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only laborious and time-consuming, but also cover only a miniscule fraction of the unimaginably large sequence space available. As a result, means to guide evolutionary trajectories along a biomolecule’s
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particular focus will be on exploiting the extensive experimental data generated within the HKN project, including measurements from wind-tunnel experiments and full-scale offshore wind turbines. These data
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multidisciplinary network of researchers within the departments of Molecular Cell Biology & Immunology and Pathology at Amsterdam UMC. Would you like to know more about the different phases within the PhD trajectory
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activities will include: o Human Brain Modeling: Generating and maintaining patient-stratified iPSC lines and innovative 3D "brain chimeroid" models. o Advanced Neurophysiology: Assessing functional network
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Please note: due to interaction with Dutch participants from The Netherlands, fluency in Dutch is a must have. Are you interested in new generation weight loss medication and how they influence
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Modeling: Generating and maintaining patient-stratified iPSC lines and innovative 3D "brain chimeroid" models. o Advanced Neurophysiology: Assessing functional network activity and synaptic dynamics using
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resource acquisition traits into the mechanistic ecosystem model PCLake and assess consequences for ecosystem structure and functioning. General project description This PhD position is part of the SNF-Lead
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that generalize across different physical settings. Building on this motivation, the project focuses on the definition, development, and analysis of scientific foundation models: large-scale, generalizable models
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critical applications. Event-based control approaches can greatly reduce communication by transmitting information only when required, while potentially generating complex, chaotic sampling patterns
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will generate new evidence to improve reproductive healthcare for women living with rheumatic diseases. Your activities will include: Designing and conducting clinical and epidemiological research