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of composite structures for both monotonic and fatigue loading has several advantages in the design of critical load bearing structures and components. The aims of the research are to develop efficient and
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into how the structure of fat droplets during digestion is impacted by composition and formulation processing. Working under the broader project of ‘Precision Nutrition’ the research will investigate how
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stiffness by changing their composition and self-assembly process. The relationship between nanoparticle structure and stiffness will be determined both through experimental and modelling approaches. Finally
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This scholarship is funded by the University of Adelaide to support a full-time Doctor of Philosophy (PhD) student who is commencing research in the field of musculoskeletal biomechanics
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stars, and what are the barriers in identifying these systems observationally. Lastly, we aim to assess and verify theoretical predictions on the effects of properties such as chemical composition
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networks. C2 research that better reflects the rich dynamics and complexities that occur in real-world contexts has the potential to result in major benefits for many sociotechnical systems. Therefore
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As an AUFRANDE researcher, you will: be enrolled in doctoral programs at two entities in France and Australia, with the chance to be awarded dual doctorates work on innovative projects of high
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PhD project to develop theoretical computations and modelling methods to guide and optimise the synthesis conditions and composition of electrocatalysts. PhD project to develop theoretical
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The aims of the research are to develop efficient and accurate computational and experimental methodologies for characterising hybrid, multifunctional 3D printed fibre-polymer composites and explore
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are developing new composites to address the Waste Heat problem. Waste Heat is a huge challenge in the global energy transition. We are developing new materials and system to enhance the conversion of heat to