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scales. The project involves the modelling of energy infrastructures, the development of scenario-based simulations, and the generation of actionable indicators to support decision-making. You will be part
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seeking model improvements based on the industry changes. Language skills · Good written and verbal communication skills in English is mandatory Your LIST benefits · An organization with a
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knowledge on leaf thermodynamic processes based on continued literature study, mathematical modelling of the leaf boundary layer conductance and its interactions wtih stomatal control and the leaf energy
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cutting-edge characterization techniques (transmission electron microscopy (TEM), atomic force microscopy (AFM), x-ray photoelectron spectrometry (XPS), secondary ion mass spectrometry (SIMS)...). Based
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and spatiotemporal scales, i.e., new forms of real-time automation of intelligent active grids including grid-forming converters, using distributed control and artificial intelligence (AI) based
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SD-25157 RESEARCHER IN ATMOSPHERIC PLASMA TREATMENT OF METALLIC SURFACES FOR INDUSTRIAL APPLICATIONS
now! Education The candidate should have a PhD degree in Chemistry, Chemical Engineering, Materials Sciences or related fields. Experience and skills Extensive experience in the Atmospheric Plasma
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research on plasma deposition of functional materials on textiles. Conduct research on plasma-based deposition of functional topcoats for engineered textiles. Develop and optimize plasma deposition processes
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described below? Are you our future colleague? Apply now! Education The candidate should have a PhD degree in Chemistry, Chemical Engineering, Electrochemistry or related fields. Experience and skills
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. The project motivation is based on the current status that, while significant amounts of for example recycled polypropylene and high-density polyethylene are available, their mechanical properties and