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global CO₂ emissions, largely due to its dependence on clinker—the key constituent of conventional cement. To accelerate the decarbonization of construction materials, the C-Sink Project (funded under
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Discrete Element Method (DEM) models to simulate the charging and formation of multi-component, poly-disperse burden mixtures in the blast furnace. The goal is to optimize burden structure and permeability
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of light metal alloys and mitigation strategies, including conventional electrochemical analyses such as PDP and EIS. Experience optionally on surface analysis methods (eg. SEM, XRD, XPS, AFM). Critical and
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, and two exchanges. A special element will be the design of EXPLORA kits: through teamwork with other doctoral candidates in the network you will make an EXPLORA kit forming a meaningful contribution
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the Netherlands and internationally and is strengthened by the many young researchers working on innovative projects with as doctoral candidates and post-docs. It has been accommodated in three multidisciplinary UT
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the project is on the Netherlands, Finland, and Ukraine, and other countries could be added, if the post-doc has relevant expertise and experience. More information about the project could be found here: http
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Interferometer (aMZI) sensors on silicon nitride platforms, enabling highly sensitive, label-free detection of biomolecules for astrobiological research. An essential component of the technology is chip
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operation at elevated temperatures. The building block developments will follow a rigorous design flow to result in functional elements for the photonic integrated platform. Close collaboration with
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. Proven and extensive experience in corrosion research of light metal alloys and mitigation strategies, including conventional electrochemical analyses such as PDP and EIS. Experience optionally on surface
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storage systems at any time interval required to capture the system dynamics as dictated by demand-side management. Input from consortium industry partners on component, operational and other costs will be