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test the neural and behavioural implications of different predictive neural architectures. The experimental and computational work will be conducted at the Donders Institute for Brain, Cognition and
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the world. The internationally renowned institute currently hosts more than 600 PhD candidates and postdoctoral researchers from more than 45 countries, offering a stimulating, multidisciplinary and highly
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, and with a postdoctoral researcher, contributing to the ERC Starting Grant project “Avicenna Live: The Immediate Context of Avicenna’s Intellectual Formation” (ALIVE) . You will produce original
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. We are embedded in a world-class research group in the field of data science and machine learning, with strong ties to the Radboud Institute for Molecular Life Sciences as well as to collaborating
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laboratory-scale bioreactors and immersive field studies. As a PhD candidate, you will be given many opportunities to be creative and innovative and to perform cutting-edge microbiological, molecular
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projects. This provides us with a very active and open environment, and help us identify new problems in trace detection for us to solve. The TDLab is embedded in the Institute for Molecules and Materials
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, Biology, Molecular Life Sciences, or a related field. Prior experience in microbiology research and bioinformatics is advantageous. You are proficient in English and have good communication skills. You can
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methods for annotating viral genomes. During this project, you will join a dynamic and diverse research team in the Department of Microbiology at the Radboud Institute for Biological and Environmental
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. Besides the Molecular Materials group and the Life Science Trace Detection Laboratory at Radboud, several private parties have joined the consortium. Will you join us in this important step to fight
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the Neural Computation and Neurotechnology research theme at the Donders Institute. This is a highly collaborative project with opportunities to test developed algorithms within the cortical visual prosthesis