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The Data Integration in the Life Sciences (DILiS) research group at the Institute of Computer Science at Freie Universität Berlin is headed by Katharina Baum. We primarily investigate and develop
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research along the entire semiconductor value chain and on tailor-made synthetic diamonds. Whether high-frequency circuits for communications technology, voltage converter modules for electromobility, laser
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Your Job: Development of a physical solid-state cathode model and simulation of cathode performance Mathematical optimization of the model parameters using laboratory measurements Preparation and
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-Performance cutting« , we deal with high-quality requirements in the metal cutting industry, especially in highly regulated sectors such as aerospace. As part of your thesis, you will investigate federated
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ferroelectric hafnium oxide, focusing on achieving high performance and integration efficiency. RF/mmWave network simulation: You simulate RF/mmWave networks operating within the 10 GHz - 110 GHz frequency range
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. Whether high-frequency circuits for communications technology, voltage converter modules for electromobility, laser systems for measurement processes, or innovative hardware and software for quantum
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frequency and circuit design 3+ years’ experience in 2.5/3D electromagnetic simulations and RF circuit design Excellent knowledge of high-frequency technology and electromagnetic field theory Advanced
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Organoid Engineering for Multi-Organ Interaction Studies (POEM) program ( www.uni-heidelberg.de/en/cctp-poem ) brings together expertise in material science, computer science/machine learning, biophysics
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/d) in Energy Informatics, specifically for a DFG project in wind power forecasting using machine learning. You are passionate about applying cutting-edge information technology to solve the energy and
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Science Center. As a leading German management school, we create real impact through relevant research with strong ties to industry. Our supportive environment encourages scholars at all stages