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Socio-Economic Objective : Physical sciences
Research Topic : Biological network analysis
Australian State/Territory : TAS
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  • Funded Activity

    Special Research Initiatives - Grant ID: SR0567321

    Funder
    Australian Research Council
    Funding Amount
    $184,781.00
    Summary
    Real-time Very Long Baseline Interferometry. We will develop a range of software products that are required to implement real-time very long baseline interferometry with the Australia long baseline array. These developments build upon substancial recent infrastructure investments and will place Australia at the forefront of this field. They will enhance our capacity to participate in international collaborations in a range of sciences including astrophysics, spacecraft tracking and geodetic mo .... Real-time Very Long Baseline Interferometry. We will develop a range of software products that are required to implement real-time very long baseline interferometry with the Australia long baseline array. These developments build upon substancial recent infrastructure investments and will place Australia at the forefront of this field. They will enhance our capacity to participate in international collaborations in a range of sciences including astrophysics, spacecraft tracking and geodetic monitoring.
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    Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0561104

    Funder
    Australian Research Council
    Funding Amount
    $402,128.00
    Summary
    A 10 Gbit/s Fibre Optic link to the Mt Pleasant and Mt Canopus Observatories. A 10 gigabit per second fibre optic link to the Mt Pleasant and Mt Canopus observatories will enable a wide range of new and exciting research opportunities. Very long baseline interferometry (VLBI) allows imaging of distant astronomical objects with much higher resolution than any other technique. The proposed fibre optic link will revolutionise Australia's VLBI capability, giving it the world's most sensitive array, .... A 10 Gbit/s Fibre Optic link to the Mt Pleasant and Mt Canopus Observatories. A 10 gigabit per second fibre optic link to the Mt Pleasant and Mt Canopus observatories will enable a wide range of new and exciting research opportunities. Very long baseline interferometry (VLBI) allows imaging of distant astronomical objects with much higher resolution than any other technique. The proposed fibre optic link will revolutionise Australia's VLBI capability, giving it the world's most sensitive array, with enhanced reliability and faster access to results for researchers. This project will greatly facilitate studies of astrophysical processes in Galactic and extra-galactic environments as well as precision measurements of the Earth's crustal dynamics.
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    Funded Activity

    Discovery Projects - Grant ID: DP1093658

    Funder
    Australian Research Council
    Funding Amount
    $288,000.00
    Summary
    Viscous Effects in Free-Surface Flows. Australia has a proud record of achievement in the field of free-surface fluid mechanics. This project will build and extend these research achievements. It will provide new information about how fluid layers overturn and mix, which is an important process in oceanography. It will examine the sloshing behaviour of fluid in moving storage tanks, which is important in fuel transport and building design. The project will develop new mathematical methods fo .... Viscous Effects in Free-Surface Flows. Australia has a proud record of achievement in the field of free-surface fluid mechanics. This project will build and extend these research achievements. It will provide new information about how fluid layers overturn and mix, which is an important process in oceanography. It will examine the sloshing behaviour of fluid in moving storage tanks, which is important in fuel transport and building design. The project will develop new mathematical methods for solving these problems accurately, and will contribute to the next generation of research mathematicians in Australia.
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    Funded Activity

    Special Research Initiatives - Grant ID: SR0354683

    Funder
    Australian Research Council
    Funding Amount
    $10,000.00
    Summary
    Ocean Discovery Network. The ODN will focus research on Australia's vast marine jurisdiction by: 1. Providing a forum for developing coordinated marine research enterprises in the National Research Priority areas of biodiversity, exploitation of resources, seaway security and climate. 2. Developing innovative international research and providing a mechanism for involvement in international science programs 3. Advancing research capabilities between national and international ocean scientist .... Ocean Discovery Network. The ODN will focus research on Australia's vast marine jurisdiction by: 1. Providing a forum for developing coordinated marine research enterprises in the National Research Priority areas of biodiversity, exploitation of resources, seaway security and climate. 2. Developing innovative international research and providing a mechanism for involvement in international science programs 3. Advancing research capabilities between national and international ocean scientists with web-based data-exchange services and links to global databases 4. Facilitating the transfer of research skills to young investigators 5. Maximising multidisciplinary use of Australian ocean science capacity, particularly the National Facility Research Vessel and the RSV Aurora Australis
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    Funded Activity

    Discovery Projects - Grant ID: DP0344996

    Funder
    Australian Research Council
    Funding Amount
    $253,035.00
    Summary
    Structure and informatics of the genetic code. Recent advances in biotechnology have seen its emergence as a highly quantitative, numerically-based discipline. To exploit the available data to the full will require, alongside computing power, new analytical techniques. This project aims to develop such techniques, by handling the systematics of the genetic code with methods derived from theoretical physics and chemistry. Expected outcomes include a dynamical (quantum field theory) model .... Structure and informatics of the genetic code. Recent advances in biotechnology have seen its emergence as a highly quantitative, numerically-based discipline. To exploit the available data to the full will require, alongside computing power, new analytical techniques. This project aims to develop such techniques, by handling the systematics of the genetic code with methods derived from theoretical physics and chemistry. Expected outcomes include a dynamical (quantum field theory) model of phylogenetic branching, analyses of nucleic acid structure and content (spin chain models of RNA binding and of DNA open reading frames), and insights into the origin of the code itself (via numerical codon similarity measures).
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