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- UNIVERSIDAD POLITECNICA DE MADRID
- Universitat Autonoma de Barcelona
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- Centre Internacional de Mètodes Numèrics en la Enginyeria
- FUNDACIO INSTITU DE RECERCA EN ENERGIA DE CATALUNYA
- Institute for bioengineering of Catalonia, IBEC
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VALIDATED IN CLINICAL SETTINGS. To develop the following tasks: Development of a predictive model based on finite element simulations of vertebral metastasis. Simulation of different configurations
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both diffusive and nondiffusive simulations including hydrodynamic transport effects with a Finite Element solver. The final goal is to identify deviations from macroscopic diffusion in a range of
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/Qualifications -Manejo de herramientas de simulación por elementos finitos / Use of finite element simulation tools -Manejo de instrumentación de laboratorios de electrónica / Use of electronic laboratory
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Engineering Master Degree in Earth Sciences Experience in programming and high-performance computing (HPC). Experience in finite element numerical modelling and stabilisation techniques. Experience in
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encompasses various in silico modeling techniques to cover the multiple spatial scales, i.e. from molecular detailed to multicellular high-level regulatory networks, up to tissue level finite element models
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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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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