially launched in 2014 is the central hub and flagship of Sydney University to provide collaboration for interdisciplinary research amongst var more...

Supervisor(s): Chung, Kenneth (Dr)

Work, workplaces and people who stutter

Little is known about the choices people who stutter make about work and careers and how their stuttering influences their experiences of work. This research aims to explore the wor more...

Supervisor(s): Lincoln, Michelle (Professor), Cumming, Steven (Associate Professor), Bricker-Katz, Geraldine (Dr)

Modelling the hardening behaviour of Magnesium alloys using 3D disloation dynamic simulations

This project aims to develop a 3D dislocation dynamics model to understand the hardening mechanisms at play during the deformation alloys containing precipitates more...

Supervisor(s): Proust, Gwenaelle (Dr)

Nano-catalysts for carbon neutral futures: Conversion of CO2 into valuable chemicals

To investigate functionalized porous nano-composites for advanced physical and chemical processes to convert CO2 to valuable chemicals from theory and computations. more...

Supervisor(s): Stampfl, Catherine (Professor)

Quantum Control with Trapped Ions

This project aims to develop novel techniques for the control of quantum systems using trapped atomic ions. more...

Supervisor(s): Biercuk, Michael J. (Professor)

Designing new nano-structured materials for solar energy and health

While methods for making nanostructured materials are often slow or energy intensive, self-assembly of nanoscale objects promises to be scalable and low-energy and could thus propel more...

Supervisor(s): Widmer-Cooper, Asaph (Dr)