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CryoTEM and its application to the solution of research problems in the biological and biomedical sciences Demonstrated expertise in the full single particle analysis (SPA) workflow, including optimisation
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(including, but not limited to, protein extraction, Western blot, immunohistochemistry/immunofluorescence, QuPath based image analysis). Perform statistical analysis of research data and interpretation of main
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focused on understanding and countering harmful narratives and, mis/disinformation, and applying social network analysis. To be successful you will need: PhD in a relevant discipline such as computer
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of hydrogen migration through isotopic, noble gas and micro thermometric analyses of hydrogen-bearing inclusions. Eligibility: Applicants may include Australian citizens, permanent residents of Australia and
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). Proficiency in numerical modelling, data analysis and instrument control in languages such as Matlab, Python, C/C++, etc. Familiarity with sensor technologies and applications, machine learning, and electronics
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media; the development and application of numerical methods of image and signal analysis The ability to work well with people both in academia and Industry The ability to plan and manage own research
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of democracy. Many of the courses engage in comparative analysis with the modern world. The successful candidate will be expected to contribute primarily to the courses in Classical Studies. For information
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, particularly in nanoparticle synthesis and chemical analysis, as well as experience in maintaining accurate laboratory records and managing experimental data effectively. A demonstrated commitment to ethical
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Community Controlled Health Organisations in South Australia. Experience with comprehensive data registries and data analysis. Demonstrated high level organisation skills. Ability to work well both
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biometrical approaches to experimental design and longitudinal data analysis of high-throughput plant phenotyping datasets. They will have significant experience in designing and analysing multi-phase