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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
current and future aircraft models + Evaluating how these differences affect fleet assignment and network planning + Optimizing airline operations (e.g., fleet composition, scheduling, routing) based on new
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electrochemical interfaces for electrocatalysis and batteries. You will investigate how the properties of the electrode-electrolyte interface can be leveraged to optimize the activity, selectivity, and stability
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Research Infrastructure? Yes Offer Description Objective In this project, you will investigate how the properties of the electrode-electrolyte interface can be leveraged to optimize the activity, selectivity
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IEPG). You will be a member of the section Intelligent Electrical Power Grids in the Faculty of Electrical Engineering, Mathematics, and Computer Science. The project will offer opportunities
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understanding with applied research and close collaboration with industrial partners, we develop solutions that contribute directly to the optimization of industrial-scale electrolyzers. More information about
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process execution (e.g., identifying concept drift), simulation of highly variable processes, optimization of variable workflows, and many related challenges. Information In the Department of Mathematics
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concepts for spot size converters (SSCs) on our Indium Phosphide (InP) Photonic integration platform Developing and optimizing a manufacturing process for the SSC in the Nanolab cleanroom at TU/e
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the environmental, social, and economic impacts of materials and production systems. The Department of Wind Energy (Rijswijk) conducts cutting-edge research to advance the development, integration, and optimization