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within two research groups of the IUMAT research institute: MPR&S and ACC (https://www.uhasselt.be/nl/instituten/iumat ). Within MPR&S and ACC, you will be part of a team of approximately ten researchers
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optimization. Furthermore, our activities are experimentally driven and supported by the COMMLab, the 6GSPACE Lab, the HybridNetLab, the QCILab, our SW Simulators, and our facilities. For further information
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to work on the design of novel nucleic acid delivery technologies for ex vivo/in vivo CAR-T cell engineering. The postdoc will assist in the development, optimization, characterization and (ex vivo/in vivo
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biomedical sciences. Direct access to VIB’s Data Core services, which provide expert support in data management and high-performance computing, including optimized pipelines and large-scale GPU resources. A
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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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optimally combined to deliver models with extremely constrained compute and memory footprints without compromising performance. This includes training spiking neural networks with multiple plasticities
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investigate the fundamental principles of hybrid Near-Field/Far-Field wave propagation and beam forming, exploiting the spatial degrees of freedom provided by spherical wavefronts to jointly optimize
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to work independently). You have solid knowledge of and experience with mathematical modeling, programming, and optimization techniques for planning applications. You possess strong didactic and
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building blocks, including sensor interfaces, amplification stages, multiplexing circuits, and data acquisition architectures for flexible electronics platforms. You will design and optimize readout circuits
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optimization. Furthermore, our activities are experimentally driven and supported by the COMMLab, the 6GSPACE Lab, the HybridNetLab, the QCILab, our SW Simulators, and our facilities. For further information