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researcher and as a person. Do you want to build the next generation of electronics? Europe is racing to regain ground in semiconductor technology, and chiplets – several small dies packaged together into one
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with experience in zebrafish work, advanced microscopy (in vivo imaging, confocal microscopy), host–pathogen interactions, innate immunity, vaccination, gene expression analysis, or cell-based assays
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to build the next generation of electronics? Europe is racing to regain ground in semiconductor technology, and chiplets – several small dies packaged together into one working system – are one of the keys
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desirable: microwave engineering, confocal microscopy, scanning probe microscopy, magnetic resonance spectroscopy, and scientific programming in Python. Prior experience with hardware electronics such as
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isolation; electron microscopy and nanoparticle tracking analysis for vesicle characterization; RNA isolation and PCR; SDS-PAGE-based protein analysis; cell culture and immunostimulation experiments; and flow
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Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive
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Warsaw University of Technology/Centre for Advanced Materials and Technologies, CEZAMAT | Poland | about 1 month ago
, lithography, plasma deposition, and thermal processes Development and execution of inter-process inspections, including scanning electron microscopy, optical microscopy, atomic force microscopy, ellipsometry
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mechanisms of action, such as fluorescence microscopy, immunoassays, RT-qPCR, Western blotting and immunohistochemical staining; participation in the preparation, optimisation and characterisation
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materials. Structural and morphological characterization techniques, such as electron microscopy, X-ray-based techniques, or related methods. Thermoelectric materials and devices, or thermal energy harvesting
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, physiology-aware models of bacteriophage infection by combining high-throughput single-cell microscopy, microfluidics, image analysis, and mathematical modelling. The work will contribute to understanding how