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Modeling: Generating and maintaining patient-stratified iPSC lines and innovative 3D "brain chimeroid" models. o Advanced Neurophysiology: Assessing functional network activity and synaptic dynamics using
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, fabrication, and testing of smart masonry components, including smart bricks and mortar-based sensing layers, also using 3D printing technologies. Where to apply Website https://pica.cineca.it/unipg
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MODULES FOR OPTIMIZATION (CODE: C-028/26). More information: https://tablon.upct.es/anuncio/ 49bnRxNb 8 w Deadline for submission of applications: July 28. TITLE OF THE POSITION OFFERED: Development
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modelling for planning structural heart interventions. Where to apply Website https://2411.webcruiter.no/Main2/Recruit/Public/5167557384 Requirements Research FieldEngineering » Biomedical
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to contribute to a research project within the Shared Hub for Immersive Future Technologies https://www.gre.ac.uk/las/ice/shift This is a short term fractional position over 9 weeks, during which you will
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aging in budding yeast. Working under direct supervision, this role utilizes cutting-edge tools including 3D-printed mini-chemostat aging devices, flow cytometry, and timelapse fluorescence microscopy
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CureHeart (https://cureheart.org/) team at the University of Oxford. CureHeart is an Oxford-led international research programme aiming to develop cures for inherited cardiomyopathies using advanced genetic
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strains) and assess their role in CaCO3 dissolution, before and after pressurisation. • Develop and run multiphysics numerical models in COMSOL (3D geometries from tomography, transport–reaction coupling
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have access to state-of-the-art facilities, including cleanroom microfabrication, laser micromachining, 3D printing, advanced microscopy, and numerical modeling tools. The project benefits from a close
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, and the operation of digital fabrication equipment including laser cutters, CNC routers, 3D printers, and 3D scanning technologies. Monitor, maintain, and troubleshoot studio equipment to ensure safe