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We are seeking a highly motivated candidate with expertise in single-crystal X-ray diffraction (SCXRD) for a two-year postdoctoral position in materials science at the DanMAX and SINCRYS beamlines
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and single-molecule localization microscopy, with the aim of enabling dynamic observation of living biological systems and nanostructures. This research lies at the interface of physics, physical
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Small Organic Molecules, T. Mori, 2020, Springer; [2] E. M. Sánchez-Carnerero, A. R. Agarrabeitia, F. Moreno, B. L. Maroto, G. Muller, M. J. Ortiz and S. de la Moya, Chem. Eur. J. 2015, 21, 13488; G
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applications of a microfluidic platform for analysing protein aggregation, with a focus on developing and further improving the single-molecule optical technology used for detection, a project funded by the
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Albert Einstein College of Medicine (Bronx, NY) | New York City, New York | United States | about 2 months ago
who are interested in applying their expertise to small-molecule drug discovery and translational biomedical research. The project will involve the development and optimization of cell-based and
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at the University of Kent. This BBSRC-funded interdisciplinary project will use state-of-the-art single molecule imaging techniques to explore how muscle is activated and relaxed, generating insights relevant to both
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spectroscopic and physical techniques including single-crystal X-ray crystallography, and their use as supports for one or more magnetic ions and molecules to study the quantum properties on a model surface
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will work with single molecule techniques, including AFM and magnetic tweezers techniques to study the nanomechanical properties of proteins involved in cellular mechanotransduction. They will also use
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driven postdoctoral researcher to join a BBSRC-funded project in Single Molecule Proteomics. About the Project This collaborative effort aims to revolutionize how we identify proteins and their
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Yang (Research Team Leader at MPIC). The project aims at developing AI-powered molecular modeling tools to uncover how molecules form atmospheric aerosols — tiny particles with huge impacts on climate