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Postdoctoral position on transthyretin amyloid formation using X-rays, neutrons and electron microscopy. Description of the project A motivated postdoctoral researcher is sought to work on the
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, advanced light and electron microscopy, and computational life sciences Guidance on relocating and settling in KTH and in Sweden Qualifications Requirements A doctoral degree or an equivalent foreign degree
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purification and characterization of membrane proteins is strongly desirable. Previous experience of biophysical analysis techniques such as ITC, QCMD as well as cryo electron microscopy is highly valuable
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studies, fluorescence techniques and microscopy, protein production, cell culture techniques, live cell imaging. At least one published 1st author paper describing own, original research. The position
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facilities such as MAX IV (Lund), SciLifeLab (Stockholm), and CFIM (Copenhagen), where cryo-electron microscopy (cryo-EM) and tomography (cryo-ET) are performed. The group values a collegial and supportive
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or atomic force microscopy. Importantly, the candidate will be interested in pursuing research that addresses climate change and sustainable development challenges at the intersection of biology and physics
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background in post-AM processing of metal AM components. Skills in powder-based metal AM, materials characterization, microscopy and project coordination are advantageous. Considering project coordination as
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, light and X-ray scattering, cryo-electron and fluorescence microscopy and X-ray crystallography. The experimental and theoretical methods used often have their origins in physics. Significant work is
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science, and two more are for photoemission and electron-ion coincidence studies on gases, clusters and liquids. There is also a port for the user-defined experiments. A description of the beamline can be
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pollen, lichen, zooplankton and disease vectors. In particular relating spectral characteristics of micro and nanofeatures on the targets and validating this through conventional methods such as electron