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bottom-up approaches for investigating the mechanisms of chaperone-mediated protein folding. Your responsibilities will include: conducting independent experimental work and perform data analysis
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only advance fundamental science but also engage the public in the journey of discovery. In this specific project “Experimental Exploration of Protocell Formation on Early Earth” we will specifically
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Vacancies PhD position on ‘Quantitative and Spatially Resolved Mechanical and Electrical Characterization of high tech functionalized Pigments‘ Key takeaways In this project, you will develop and
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mechanism to cope with a rapidly changing world”, with the Seychelles warbler (Acrocephalus sechellensis) as a model system. The project is coordinated by Prof. Jan Komdeur (see: https://research.rug.nl/en
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that activity-silent mechanisms, such as short-term synaptic plasticity, also play an important role. We will experimentally target these two mechanisms, using EEG in combination with machine learning to reveal
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couplings enable self-alignment purely through geometry and contact mechanics, offering a fast, robust, and repeatable solution for high-tech applications. Although the concept of kinematic couplings has
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material models based on advanced ML methods, and to seamlessly integrate these models into Finite Element Modelling (FEM) to replace expensive and time-consuming experimental procedures, thereby enhancing
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? Then consider advancing these theories with us. In this project, we aim to extend the powerful tools of statistical mechanics on graph and network models to broader applications in soft and active
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ensembles. The Incarnato group uses both prokaryotic and eukaryotic cellular models and exploits (or develops where needed) cutting-edge experimental methods (Marinus et al., 2021 [PMID: 33398343]; Incarnato
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. This modelling will be supported by targeted experimental work, aiming to establish a robust method for assessing accumulated fatigue damage in a remanufactured bearing and, more generally, in remanufactured steel