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(rheology, DMA, tensile test, …); a strong interest to investigate structure-property relationships of the synthesized polymers for composite and adhesive applications a scientific attitude combined with a
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resource acquisition traits into the mechanistic ecosystem model PCLake and assess consequences for ecosystem structure and functioning. General project description This PhD position is part of the SNF-Lead
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the moon's icy crust. Studying Enceladus's plumes and surface can provide crucial insights into its habitability, the structure of its crevasses and the depth of its ocean. By observing these plumes, we can
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transition and catalytic conversion of carbon-based feedstocks? We are looking for a motivated PhD candidate to investigate how feedstock composition and catalyst structure affect performance during transient
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reactions. The candidate will investigate how catalyst composition, electrolyte conditions and impurities influence activity and selectivity, using electrochemical and mechanistic studies to establish
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resolve the active electrode-electrolyte interface structure present under catalytic conditions, and study how it changes when the catalyst structure (e.g. crystallinity and elemental ratio) and electrolyte
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—for the bundles of muons that reach the detectors, and apply them to data and simulations to constrain cosmic-ray composition and hadronic-interaction models. We support you with a rich international collaboration
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composition and hadronic-interaction models. We support you with a rich international collaboration, extensive computing resources and close day-to-day supervision within the group. Tasks and responsibilities
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thermodynamic, structural, and transport properties are essential for the modelling and design of water electrolysers. These properties strongly depend on T, p, and composition. For model development and
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how a tumour responds to therapy across biological scales, are both betting that structure beats brute scale. In this PhD you will develop mechanism-informed world models: models that do not merely