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Field
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-molecule TIRF microscopy, biochemical reconstitution, and fluorescent labeling, we will observe individual RNA molecules and degradosome complexes in action, capturing millisecond-scale dynamics that shape
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techniques such as cryo-electron microscopy, tomography, kinetic assays, and computational analysis. Day-to-day work will include experimental design, data collection and interpretation, close collaboration
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and microfabrication in a clean-room facility Hydrogel formulation, chemical crosslinking, biomechanical sensing Biological sample staining and advanced light microscopy techniques Culture and
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optoelectronic properties at multiple length scales using advanced local microscopy and characterization techniques (such as scanning probe–based approaches); Study of charge transport, recombination, and
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from organic sugar synthesis to their visualization by fluorescence microscopy at various levels of resolution, including their validation in different cellular models. You will have to regularly present
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DNA and RNA extraction and quantification, Western blotting, Real-time, Immunoprecipitation and ELISA Experience with immunofluorescence and fluorescence microscopy Excellent interpersonal skills and
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microscopy and spectroscopy to investigate their unique electronic, structural, and plasmonic properties. Project 2: Exploring the synthesis of metallene layers sandwiched between SiC and graphene
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focuses on methodological development in cryo-electron microscopy (cryo-EM), particularly in image reconstruction and 3D volumetric analysis of macromolecular structures. Rather than aiming to incrementally
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devices using broadband spectroscopy and electron microscopy The position offers a stimulating interdisciplinary environment and opportunities to develop advanced skills in numerical optimization
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for mitochondrial mRNA levels and degradation using a fluorescent microscopy-based approach. The proteins identified in this screening will be further characterized through various molecular, biochemical, and