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turbulence data, together with fine-scale profiles from standard Argo floats, to quantify rates of vertical and horizontal ocean mixing, and you will apply inverse methods to investigate the role
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interactions is a plus. You can also demonstrate your competence in HCI methods including: user study methodologies, experimental design work, ranging from in-lab to in-the-wild deployments, and qualitative and
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complex health and social care challenges, particularly in the management of long-term conditions. We combine AI and traditional epidemiology with qualitative methods to develop impactful, real-world
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, using your troubleshooting skills to see them through to resolution What you’ll bring A genuine interest in technology and how it works A logical, methodical approach to problem solving The ability
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a PhD in engineering or a related area. In particular experience in experimental methods for aerodynamics is essential. Good prior experience in wind tunnel testing is essential with experience in
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Experience of using qualitative and quantitative research methods Proven ability to organise a range of high quality research activities to deadline and quality standards Experience of managing and undertaking
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consistent approach to all of our products build a comprehensive knowledge base of user research and user-centred, evidence-based research methods and practice lead on user research activities, making
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methods (statistics, ML, AI) with applications to energy and built environment problems and programming languages e.g. Python, R, Matlab, C# etc applied at highlighted scales. About you We welcome
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proactively engaging with the research team to streamline existing methods and develop new ones Disseminate and present results to internal and external stakeholders Essential Skills & Experience: Substantial