Health insurance design: choices, consumer behavior and policy challenges . Rising health costs is a global challenge. Creating an efficient health insurance system is a key policy concern in all developed countries. This project aims to study choices, consumer behaviors, and policy challenges in two health insurance markets: Australian private health insurance (PHI) and US Medicare prescription drug insurance.
Expected outcomes include new evidence needed to develop a new framework for PHI, ne ....Health insurance design: choices, consumer behavior and policy challenges . Rising health costs is a global challenge. Creating an efficient health insurance system is a key policy concern in all developed countries. This project aims to study choices, consumer behaviors, and policy challenges in two health insurance markets: Australian private health insurance (PHI) and US Medicare prescription drug insurance.
Expected outcomes include new evidence needed to develop a new framework for PHI, new knowledge on how consumers respond to complex pricing structures, and new policy proposals to improve the overall efficiency of the health system. The research will benefit the re-design of PHI and the health system to improve Australians’ health while saving health costs.
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Early Career Industry Fellowships - Grant ID: IE230100048
Funder
Australian Research Council
Funding Amount
$466,097.00
Summary
Ammonium-selective membranes to shift water industry into circular economy. The project aims to develop ammonium-selective membranes which are urgently needed in Australian key industries for sustainable ammonia recovery. The project expects to construct the membranes to achieve desirable pore size and surface functionality for fast and selective ammonia transport. The developed membranes should make ammonia recovery from wastewater more effective and sustainable, leading to the healthy waterway ....Ammonium-selective membranes to shift water industry into circular economy. The project aims to develop ammonium-selective membranes which are urgently needed in Australian key industries for sustainable ammonia recovery. The project expects to construct the membranes to achieve desirable pore size and surface functionality for fast and selective ammonia transport. The developed membranes should make ammonia recovery from wastewater more effective and sustainable, leading to the healthy waterway and reduced energy for both ammonia production and removal. Recovered ammonia expects to produce valuable products, supporting agriculture industry and hydrogen economy. The developed membranes should enable water industry's shift into circular economy, providing significant economic and environmental benefits to Australia.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE170101183
Funder
Australian Research Council
Funding Amount
$322,404.00
Summary
Information sharing in networks and the allocation of medical appointments. The project aims to research social networks and the normative allocation of invisible goods. It will study information sharing in social networks and the allocation of consultant led appointments to patients. This project is intended to benefit society, public policy and health by showing how social networks’ design options affect users’ welfare and the network owner’s revenue.
Interfacial and Structural Changes During Digestion of Milk-like Systems. This project aims to enhance the understanding of the behaviour of milk and milk-like systems during digestion. Utilising new Australian research infrastructure the project aims to unlock the complex behaviour across different types of milk (including human breast milk) and infant formulae, linking how enzymes behave towards fat droplets and the consequences for lipid structuring and nutrient transport. The rational design ....Interfacial and Structural Changes During Digestion of Milk-like Systems. This project aims to enhance the understanding of the behaviour of milk and milk-like systems during digestion. Utilising new Australian research infrastructure the project aims to unlock the complex behaviour across different types of milk (including human breast milk) and infant formulae, linking how enzymes behave towards fat droplets and the consequences for lipid structuring and nutrient transport. The rational design of systems that function much more closely to human milk will enable the development of new products with flow on benefits in human nutrition and increased utilisation of products from our dairy industry.Read moreRead less