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Graphene: a journey of appreciation and exploration via computational simulations

This project aims to study several graphene-based nanostructures including nanoribbon, nanodots and nanoantidots and their optical, electrical and magnetic properties by first princ more...

Supervisor(s): Zheng, Rongkun (Associate Professor)

Molecular dynamics simulations of ion channels and transporters

Understanding the function of ion channels and transporters using molecular dynamics simulations more...

Supervisor(s): Kuyucak, Serdar (Associate Professor)

Novel Properties of Semiconductor Nanostructures by Strain Engineering

This project aims to understand the novel properties of nanostructured semiconductors under strain by advanced characterisations and simulations. more...

Supervisor(s): Zheng, Rongkun (Associate Professor)

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)

Computational investigation of high affinity ligand binding to proteins

Design of high-affinity ligands for protein targets using docking, molecular dynamics simulations and quantitative structure-activity relations. more...

Supervisor(s): Kuyucak, Serdar (Associate Professor)

Energy Market Risk Management and Planning

The national energy market, mainly electricity and gas markets, in Australia is operated under a single market operator.  The electricity market represents the deregulated powe more...

Supervisor(s): Hill, David John (Professor)

Computational study of the structure and dynamics of supercooled liquids

Amorphous or glassy solids represent one of the last great challenges for materials science, chemical physics and condensed matter physics. These important materials present us with more...

Supervisor(s): Harrowell, Peter (Professor), Hudson, Toby (Dr)

Damage, fracture and fragmentation of concrete at high strain rates

The project aims to characterize and model concrete at high strain rates, and to study the damage, fracture and fragmentation of concrete subjected to high rate loads through an int more...

Supervisor(s): Shen, Luming (Associate Professor)

Dynamic deformation of polycrystalline metals under impact

The project aims to develop a physics-based crystal plasticity model for predicting the dynamic deformation of polycrystalline metals under the high-strain-rate and shock loading co more...

Supervisor(s): Shen, Luming (Associate Professor)

Particle Physics with the ATLAS Detector at CERN’s Large Hadron Collider

This project provides the opportunity to join the global effort to search for physics beyond the Standard Model of Particle Physics using data from the ATLAS Experiment at CERN&rsqu more...

Supervisor(s): Varvell, Kevin (Professor)