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when liaising with collaborative research partners. Your key responsibilities will be to: develop advanced modelling, novel material synthesis, processing, fabrication and manufacturing sequence
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advanced statistical modelling to examine discreteness beliefs and prejudice patterns across cultures analyse societal-level predictors such as cultural tightness - looseness and collectivism - individualism
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focus on COVID-19) involving a number of key Australian institutions. The research will use health economic and infectious disease modelling to evaluate the impact and cost-effectiveness of population
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scale-up modelling Integration of strain performance, sustainability, and techno-economic constraints You will work closely with strain engineers, students, and collaborators in a highly integrated team
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models for muscle and tendon repair, and the creation of integrated bone–tendon–muscle regeneration systems and advanced regenerative microenvironments. The role also offers opportunities for student
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density) influence energy dissipation develop mathematical models to predict and explain these effects collect and analyse data, including with the use of machine learning use this knowledge to design
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key responsibilities will be to: develop fundamental theories and enabling technologies for intelligent wireless communication systems design, model and evaluate integrated communication–sensing
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record relevant to career stage research expertise in one or more of the following: digital twins, cyberphysical systems, human-centred AI causal modelling, uncertainty quantification, explainable AI
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research in this or related fields proven expertise in metabolic studies using mouse models, including manipulating protein expression via AAV methods and generating high‑quality tissue proteomics datasets
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the following: digital twins, cyberphysical systems, human-centred AI causal modelling, uncertainty quantification, explainable AI, or trustworthy AI agentic AI, multiagent systems, sequential decision