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Applied mathematics, fluid mechanics, high-performance computer simulations. Two full time, fixed term positions (3 years) at Hawthorn campus $34,700 per annum (2025 rate) About the Scholarship
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. The specific lattice planes are expected to accelerate rate-limiting steps and ultimately enhance the PCFC output performance. Moreover, theoretical calculations will be employed to understand the mechanisms
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are available in the Centre of Infrastructural Monitoring and Protection (CIMP), School of Civil and Mechanical Engineering at Curtin University, Australia. The successful candidates will work with Associate
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in biomedical engineering, mechanical engineering, or a related field. Experience in finite element modelling, biomechanics, or orthopaedic research is desirable. Strong analytical and problem-solving
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This project seeks to pinpoint cellular and molecular epigenetic mechanisms that drive age-related immune-senescence and inflammation, critical to the decline in immune function and ability
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transport and energy conversion. The incorporation of 2D nanomaterials as sacrificial layers enables precise control over nanochannel architecture, ensuring enhanced selectivity, mechanical robustness, and
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spatial and single-cell datasets to identify molecular mechanisms underlying therapy response and resistance. Their work will also explore tumor microenvironment dynamics—such as immune cell infiltration
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previous interactions (e.g., information browsing history). Though recent research and industry practices have seen various privacy mechanisms, the degree of customizability is far from satisfactory as all
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well as children. To identify the specific mechanisms through which multisensory stimulation enhances motor learning, working memory, and auditory selective attention. To compare the effectiveness of different
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Optimizing a 3D microfluidic IVD model to study cell responses to wear particles, refining culture conditions, and analysing cytotoxic and inflammatory mechanisms. Optimizing a 3D microfluidic IVD