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finite element modeling to study the thermal transport in electrochemical devices based on these 2D materials. Where to apply E-mail ofertas_euraxess@icmm.csic.es Requirements Research
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Research Infrastructure? No Offer Description Doctoral Candidate (DC7) Project: Microstructure, nanomorphology formation and stability of non-fullerene acceptor active layers This position is one of the 10
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communication skills in English Strong background and knowledge of the Finite Element Method or any other relevant numerical methodology. Other valued skills (not mandatory): Authorship or co-authorship of journal
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Materials. The research aims to generate a unique dataset to understand the microstructural, thermomechanical, and reactive behavior of EMs subjected to a wide range of strain rates, temperatures, and
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in biomaterials and bioprinting Experience in computational fluidic dynamics (i.e., COMSOL, Ansys Fluent) Experience in cell culture Knowledge of microfluidics computer simulation finite element
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superconducting and exhibit novel vortex phases. Although disorder typically degrades superconductivity, if properly engineered, it can serve as a powerful vortex pinning source, which makes microstructure
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characterization of advanced materials with unique properties for innovative engineering applications. We develop materials with precisely controlled nanoscale microstructures, enabling enhanced mechanical, magnetic
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: Ph.D with postdoctoral experience in chemistry, physics, biophysics, biomedical engineering, nanotechnology, and related with focus in translational (nano)medicine. At least six years have passed since
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macrolactams, retinoids and carotenoids. Synthesis of precursors for metal-organic frameworks (MOFs) and specific polymers for the selective capture of pollutants. Where to apply Website https://sede.uvigo.gal
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person with collaborators and contribute with international experience to enrich the network of collaborators of the group. Requirements for candidates: Essential: Ph.D with postdoctoral experience in