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aims to develop physics-informed artificial intelligence tools for single-molecule fluorescence microscopy. The PhD student will focus on designing AI-based methods for quantitative analysis of protein
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. Cell culture and genetic manipulation, including lentivirus production, transduction, transfection, and CRISPR/Cas9 genome editing. 2. Live-cell imaging using confocal microscopy, along with quantitative
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by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR and elemental analysis, among others). Morphological characteriztion electron microscopy, (SEM, TEM, etc...), DLS, etc. Determine
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pohonons and orbital magnetization dynamics in nanodevices ChiPhonOrb The candidate will perform experiments in nanodevices where acoustic signals can be triggered. MOKE microscopy, ac-dc magnetoresistance
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details: https://seu.ub.edu/ofertaPublicaCategoriaPublic/cercadorPublicacio/833627 Where to apply Website http://www.ub.edu/caiac/solBeca?idConvocatoria=50374 Requirements Research FieldPhysicsEducation
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of Medicine and Health Sciences of the University of Barcelona. Where to apply Website https://t.ly/T0fdr Requirements Research FieldBiological sciencesEducation LevelMaster Degree or equivalent Research
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tumor-on-a-chip models fabrication and set-up Experience in confocal microscopy and imaging Excellent organizational and multitasking abilities Strong time-management skills Advantageous: Knowledge in
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functionalization. Chemical characterization by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR and elemental analysis, among others). Morphological characteriztion electron microscopy, (SEM, TEM
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microscopy, iv) tune symmetry with gating and stacking order to realize deterministic, field-free switching and v) identify the dominant charge to spin conversion channels. The project advances fundamental
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merit-based recruitment. (Available at: https://www.cicancer.org/about-cic/hrs4r The recruitment of research/technical staff by the Foundation is in accordance with the Foundation's Equality Plan