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programming (Matlab and/or Python); Hands on with laboratory work, skilled in experimental design; Creativity, assertive attitude, and perseverance The selection process will start immediately; the intended
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include: designing and conducting proteomics experiments within the META-IMMUNOTYPES project; analysing plasma proteomics together with immune monitoring, metabolomics and flow cytometry datasets
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multiple-case study design. You will conduct in-depth empirical research with construction firms undergoing digital transformation. This will include interviews with executives, IT leaders, digital
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that integrate behavioural insights into bio-economic models to support the design of cost-effective and sustainable pest risk management strategies. The PhD research will be conducted within the framework
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will inform (1) the design of landers for future missions, and (2) the scientific interpretation of future mission data, by linking measured surface properties to processes such as resurfacing and
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suspension pipe flow by 30–40% across different flow rates. This makes designing and controlling these flows difficult. The difficulty arises partly because these flows do not fit the conventional ‘laminar
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patient-informed treatment priorities. To achieve this, POLARIS brings together expertise in leukodystrophy biology, advanced disease models, therapeutic innovation, biomarker development, clinical
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treatment priorities. To achieve this, POLARIS brings together expertise in leukodystrophy biology, advanced disease models, therapeutic innovation, biomarker development, clinical translation, patient
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treatment priorities. To achieve this, POLARIS brings together expertise in leukodystrophy biology, advanced disease models, therapeutic innovation, biomarker development, clinical translation, patient
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patient-informed treatment priorities. To achieve this, POLARIS brings together expertise in leukodystrophy biology, advanced disease models, therapeutic innovation, biomarker development, clinical