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Job description We’re looking for a postdoc with hands-on experience in genetically modifying marine phytoplankton—someone excited to learn how microbes naturally sequester carbon in the environment
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An environment that promotes personal development. In particular, a dedicated training program to broaden your expertise and enhance your skill set Scientific guidance at an internationally
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extension to 3-5 years. If you are interested, please include the following in your application: A description of why you are interested in this postdoc position and your career aspirations A description of
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this specificity and test how these regulate structure and function of higher-order thalamocortical inputs in cortical circuits. The applicant will use various technologies, including super-resolution imaging
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more than 6000 employees from 100 different countries, we are helping to build tomorrow's world every day. Through top scientific research, we push back boundaries and set a course for the future – a future
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Postdoctoral position to study species-specific mechanisms of gene regulation in human neurons. The Vanderhaeghen Lab (https://pvdhlab.org ) and the Aerts Lab (www.aertslab.org ) at VIB KULeuven
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regulation using single-cell and spatial multi-omics data; AI-based modeling of protein structure and protein interaction networks; AI-based modeling of cell morphology and tissue function using imaging and
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FWO-UGent funded bioinformatics postdocs: Unveiling the significance of gene loss in plant evolution
at Ghent University/VIB Staff Scientist. The two positions are funded through an FWO research grant awarded to Prof. Dr. Zhen Li and will focus on the evolutionary significance of gene loss in shaping plant
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for Microbiology and VIB.AI, creating a unique interdisciplinary environment for this research project. About the project This position offers the opportunity to lead a cutting-edge project at the intersection
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offering a postdoctoral position funded by an ERC project aimed at revolutionizing therapeutic delivery into the brain via the blood-CSF barrier. Our pioneering research harnesses the power of single-domain