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Field
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Operations Design and Fabrication: Lead the development and optimization of cardiac patches and injectable biotherapeutics using advanced biomaterials and nanovesicle technologies. Animal Models: Perform
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associate to develop deep learning algorithms: 1) to model 3D protein complex structures and impact of mutations/PTMs on protein structure and interactions; and 2) to dissect functional elements (e.g
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knowledge of microfluidic automation, including actuators like pumps, valves, and electromagnetic components, along with heat transfer concepts. Familiarity with 3D printing or other rapid prototyping methods
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sub-area of Biotechnology Applied to Health, the opening of this call comes under the Project Application of cell sheet engineering to model blood-brain barrier in a glioblastoma scenario”, Project n.º
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collaboratively in interdisciplinary teams. Excellent scientific writing and communication skills in English. Expected Outcomes: Perform and validate 3D CFD models that accurately represent the CSTR co
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), positron emission tomography (PET), functional MRI (fMRI), electroencephalography (EEG), behavior, genetics, and proteomics using advanced quantitative modeling techniques and artificial intelligence
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sub-area of Biotechnology Applied to Health, the opening of this call comes under the Projet “Intestinal in vitro biofabricated on-chip model to understand tissue-microbiota interactions”, Project n.º
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(NUCLEI); and two Topical Collaborations: 1) 3D quark-gluon structure of hadrons: mass, spin, and tomography, and 2) Nuclear Theory for New Physics. Further information on our group and its research
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support the development of surrogate continuum models to study heat dissipation and PCM integration in 2D/3D nanodevice arrays and micro-packaging. Interface sub-continuum modelling outputs with chip-level
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devoted to computational modeling of atmospheric acoustics and generation of scholarly products (papers and presentations). Approximately 60% of the postdoctoral scholar’s time will be devoted to managing