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will engineer multifunctional materials using techniques such as electrodeposition and dip coating and validate their performance through biological assays using innovative 3D skin models and co-cultures
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analysis, AI algorithm modeling, testing, and integration into functional systems within the project scope. Specifically, in activities related to behavior modeling from IoT device data, generative AI
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, cardiac and retinal derivatives from human pluripotent stem cells (hPSCs) in 2D and 3D cell culture settings. • Development of patient-CAKUT hPSCs to model disease mechanisms. • Design and fabrication
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: Communication, Teamwork and collaboration, Commitment, Proactivity, Integrity, Critical and Analytical thinking. High level of English. Advantageous: Experience in 3D printing, skills in CAD modelling (e.g
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experience within the field of microchip based acoustofluidics documented experience of COMSOL-modelling within fluid mechanics, acoustofluidics and microfluidics documented experience of acoustofluidic based
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cells (hPSCs) using 2D and 3D culture systems, including cerebral organoids. Developing and characterizing patient-derived and mouse-derived models of tauopathies, both in vitro and in vivo, to uncover
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microbial biotechnology components into designs for a 3D bioreactor, whilst also optimising co-culturing methods and post-growth materials testing and characterisation. These materials will incorporate
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with High-Resolution Seismic Interpretation”. This project focuses on core analysis and 3D seismic interpretation of turbidite sandstones in the Draupne Formation, Tampen Spur area, Northern North Sea
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effect on assembly and collaborate to quantify the effect on optical properties. Our goal is to self-assemble NPLs into 1D, 2D and 3D superstructures and understand how ligand shells affect the process
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for Bioengineering of Catalonia (IBEC) is looking for a Pre-doctoral Researcher to conduct her/his predoctoral training on advanced cancer in vitro models to study critical steps of the cancer immunity cycle. The aim