Your Search Results

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)

Optimisation of droplet roll-off on patterned surfaces

Investigation through molecular dynamics simulations the surface features that optimise the detachment and roll-off of liquid droplets. more...

Supervisor(s): Neto, Chiara (Professor)

The DNA replication stress response

Genome integrity in human cells is maintained through the coordinated functions of the DNA damage response. We study these processes with particular interest in the pathways that re more...

Supervisor(s): Cesare, Tony (Dr)

The influence of microbial interactions on mushroom production

Mushrooms are an economically important food source with an annual retail value in Australia of almost $700 million. Although edible fungi have been grown for many years, knowledge more...

Supervisor(s): Kertesz, Michael (Associate Professor)

Faraday Rotation in Organic Semiconductors

Society's over-reliance on information exchange around the world hinges critically on ultrafast data communication using light signals.  Modern optical data communication works more...

Supervisor(s): Lakhwani, Girish (Dr)

Atomic structure, assembly, interactions and engineering of functional amyloids

This project aims to engineer hydrophobins for a range of biotechnological applications from coating of medical implants to formulation of drug delivery vehicles. The work includes more...

Supervisor(s): Kwan, Ann (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)

Dynamic Responses of Granular Materials to Impact Loading

This project aims to experimentally investigate the dynamic responses of granular materials to high strain rates loading using split Hopkinson bar. The experimental data will be use more...

Supervisor(s): Shen, Luming (Associate 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)