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
ARC Research Network for Advanced Materials. Materials science/engineering is decidedly interdisciplinary, covering all science and impacting on all manufacturing industry. This network will promote interactions that do not usually occur between materials researchers and students across Australia and internationally from diverse disciplines. The scope is broadly based on advanced materials production, processing and properties but focused in four areas, involving: i) innovative structural/functi ....ARC Research Network for Advanced Materials. Materials science/engineering is decidedly interdisciplinary, covering all science and impacting on all manufacturing industry. This network will promote interactions that do not usually occur between materials researchers and students across Australia and internationally from diverse disciplines. The scope is broadly based on advanced materials production, processing and properties but focused in four areas, involving: i) innovative structural/functional materials, ii) high-tech IT/communications/sensing materials, iii) materials solutions for manufacturing, iv) materials for a sustainable Australia, and v) emerging materials technologies. Key programs will promote interdisciplinary workshops and early career researcher interactions.Read moreRead less
ARC Nanotechnology Research Network. The field of nano scale science, engineering and technology (in short nanotechnology) is just emerging and it is predicted to make a major impact in all technologies and areas of society. Australian Nanotechnology Network intends to harness the combined Australian capability to enable Australia to take a leading role in this rapidly growing field.
Special Research Initiatives - Grant ID: SR0354623
Funder
Australian Research Council
Funding Amount
$20,000.00
Summary
Network for Australian security technologies integration. The frontline of community safety is security technologies which include sensors to track movements and conversations of suspects; signal processing techniques for extracting information; intelligent search/audit techniques to track financial transactions; analysis techniques for predicting the spread of epidemic; and above all human factors in security operations. The aim of this initiative is to establish a network for "safeguarding Aus ....Network for Australian security technologies integration. The frontline of community safety is security technologies which include sensors to track movements and conversations of suspects; signal processing techniques for extracting information; intelligent search/audit techniques to track financial transactions; analysis techniques for predicting the spread of epidemic; and above all human factors in security operations. The aim of this initiative is to establish a network for "safeguarding Australia". This network, built on the concept of "network of networks", draws on the expertise of researchers and practitioners from diverse fields to provide an integrated approach towards development and use of security technologies for the safety of the community.Read moreRead less
Role of Reactive Particles in Explosive Emulsions. Concentrated water-in oil explosive emulsions are widely used in the minerals industry because they are cheap, easily detonated and relatively safe to handle. Their explosive energy can be significantly increased when reactive particles are introduced into the emulsion matrix. To do this, the interaction between the solid, oil, and water phases needs to be optimised. This investigation will increase our basic understanding of the physical and ch ....Role of Reactive Particles in Explosive Emulsions. Concentrated water-in oil explosive emulsions are widely used in the minerals industry because they are cheap, easily detonated and relatively safe to handle. Their explosive energy can be significantly increased when reactive particles are introduced into the emulsion matrix. To do this, the interaction between the solid, oil, and water phases needs to be optimised. This investigation will increase our basic understanding of the physical and chemical interactions that occur between the particle and the oil-water interface, and develop a more efficient explosive that can be produced continuously on a commercial scale.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE100100001
Funder
Australian Research Council
Funding Amount
$360,000.00
Summary
An advanced thermogravimetric analysis system for world-leading research in clean energy, catalysis, material science and nanotechnology. Many chemical reactions occurring in solid materials during heating significantly affect the materials' stability, and subsequently affects the processes of production of clean energy, material synthesis, catalyst preparation, and nanotechnology. No equipment currently exists in Australia that will mitigate the wide range of conditions in such reactions in ma ....An advanced thermogravimetric analysis system for world-leading research in clean energy, catalysis, material science and nanotechnology. Many chemical reactions occurring in solid materials during heating significantly affect the materials' stability, and subsequently affects the processes of production of clean energy, material synthesis, catalyst preparation, and nanotechnology. No equipment currently exists in Australia that will mitigate the wide range of conditions in such reactions in materials processing. This situation impedes research progress in Australia, disadvantages Australian research students, and ultimately makes our research less competitive internationally. The establishment of the proposed apparatus will increase the competitiveness of Australian science and engineering, and contribute to the development of new Australian technologies that are important to the Australian economy and to environmental sustainability.Read moreRead less
The Identification and Development of Strategies for Increasing Engineering Enrolments. There is a continuing nation-wide decline in high school student enrolment in higher level mathematics and science. This is already leading to a reduction in the number of students undertaking university engineering programs in Australia and the situation is expected to worsen. This project is directed toward a better understanding of the reasons for the trend and the development of strategies to reverse it. ....The Identification and Development of Strategies for Increasing Engineering Enrolments. There is a continuing nation-wide decline in high school student enrolment in higher level mathematics and science. This is already leading to a reduction in the number of students undertaking university engineering programs in Australia and the situation is expected to worsen. This project is directed toward a better understanding of the reasons for the trend and the development of strategies to reverse it. It aims to 1. Evaluate the most effective strategies that increase student's interests and understanding of engineering and increase participation in engineering studies. 2. Develop an optimised national communication strategy for promoting engineering studies to secondary students.Read moreRead less
Benign fabrication of microfluidic hydrogel for improved artificial vasculature in bone implants. We will create a benign technology for synthesising microfluidic hydrogels to generate artificial vascultures in bone implants. It is a critical step to enable the use of tissue-engineered vital organs, such as bone, heart and kidney in patients with end-stage organ failure. Thicker scaffolds will be possible, as the vasculature will provide nutrients and oxygen for cells to grow into 3D scaffolds. ....Benign fabrication of microfluidic hydrogel for improved artificial vasculature in bone implants. We will create a benign technology for synthesising microfluidic hydrogels to generate artificial vascultures in bone implants. It is a critical step to enable the use of tissue-engineered vital organs, such as bone, heart and kidney in patients with end-stage organ failure. Thicker scaffolds will be possible, as the vasculature will provide nutrients and oxygen for cells to grow into 3D scaffolds. It will promote capacity of Australia for manufacturing global biomaterial products for tissue engineering. We will also develop in-situ imaging analytical protocols for the rapid analysis of broad arrays of functional molecules, with significant bearing on BioMEMS design to develop methods for diagnosis of fatal diseases.Read moreRead less