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Field
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pioneering method for obtaining the full conformational landscapes of biomolecular complexes at atomic scale from cryo electron microscopy (cryo-EM) images. It has been shown that MDSPACE analyzes
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Time-Domain Spectroscopy, Hall measurements, Raman microscopy, device fabrication, Scanning Electron Microscopy, Instrument control in LabVIEW or python, synthesis of 2D materials, 2D materials
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will combine infection models and patient-derived samples with approaches spanning cell and structural biology, supported by advanced imaging techniques, including cryo-electron microscopy (cryo-EM) and
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attainment: completed Ph.D. Qualification level: R1 Professional requirements: a minimum of 2-year postdoc experience proficiency with flow cytometric, confocal microscopy and fluorescence microscopy
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email to jessica.clough@unifr.ch by 26th April 2026, with the subject line “Postdoc Mechano-Raman”. Informal enquiries are welcome. Where to apply E-mail jessica.clough@unifr.ch Requirements Research
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interdisciplinary approaches that combine advanced microscopy (confocal, electron, in vivo multi-photon), viral vectors, protein engineering, mouse models, and multi-omics analyses. For further information on the lab
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Offer Description Chalmers University of Technology is looking to hire a postdoc for a minimum of two years, with the possibility of a one-year extension, to work on single-nanoparticle microscopy using a
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 5 days ago
https://unc.peopleadmin.com/postings/315681 Posting Contact Information Department Contact Name and Title Sarah Willis, HR Consultant Department Contact Telephone or Email sarah_a_willis@med.unc.edu
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Chalmers University of Technology is looking to hire a postdoc for a minimum of two years, with the possibility of a one-year extension, to work on single-nanoparticle microscopy using a planar
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strongly encouraged to apply. Lab overview: The Hinshaw Lab uses cryo-electron microscopy, chemical biology, and genetics to study and manipulate the protein assemblies that govern chromosome segregation