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Status: Closed Applications open: 7/07/2023 Applications close: 25/08/2023 View printable version [.pdf] About this scholarship Description/Applicant information Sustainable water resources
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water electrolysis powered with renewables-generated electricity is a highly promising way for large scale green hydrogen production, in particular for Australia. The state-of-the-art electrolysis cells
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Bachelor degree for international students) Strong background in water ecology Highly motivated to conduct multidisciplinary studies Application process Send an email to [email protected]
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continents in the world and the demand for water resources in many of the most arid regions by industry and communities continues to increase as a result of population growth and expansion and development
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on other planets in the solar system – in particular, the existence of water environments – is a fundamental question for planetary exploration, guiding NASA’s current and planned Mars Sample Return
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will explore how crystallisation processes change when undertaken in unusual conditions such as in solvents that are not water, at non-miscible liquid interfaces and when an electrochemical potential is
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has reached over 8,000 tonnes and there is a need to develop ocean and land-based seaweed culture of native species for domestic use and export markets. Despite the proven benefits of seaweed farming
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Professors Zongping Shao and Moses Tade and Dr Xiaomin Xu on “Efficient and selective water electrolysis for clean energy and environment”. The PhD study will build on some of our recent work to develop
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impacts of new roads and related infrastructure development in East Africa and the Indian Ocean Rim. In particular, it seeks to provide new knowledge on how infrastructure projects are altering East African
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communication for global ocean environments: Deep learning models mostly perform robustly on certain environments since they are mostly developed by limited simulated data. To develop more robust models, training