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investigates the molecular mechanisms that regulate epithelial survival, differentiation, cell adhesion, tissue repair, and disease development. Current projects integrate advanced light microscopy, cell and
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/molecular biology techniques, and high-resolution live cell fluorescence microscopy are required. Experience in coding for microscopy analysis and extensive experience with organelle and adhesion biology are
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analysis (microscopy, spectroscopy) to investigate the fundamentals of radiation effects in electronics and shielding. Analyze data. Disseminate findings in journals and conferences and monthly presentations
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using cryo-Electron Microscopy, and biophysical and biochemical methods. Applicants must hold a Ph.D. and have expertise in molecular biology, biochemical or biophysical characterization of macromolecular
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analysis via high-resolution microscopies. The candidate will be actively collaborating with multiple academic and industry team members and thus good communication skills are desired. The candidate is
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biology, biochemistry and biophysical chemistry. The position requires a PhD in Chemistry (or an equivalent doctorate in an appropriate field) with a focus on cryogenic electron microscopy (Cryo-EM) and/or
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/molecular biology techniques and fluorescence microscopy are strongly preferred. Experience with mouse handling, tissue dissections and mouse genetics are also desirable. Responsibilities: Independently drive
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structure and function of cellular RNA polymerase transcription complexes using cryo-electron microscopy, biophysics, and biochemical methods. Applicants must hold a PhD in biochemistry, biophysics
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-molecule super-resolution imaging, advanced lattice light sheet microscopy and other state of the art biophysical approaches to study molecular mechanisms of transcription, genome organization and bio
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and/or experimental analysis (microscopy, spectroscopy) to investigate the fundamentals of radiation effects in electronics. Analyze data. Disseminate findings in journals and conferences