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Field
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PhD project to develop theoretical computations and modelling methods to guide and optimise the synthesis conditions and composition of electrocatalysts. PhD project to develop theoretical
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implemented to support the development of Cu-Mo composites for thermal management. Special attention will be paid to scale- and interface effects on the thermal conductivity in these composite materials
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Section has a unique research infrastructure, both from an experimental and computational perspective. Bioinspired Composites: Context and Aim of the Project Biological structural materials, like mother-of
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should apply. The candidate should have a strong interest in experimental mechanics of composite materials, and should be enthusiastic to work in a collaborative project between industry and academia
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to these advantages, utilization of composite materials for fast ocean-going vessels also requires addressing a number of outstanding challenges, e.g. operation under extreme loading and the effect
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, including filtration, decontamination and manufacturing. For instance, resin must be injected into a porous mesh, without trapping air bubbles, to manufacture composite materials. Interfacial flows
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challenging research topic. Only candidates with a Master degree should apply. The candidate should have a strong interest in computational mechanics of composite materials, and should be enthusiastic to work
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valorization operations of plant biomass such as biorefinery and the development of bio-based materials (papers, cardboard, composites, films, non-wovens) as well as on printing processes for surface
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“Bioinspired Composites: Manufacturing and Multi-scale Characterization” in the section Mechanics of Materials, Department of Mechanical Engineering. The PhD student position is available in the section
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Are you interested in sustainable structural design to reduce the CO2 footprint of buildings? Are you passionate about bio-based composite material systems and want to enhance their use in