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Circuits Project description: Neuronal synapses are remarkably heterogeneous and dynamic structures that vary widely in molecular composition, nanostructure, and signaling strength. This rich variety
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The research goal of PCF is to understand and to control liquids and their interfaces from molecular to macroscopic scales. Our research connects fundamental phenomena in static and dynamic wetting, nanofluidics
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LSRI programme BioBeyond_NL. Bring your expertise in chemical biology, bioorganic chemistry, synthetic chemistry and passion for developing new molecular tools to study biomolecular interactions in a
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Sciences, Biobased Sciences, or have a related background (PhD degree is a plus); you have hands-on experience with molecular cloning, protein purification and biochemistry laboratory techniques; proactive
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of projects. Your qualities A PhD in quantitative mass spectrometry-based proteomics and/or structural proteomics. Experience in operating and handling a diversity of mass spectrometers independently. Strong
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screening platform for molecular profiling, with potential to bridge multiple applications and scientific fields. Previously, in collaboration with dsm-firmenich, we developed an automated system for stopped
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wired to regulate the deposition of cell wall polymer suberin across different tissues with different dynamics. Specifically, MYBstery aims to uncover the transcriptional (UU, this position) and post
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candidates working on related topics, including nanoparticle database curation, molecular dynamics-based transport modelling, and reinforcement learning for treatment optimization. Contribute to high-impact
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techniques and approaches. There will be ample opportunities to supervise PhD, MSc and BSc students in the group, and to become familiar with grant writing and funding acquisition. Careers advice and
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with binding. You will work closely with three PhD students who develop the microbubbles and tune their molecular targeting and viscoelastic shell properties. You will have substantial freedom to develop