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leading health services research environments with other PhD students, research staff and members of the dynamic Australian Centre for Health Services Innovation (AusHSI) at the School of Public Health and
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of Australia’s leading health services research environments with other PhD students, research staff and members of the dynamic Australian Centre for Health Services Innovation
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in control systems and fluid-structure interaction. The students will be supervised by Prof Khac Duc Do and the co-CIs of the project. Student type Future Students Faculties and centres Faculty
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operation under reactive capture conditions. Unravelling reaction mechanisms and catalyst structure-performance relationships using advanced characterisation techniques and computational tools. Collaborating
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effective digital platform for analyzing, visualising and interpreting the condition of civil engineering structures. The digital twin models are created to represent the state and behaviour of structures in
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will interact with Australian and international researchers in the fields of solid-state physics, materials science and nanotechnology, gaining state-of-the-art expertise in these areas of research. "2D
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For over a century, X-rays have been used to visualise the internal structure of opaque objects, driving major breakthroughs in healthcare, industry, and scientific research. Conventional X-ray
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understanding of gene presence/absence, structural variations, and evolutionary dynamics. In this project we will aim to develop novel dynamic programming computational methods for pangenome assembly of diploid
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, the research aims to reveal how polarons interact and influence both few-body and many-body quantum phenomena. The successful candidate will contribute to the development of advanced theoretical frameworks
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the controls on the migration, accumulation and preservation of hydrogen in geological reservoirs. PhD Project 3: Structural and geomechanical characterisation of natural hydrogen systems This project will