The trailblazing women and the law project. The trailblazing women and the law project will create, showcase and analyse the first publicly accessible, national, oral history of seven decades of Australia’s pioneer women lawyers contributing to the fields of gender, oral history, biography, law, citizenship, social networks, cultural informatics, ePublication and women’s history archiving.
Curating Photography in the Age of Photo Sharing. This project aims to develop new curatorial models to enable Australian art galleries to respond effectively to changes in the medium of photography wrought by digital technologies. By conducting the first comprehensive analysis of nearly five decades of Australian photography curating and comparing it to curatorial approaches in related institutions locally and internationally, the project seeks to: identify the crucial role of photography exhib ....Curating Photography in the Age of Photo Sharing. This project aims to develop new curatorial models to enable Australian art galleries to respond effectively to changes in the medium of photography wrought by digital technologies. By conducting the first comprehensive analysis of nearly five decades of Australian photography curating and comparing it to curatorial approaches in related institutions locally and internationally, the project seeks to: identify the crucial role of photography exhibitions in the shaping of Australian visual culture; and develop opportunities for curators to better engage with the current proliferation of images, including new forms and practices of photography enabled by the Internet.Read moreRead less
International Operations and the Australian Federal Police: Devising a legal framework. As a major player in the maintenance of regional peace and security, Australia is increasingly using Australian Federation Police (AFP) in a range of international operations. The extent of deployments and the expectations both governments and communities place on these operations is unprecedented. This project, in collaboration with the AFP, will draw upon recent experiences to provide a clear legal framewo ....International Operations and the Australian Federal Police: Devising a legal framework. As a major player in the maintenance of regional peace and security, Australia is increasingly using Australian Federation Police (AFP) in a range of international operations. The extent of deployments and the expectations both governments and communities place on these operations is unprecedented. This project, in collaboration with the AFP, will draw upon recent experiences to provide a clear legal framework, advancing the capacity for AFP deployments to maintain their high commitment to the rule of law. The project is of international significance and will consolidate Australia's reputation as innovative and influential in the planning, management and conduct of police in international operations. Read moreRead less
Optimising illicit dark net marketplace interventions. Optimising illicit dark net marketplace interventions. This project aims to develop and test a series of interventions to disrupt identify theft activities, and design an operational risk framework that will aid law enforcement agencies and organisations to timely and appropriately intervene in cyber space. The buying and selling of identity credentials via dark net forums is a significant and growing problem. This research— based on systems ....Optimising illicit dark net marketplace interventions. Optimising illicit dark net marketplace interventions. This project aims to develop and test a series of interventions to disrupt identify theft activities, and design an operational risk framework that will aid law enforcement agencies and organisations to timely and appropriately intervene in cyber space. The buying and selling of identity credentials via dark net forums is a significant and growing problem. This research— based on systems analyses of dark net forums, and bringing together researchers, practitioners, theories and methods from human factors, sociotechnical systems, criminology, and cyber security—is expected to increase understanding of the dark net and improve ways of disrupting identity theft and trading.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE170100087
Funder
Australian Research Council
Funding Amount
$1,100,000.00
Summary
Plasma-focused ion beam for nanoscale characterisation of materials. This project aims to enable research programmes in functional materials to characterise materials using xenon-plasma focused ion beam (FIB) instrumentation. The plasma FIB, with its fast milling speeds across large areas, will enable new three-dimensional imaging experiments and types of transmission electron microscopy samples. This will have applications in engineering, photovoltaics and environmental geosciences, which all n ....Plasma-focused ion beam for nanoscale characterisation of materials. This project aims to enable research programmes in functional materials to characterise materials using xenon-plasma focused ion beam (FIB) instrumentation. The plasma FIB, with its fast milling speeds across large areas, will enable new three-dimensional imaging experiments and types of transmission electron microscopy samples. This will have applications in engineering, photovoltaics and environmental geosciences, which all need to analyse materials on a nanometre scale.Read moreRead less
Establishing nanoscale design principles for non-viral genome engineering. This project aims to develop a bio-nanotechnology platform for non-viral genome engineering using dendronised polymers. The project will advance both fundamental and practical knowledge at the forefront of nanotechnology and cell biology, whilst providing training to the research community. Outcomes from the project will also provide significant benefits, such as positioning Australia at the forefront of genome engineerin ....Establishing nanoscale design principles for non-viral genome engineering. This project aims to develop a bio-nanotechnology platform for non-viral genome engineering using dendronised polymers. The project will advance both fundamental and practical knowledge at the forefront of nanotechnology and cell biology, whilst providing training to the research community. Outcomes from the project will also provide significant benefits, such as positioning Australia at the forefront of genome engineering.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE210100156
Funder
Australian Research Council
Funding Amount
$289,500.00
Summary
3D Two-Photon Nanoprinter for Advanced Multi-Functional Materials & Devices. The Nanoscribe Photonic Professional GT2 Two-Photon 3D Printer enables tailoring materials’ architecture at nanoscale. This results in unique optical, mechanical, electrical, chemical, biochemical, and acoustic properties enabling a wealth of cutting-edge research activities in variety of fields including mechanical/optical/electrical metamaterials, bioinspired hard/soft materials, biomaterials (e.g., structured cell-ti ....3D Two-Photon Nanoprinter for Advanced Multi-Functional Materials & Devices. The Nanoscribe Photonic Professional GT2 Two-Photon 3D Printer enables tailoring materials’ architecture at nanoscale. This results in unique optical, mechanical, electrical, chemical, biochemical, and acoustic properties enabling a wealth of cutting-edge research activities in variety of fields including mechanical/optical/electrical metamaterials, bioinspired hard/soft materials, biomaterials (e.g., structured cell-tissue interfaces), biomedical devices (implantable devices and drug-delivery systems), nanofluidics, and photonic crystals. In each of these fields, we will use GT2 to print variety of polymers, hydrogels, metals and ceramics, for example by printing polymer-derived nanoceramics that will be simultaneously strong and tough.Read moreRead less
ARC Centre of Excellence for Integrative Brain Function. The Centre of Excellence for Integrative Brain Function will address one of the greatest scientific challenges of the 21st century to understand how the brain works. We will investigate complex functions such as attention, prediction and decision-making, which require the coordination of information processing by many areas of the brain. This will require a highly collaborative approach involving neurobiologists, cognitive scientists, eng ....ARC Centre of Excellence for Integrative Brain Function. The Centre of Excellence for Integrative Brain Function will address one of the greatest scientific challenges of the 21st century to understand how the brain works. We will investigate complex functions such as attention, prediction and decision-making, which require the coordination of information processing by many areas of the brain. This will require a highly collaborative approach involving neurobiologists, cognitive scientists, engineers and physicists, allowing us to translate our discoveries into novel technologies for the social and economic benefit of all Australians. We will also train a new generation of multidisciplinary researchers, and contribute our expertise to a range of public education and awareness programs.Read moreRead less
Ultra-fast alchemy: a new strategy to synthesise super-dense nanomaterials. We have recently created a new super-dense aluminium phase by ultrafast laser microexplosion. This project will search further for new super-dense material phases with drastically different and exotic properties, such as those inside planets and stars, and which have great potential as new nanomaterials for industrial applications.
ARC Centre of Excellence for Electromaterials Science. The ARC Centre of Excellence for Electromaterials Science (ACES) will create next generation electrochemical devices via the precision assembly of nano/micro dimensional components into macroscopic structures. Through the discovery of new materials and structures, and understanding how spatial arrangement in 3D influences chemical, physical and biological properties, ACES will define the cutting edge of Electromaterials Science. The resultin ....ARC Centre of Excellence for Electromaterials Science. The ARC Centre of Excellence for Electromaterials Science (ACES) will create next generation electrochemical devices via the precision assembly of nano/micro dimensional components into macroscopic structures. Through the discovery of new materials and structures, and understanding how spatial arrangement in 3D influences chemical, physical and biological properties, ACES will define the cutting edge of Electromaterials Science. The resulting technology breakthroughs will have a direct impact on some of today's most challenging global problems in clean energy, synthetic biosystems, diagnostics and soft robotics. National benefit to Australia will be realised through the creation of new manufacturing industries.Read moreRead less