Australia's Nuclear Choices. Australia's nuclear choices will be made in the context of a challenging and fluid international strategic environment characterised in Australia's immediate region by heightened global concerns regarding such transnational dilemmas as terrorism, energy security and nuclear proliferation. This project, through exploring the nature, evolution and consequences of contemporary strategic, military and civil nuclear developments impacting on the international non-prolifer ....Australia's Nuclear Choices. Australia's nuclear choices will be made in the context of a challenging and fluid international strategic environment characterised in Australia's immediate region by heightened global concerns regarding such transnational dilemmas as terrorism, energy security and nuclear proliferation. This project, through exploring the nature, evolution and consequences of contemporary strategic, military and civil nuclear developments impacting on the international non-proliferation regime will enable Australian policy-makers to better calibrate the costs and benefits of potential policy changes across these strategic, regime and market realms of Australia's nuclear interests.Read moreRead less
Global Security, Strategic Paradox and Limited War: The Politics and Ethics of Force. This project will provide detailed empirical research results plus conceptual innovations in the areas of peace and conflict studies. These will contribute to better understanding of contemporary threats and the effects of using force, and will enable the development of more effective policy options. The project will contribute strongly to the ARC's research priority 4, 'safeguarding Australia', by providing im ....Global Security, Strategic Paradox and Limited War: The Politics and Ethics of Force. This project will provide detailed empirical research results plus conceptual innovations in the areas of peace and conflict studies. These will contribute to better understanding of contemporary threats and the effects of using force, and will enable the development of more effective policy options. The project will contribute strongly to the ARC's research priority 4, 'safeguarding Australia', by providing important studies, analytical tools and policy recommendations that will strengthen Australia's national security, contribute to reducing conflict, and help us shape the regional and global security environment in our interests.Read moreRead less
Discipline, Morale and Winning Wars: Understanding the Relationships Between Discipline and Combat Performance in Low-Intensity Conflict. Discipline and morale are key elements in combat performance, particularly in Low-Intensity Conflict (LIC). This project examines the relationships between discipline, morale and combat performance using the Australian Army in Vietnam as a case study. It provides insights into better understanding and managing discipline and morale to produce and sustain comba ....Discipline, Morale and Winning Wars: Understanding the Relationships Between Discipline and Combat Performance in Low-Intensity Conflict. Discipline and morale are key elements in combat performance, particularly in Low-Intensity Conflict (LIC). This project examines the relationships between discipline, morale and combat performance using the Australian Army in Vietnam as a case study. It provides insights into better understanding and managing discipline and morale to produce and sustain combat performance. It assists the Army to avoid the negative effects of failures in discipline and morale that produced the My Lai massacre and the Abu Ghraib fiasco. It also helps position Australia internationally as a contributor to the better understanding of LIC, and fills a gap in Australian historiography of war.Read moreRead less
Understanding Low-Intensity Conflict. Since 1945, Low-Intensity Conflict (LIC) has become the dominant form of warfare. Conventional armies have a poor record of success in fighting LIC. This project uses the records of the Australian Army's operations in the Vietnam War to better understand it's operational performance there and to unearth insights into the conduct of LIC. The project has the potential to reduce casualties, both military and civilian, and assist the Army in selecting new war-fi ....Understanding Low-Intensity Conflict. Since 1945, Low-Intensity Conflict (LIC) has become the dominant form of warfare. Conventional armies have a poor record of success in fighting LIC. This project uses the records of the Australian Army's operations in the Vietnam War to better understand it's operational performance there and to unearth insights into the conduct of LIC. The project has the potential to reduce casualties, both military and civilian, and assist the Army in selecting new war-fighting technologies, designing training and developing doctrine for future LIC. The project will raise Australia's profile in theorising about this troubling but increasingly common form of warfare.Read moreRead less
From Emergence to Demise: Examining the Dynamic Life Cycle of Terrorist Campaigns. Australia has made a long term commitment to the global campaign against terrorism, under the sound premise that it will take a persistent investment of energy and resources to succeed, and the notion that success in this struggle will be contingent on the depth of our knowledge about the nature of the threat. This project will contribute to this effort by enhancing global understanding of the different stages of ....From Emergence to Demise: Examining the Dynamic Life Cycle of Terrorist Campaigns. Australia has made a long term commitment to the global campaign against terrorism, under the sound premise that it will take a persistent investment of energy and resources to succeed, and the notion that success in this struggle will be contingent on the depth of our knowledge about the nature of the threat. This project will contribute to this effort by enhancing global understanding of the different stages of the dynamic life cycle of terrorist campaigns, and by formulating empirically based policy recommendations that will move beyond flawed quick-fix solutions, toward the building of a consistent long-term incremental strategy for managing a threat that will never fully disappear.Read moreRead less
Lattice Boltzmann method based simulation of complex microchannels and mixing at micro-scales. The proposed study explores fundamental aspects of microfluidics using new tools, which will enhance the country's database of knowledge. It will lead to the development of a low-cost versatile software package, an important tool for solving microfluidics problems of interest to industries and academics, and will facilitate development and optimization of future microdevices. Further, it will improve A ....Lattice Boltzmann method based simulation of complex microchannels and mixing at micro-scales. The proposed study explores fundamental aspects of microfluidics using new tools, which will enhance the country's database of knowledge. It will lead to the development of a low-cost versatile software package, an important tool for solving microfluidics problems of interest to industries and academics, and will facilitate development and optimization of future microdevices. Further, it will improve Australia's competitiveness in the areas of LBM and MEMS both of which are new techniques with promising applications in their respective areas. The project falls under the National Research Priorities areas of Breakthrough Science and Frontier Technology. The potential applications of the technology encompass several key areas.Read moreRead less
Flotation separation of nanoparticles. This project deals with the separation of fine nanoparticles suspended in water, by attachment to small gas bubbles. It aims to find a way of removing nanoparticles from water, or of separating one species from another. The process could be used for simple solids such as metal oxides, and for biological materials such as large molecules, viruses and small bacteria. The work will be both theoretical and experimental. This ground-breaking project will build u ....Flotation separation of nanoparticles. This project deals with the separation of fine nanoparticles suspended in water, by attachment to small gas bubbles. It aims to find a way of removing nanoparticles from water, or of separating one species from another. The process could be used for simple solids such as metal oxides, and for biological materials such as large molecules, viruses and small bacteria. The work will be both theoretical and experimental. This ground-breaking project will build upon past successes of the applicant, whose invention in the field of resource recovery is contributing close to $1 billion a year to Australia's exports.Read moreRead less
Biomolecular surface interactions with smart biomaterials. Current materials used for medical implants are often recognised by the body as foreign materials causing implant rejection or encapsulation. Research into the interactions between biological molecules and chemically and topographically modified materials will aid in the development of new materials and devices that optimise the body's response to the implanted material. The new materials and surfaces developed from this research will pr ....Biomolecular surface interactions with smart biomaterials. Current materials used for medical implants are often recognised by the body as foreign materials causing implant rejection or encapsulation. Research into the interactions between biological molecules and chemically and topographically modified materials will aid in the development of new materials and devices that optimise the body's response to the implanted material. The new materials and surfaces developed from this research will provide longer lasting implants and reduce the need for repeated operations. This will improve the quality of life for implant recipients and reduce health care costs.Read moreRead less
Development of High Performance Nanocomposite Filtration Membranes: Fabrication and Fouling Mechanisms. This project will develop high performance membranes for the filtration of water and wastewater using novel nanotechnology processes. This will reduce the costs and environmental impact of water treatment and risk from low-level chemical contaminants such as micropollutants. The project will also provide an enhanced technology base for producing low cost, hybrid inorganic-organic materials fo ....Development of High Performance Nanocomposite Filtration Membranes: Fabrication and Fouling Mechanisms. This project will develop high performance membranes for the filtration of water and wastewater using novel nanotechnology processes. This will reduce the costs and environmental impact of water treatment and risk from low-level chemical contaminants such as micropollutants. The project will also provide an enhanced technology base for producing low cost, hybrid inorganic-organic materials for widespread environmental, agricultural and food applications.Read moreRead less
Microfluidic photonic systems. Australia is set to reap commercial benefits nationally and internationally from new developments in the highly competitive domain of microtechnology. In this project, a group of Australia's leading researchers propose an innovative combination of two exciting fields of scientific research. Microfluidics is the manipulation of minute quantities of liquids in microscopic channels, while photonics is the generation, transmission, detection and analysis of light as a ....Microfluidic photonic systems. Australia is set to reap commercial benefits nationally and internationally from new developments in the highly competitive domain of microtechnology. In this project, a group of Australia's leading researchers propose an innovative combination of two exciting fields of scientific research. Microfluidics is the manipulation of minute quantities of liquids in microscopic channels, while photonics is the generation, transmission, detection and analysis of light as a means to convey, collect and process information. The marriage of these two fields promises the development of novel, high performance tunable devices for sensing, biotechnology and telecommunications.Read moreRead less