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for extension. We are looking for someone to join our team of consumer behaviour scientists and agent-based modellers who can bring knowledge of and experience with modelling cognitive or behavioural change
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for the treatment of these diseases, with a focus on ion channels. Our work combines in vitro and in vivo model systems, human tissue analysis, hormone secretion assays, electrophysiology, (live) imaging, molecular
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behaviour change theory (e.g. COM-B, the Theory of Planned Behaviour, or the Value-Belief-Norm model) as applied to sustainability or circular economy contexts. Experience with citizen science, co-creation
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Engineering. The position is closely connected to our activities within developing high-fidelity models that capture the coupled thermal, chemical and electrochemical phenomena governing system performance
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, including the design of product concepts, survey materials, experimental stimuli and measures of consumer preferences, acceptance and willingness-to-pay. The candidate is also expected to contribute
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Materials Development (Lab4DMade). A central aim of the project, and of this position, is to develop local strain analysis tools for the state of-the-art laboratory 4D X-ray micro-beam diffraction technique
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position is available in modelling of solid-state NMR experiments from 1 October 2026 (or soon thereafter) in the Danish Center for Ultrahigh-Field NMR Spectroscopy at the Department of Chemistry, Aarhus
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founders develop social business models by working systematically with societal problems, solutions, impact logic, value propositions, funding models, stakeholder engagement, and implementation pathways
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A three-year postdoc position is available in modelling of solid-state NMR experiments from 1 October 2026 (or soon thereafter) in the Danish Center for Ultrahigh-Field NMR Spectroscopy
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thereafter. Project overview The goal of this project is to advance the understanding of failure mechanisms in optical phase change materials used in photonic devices, using synchrotron X rays and X ray free