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prepare and defend a doctoral dissertation. Within the framework of the FWO SBO interdisciplinary project DINEMO (Distribution Network Management Optimisation), which aims to address systemic bottlenecks
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Belgium. The overall objective of FLEX-SMR is to develop cost-optimal solutions for integrating SMRs into industrial energy systems. In particular, the project investigates how an SMR can be operated
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(Artificial Intelligence and Epidemic Modeling to Prepare Hospitals for the Next Respiratory Pathogen with Pandemic Potential). Project Overview The COVID-19 pandemic exposed critical gaps in our ability
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laboratory conditions with, e.g., lasers. Recent advancements have addressed this constraint through the development of incoherent holographic camera prototypes. These prototypes can decompose incoherent light
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expertise, and who are willing to develop their research in dialogue with other disciplines. The final research focus will be developed in dialogue with the supervisors and the wider interdisciplinary team
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will be involved in the development of challenging and novel functionalization approaches to design activated carbons with tunable surface groups. Establishing correlations between the lignin structure
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the project is “Handshake Complexes of Chiral Nanoparticles and Proteins” (CHIRAL-PRO). The overarching goal of CHIRAL-PRO is to develop a widely applicable methodology to design chiral nanoparticles (NPs) with
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to the daily functioning of those groups. You will be jointly supervised by Prof. Arvi Sepp and Prof. Kevin Smets, in close collaboration with Prof. Yazan Badran and the Inter-RESIST team. You will prepare a PhD
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of reinforcement learning (RL) for industrial process control and optimisation. The research focuses on developing RL methods that can support decision-making and control in complex industrial systems while
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PhD in Computational Simulations of Turbulent Reaction Flows for Clean Energy and Sustainable Propul
, for which in-house codes for Direct Numerical Simulation (DNS), Large Eddy Simulation (LES), and 1D flame calculations are available and constantly further developed. Commercial codes are used for Reynolds