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The candidate will work on a project that aims to unravel the role of mechanical forces in maintaining and differentiating human embryonic stem cells. Specifically, the candidate will investigate how different
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propagation problems, stochastic partial differential equations, geometric numerical integration, optimization, biomathematics, biostatistics, spatial modeling, Bayesian inference, high-dimensional data, large
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human skin and/or preclinical models. The position will include the following: Designing and performing experiments to investigate TRM heterogeneity, differentiation, and functional states in inflammatory
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computationally challenging. To address this, our research employs advanced computational methods to simplify high-fidelity 1-D hydrodynamic models based on Partial Differential Equations (PDEs). This approach
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to produce photoreceptors from pluripotent stem cells and test these in preclinical animal models. Your mission As a Postdoctoral Researcher, you will work in our team to establish a method for differentiation
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other or with parental species? To what extent are these lineages genetically differentiated? The Postdoc will be working closely with José Cerca at the Swedish Museum of Natural History and Rike Stelkens
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aspects of how a number of hypoxia-induced metabolites influence cellular differentiation and behavior, with a particular focus on metabolites that are related to alpha ketoglutarate. Your profile To be
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dynamical systems theory, including differential equations, simulation techniques, state-space and input-output representations, time-delay embedding, and/or time series analysis from experimental data
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hydrodynamic models based on Partial Differential Equations (PDEs). This approach yields efficient reduced-order models that accurately represent essential lake behaviors with significantly lower computational
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experience with advanced spectroscopy. Documented experience with electrochemical measurements, such as cyclic voltammetry and differential pulse voltammetry. Documented experience with the development