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robotic platforms, integration of optical and imaging-based feedback, and development of modeling and control strategies for operation in complex biological environments. Particular attention will be given
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neuroscience and evolutionary biology. The University of Groningen provides exceptional infrastructure, including access to the Hábrók high-performance computing cluster for large-scale data analysis, large
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design possible in which even the small details can be readily incorporated into the electromagnetic model for robust performance analysis? Information Antenna and RF systems play a pivotal role in society
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composition and catalyst structure affect performance during transient Fischer–Tropsch synthesis (FTS). In this project, you will focus on understanding how variations in CO/CO₂/H₂ ratios and the presence
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of putative epialleles. You will: Oversee DNA sequencing approaches for targeted analysis of DNA methylation, SNP and structural variation between accessions, including long read sequencing methods Perform
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at the interface of preclinical research, academic leukodystrophy expertise and patient-oriented therapy development. Your work will include: Performing longitudinal natural-history studies in
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gaps exist regarding the multiscale behaviour of these treatments, from microscale pore interactions to macroscale building performance. This project will advance beyond the state of the art by
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positive effects on the use, maintenance and development of the heritage language and the second language in both child brokers and their parents. This is what you will be doing You will perform
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protected from potentially harmful experiences. This is what you will be doing You will perform the following tasks and activities: reviewing literature on the effects of language brokering on emotions and
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evaluation framework covering statistical fidelity, temporal and spatial structure, physical plausibility and downstream task performance (e.g. train-synthetic-test-real forecasting). You will collaborate with