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at ZHAW over a period of 36 months. We are seeking a highly motivated PhD candidate to join our research team working on mathematical modelling of electrochemical processes in flow batteries. This project
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processes in flow batteries. This project focuses on developing physics-based models of electrochemical double layers and their spectro-electrochemical characterisation, contributing to fundamental
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and flow field interactions Tuning of the CFD models with experimental results Artificial Neural Network training and development Scientific publications in journals and at conferences Supervision
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? To this end, our existing high-fidelity fluid-structure interaction solver (prediction of turbulent flow structures and fluid-structure interaction) needs to be combined with sophisticated blood damage models
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secondments at UCL – University College London and at University of Leeds (UK). We are looking for you! Do you want to be trained to develop multi-level thrombosis risk prediction models by integrating insights
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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description PhD Position in Advanced 3D Organotypic Bone Models for In Vitro Osteosynthesis Research
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, adapt locally to users and environments, and remain computationally efficient. These models will be explored and benchmarked in software, with selected approaches translated into embedded prototypes
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diffusion processes in the plasma resulting in the ionization of the initial gas - The decomposition of CH4, including detailed reaction sequence and chemical kinetics in a multiphase environment and flow
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processes in flow batteries. This project focuses on the modelling of electrodes for redox flow batteries to clarify the influence of electrode surface properties on the macroscopic electrode properties. Pore
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processes in flow batteries. This project focuses on developing physics-based models of electrochemical double layers and their spectro-electrochemical characterisation, contributing to fundamental