A new quality of life instrument with older people for economic evaluation. This project aims to develop and validate a new preference-based quality-of-life instrument with applications in aged-care. The new instrument will be developed with older people receiving aged care services, and will focus upon incorporating their values into the measurement and valuation of quality of life for economic evaluation. The new instrument will have immediate applications in quality assessment and economic ev ....A new quality of life instrument with older people for economic evaluation. This project aims to develop and validate a new preference-based quality-of-life instrument with applications in aged-care. The new instrument will be developed with older people receiving aged care services, and will focus upon incorporating their values into the measurement and valuation of quality of life for economic evaluation. The new instrument will have immediate applications in quality assessment and economic evaluation, improving the quality of life and wellbeing of older Australians, and will assist in determining the relative cost effectiveness of new and existing services.
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Special Research Initiatives - Grant ID: SR0354466
Funder
Australian Research Council
Funding Amount
$20,000.00
Summary
Mathematics in Contemporary Science. The Mathematics in Contemporary Science Research Network brings contemporary methods of non-linear analysis and differential equations, geometric reasoning and relevant algebraic and topological ideas to enrich six application areas in modern science: Complex Systems, Computer Vision, Optimal Transportation, Nanotechnology, Physics and Shortest Networks. MiCS will develop both the mathematics and the application areas in parallel. It will focus on postgradu ....Mathematics in Contemporary Science. The Mathematics in Contemporary Science Research Network brings contemporary methods of non-linear analysis and differential equations, geometric reasoning and relevant algebraic and topological ideas to enrich six application areas in modern science: Complex Systems, Computer Vision, Optimal Transportation, Nanotechnology, Physics and Shortest Networks. MiCS will develop both the mathematics and the application areas in parallel. It will focus on postgraduate training through workshops, summer schools and web based resources and build long-term international collaborations with EU networks and NSERC, NSF and EPSRC institutes as well as bringing together academic and industry leaders.Read moreRead less
Economic Modelling of the Nurses' Labour Market in Australia. Nurses play an important role in the health system and help to ensure individuals lead healthier, happier and more productive lives. Devising cost-effective policies to ensure an adequate supply of motivated and productive nurses is crucial in achieving efficiency and equity in the health care system. The results will be used by government to help set optimal pay and conditions for nurses, and to ensure that these are competitive with ....Economic Modelling of the Nurses' Labour Market in Australia. Nurses play an important role in the health system and help to ensure individuals lead healthier, happier and more productive lives. Devising cost-effective policies to ensure an adequate supply of motivated and productive nurses is crucial in achieving efficiency and equity in the health care system. The results will be used by government to help set optimal pay and conditions for nurses, and to ensure that these are competitive with other nurse employers. This will provide a firm evidence-base to reduce nurse shortages and therefore increase the quality of patient care in Australia.Read moreRead less
Development of nanoporous materials for capture and release of oxygen. This project aims to develop new materials to make lighter, more efficient oxygen concentrators. The project will combine materials that can capture oxygen with particles that can be magnetically heated, making it possible to release the oxygen rapidly and efficiently when needed. Expected outcomes from this project include new composite materials and better understanding of how gases are trapped and released within composite ....Development of nanoporous materials for capture and release of oxygen. This project aims to develop new materials to make lighter, more efficient oxygen concentrators. The project will combine materials that can capture oxygen with particles that can be magnetically heated, making it possible to release the oxygen rapidly and efficiently when needed. Expected outcomes from this project include new composite materials and better understanding of how gases are trapped and released within composite materials. Benefits from this project may include oxygen concentrators that are more portable and have longer battery life, both with industrial and medical applications.Read moreRead less
Financing aged care in Australia: Mitigating fiscal gaps and maintaining intergenerational equity. Aged care has been identified as a significant contributor to the growing fiscal problems predicted for Australian government finances during the next 10 to 20 years. This project will develop the cutting-edge modelling tools needed to allow Australia to make informed decisions about possible reforms in aged care financing. It will create significant national benefits by allowing detailed assessmen ....Financing aged care in Australia: Mitigating fiscal gaps and maintaining intergenerational equity. Aged care has been identified as a significant contributor to the growing fiscal problems predicted for Australian government finances during the next 10 to 20 years. This project will develop the cutting-edge modelling tools needed to allow Australia to make informed decisions about possible reforms in aged care financing. It will create significant national benefits by allowing detailed assessment of the distributional impact of a wide range of possible reforms, including how the outcomes of any policy change will affect disadvantaged sections of our society, whether different generations will be fairly treated, and the impact by gender.Read moreRead less
Measuring Hospital Performance: Outputs, Quality of Care, Competition and Efficiency. Hospitals are a critical component of the health infrastructure. An understanding of the performance of hospitals is important in shaping an overall health care strategy. Unfortunately, assessing hospital performance has been fraught with difficulties. A major obstacle is in defining and measuring the outputs and quality of hospitals. Collaborating with the Victorian Department of Human Services, and using t ....Measuring Hospital Performance: Outputs, Quality of Care, Competition and Efficiency. Hospitals are a critical component of the health infrastructure. An understanding of the performance of hospitals is important in shaping an overall health care strategy. Unfortunately, assessing hospital performance has been fraught with difficulties. A major obstacle is in defining and measuring the outputs and quality of hospitals. Collaborating with the Victorian Department of Human Services, and using the Department's VAED datasets, we aim to develop a framework within which unobservable quality dimensions can be estimated, so that hospital output and quality can be accounted for. The framework will be useful for addressing pertinent health policy issues, including hospital funding, specialisation, and competition issues.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE170100235
Funder
Australian Research Council
Funding Amount
$388,000.00
Summary
Spectroscopy and imaging platform for photoactive materials. This project aims to establish a comprehensive analytic tool-box to characterise solution-processable materials for thin-film solar cells based on materials such as perovskites. These materials have light harvesting properties with absorption edges beyond 800 nm. This project will focus on time-resolved transient absorption and microwave conductivity phenomena and on lock-in thermographic imaging capabilities. This will accelerate mate ....Spectroscopy and imaging platform for photoactive materials. This project aims to establish a comprehensive analytic tool-box to characterise solution-processable materials for thin-film solar cells based on materials such as perovskites. These materials have light harvesting properties with absorption edges beyond 800 nm. This project will focus on time-resolved transient absorption and microwave conductivity phenomena and on lock-in thermographic imaging capabilities. This will accelerate materials and technological development in this research field. This project is expected to help the local and global energy sector transition to sustainable energy, provide a competitive edge for commercialisations of solar technologies in Australia, and benefit the economy, environment and national security.Read moreRead less