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similarities to the famous cuprate superconductors, but many other aspects, including the nominal d occupation of the Ni cations, also differ significantly from the cuprates. Job description This computational
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differently in vitro and in vivo. The overall goal of this project is to bridge this gap by engineering an advanced organotypic 3D bone culture system that better replicates the biophysical and biochemical
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solutions, work independently You have a background in heterogenous catalysis, photocatalysis, electrocatalysis, or microfluidics You understand the principles behind the different spectroscopic techniques
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language for scientific computing (C/C++, Matlab, Fortran, Python, Julia, …) Good communication skills and willingness to work in collaborative projects with multiple partners and present results
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/C++, Matlab, Fortran, Python, Julia, …) Good communication skills and willingness to work in collaborative projects with multiple partners and present results at conferences, project meetings and
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different environmental compartments. Our mission is to understand and predict environmental distributions of health-impacting trace elements to prevent health hazards, today and in the future. Project