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at the local level. While there is no shortage of public participation approaches policy makers can use to structure their citizen engagement interventions, systematic knowledge of which approach works best
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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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catalyst structure–performance relationships. The most promising catalysts will then be optimized and evaluated under practically relevant electrolysis conditions, contributing to the development of a
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the Faculty of Architecture and the Built Environment: Structures and Materials (restructgroup), Building Design & Technology (architectural-facades-products) and Environmental & Climate Design (climate-energy
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and energy demand. The research activities will include understanding of performance profile of recycled polymers by means of various chemical, structural, rheological and mechanical characterization
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and soft XAS, you will resolve the active electrode-electrolyte interface structure present under catalytic conditions, and study how it changes when the catalyst structure (e.g. crystallinity and
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sensitivity of green steels [Tata Steel; Marc Geers] PhD 3: From structure to properties in green metastable stainless steels [Philips, Alleima; Marc Geers] PhD 4: Solute-dependent bcc crystal plasticity in
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the biomolecular polymer structures, batch-to-batch variations, and changes during modifications; set-up and validate methodology for quantification and identification of said biopolymers, including
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interpretation and prediction of structure-property relationships. https://sustainablepolymersynthesis.com/ Interested? Want to know more about this position or what it’s like to work at our university? Reach out
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Would you be interested in exploring how multi-agent aerial manipulation can contribute to construction, in particular by assembling a pavilion? Job description Advancement of aerial robotics