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techniques, confocal microscopy, and molecular genetics using the model organism Drosophila melanogaster. Advanced knowledge in gene expression regulation will also be valued. 5. Eligibility: Applicants
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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 optimize existing
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micro-CT, transmission electron microscopy, and neutron reflectometry and imaging applying both white beam and time-of-flight neutrons at international large-scale facilities (e.g. PSI and ESS
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in immunology. practical experience in immunology, flow cytometry and microscopy; strong analytical and problem-solving skills; a flexible, pro-active team spirit; excellent communication skills in
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https://www.science.org/content/article/metal-scaffolds-turn-bacteria-live-wires . [1] Postdoctoral fellow: high resolution microscopy and immunolabeling of conductive structures in multicellular cable
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at the University of Oregon. CAMCOR hosts capital-intensive equipment for microanalysis, surface analysis, electron microscopy, semiconductor device fabrication, and traditional chemical characterization. Run by
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of dilutions, light microscopy, tissue staining techniques, sterile methods in bacteriology, and living organism culturing and sub-culturing. Knowledge of lab safety issues: OSHA standards pertaining to science
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of Ect2 in PDAC patient tumours The project will use a combination of cell and molecular biology approaches (including CRISPR gene editing, western blotting, flow cytometry), advanced microscopy (live cell
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of Operating Microelectronic Devices by X-ray Diffraction Microscopy Beamline ID01, at the ESRF is a world leading instrument dedicated to micro- and nano-beam X-ray diffraction imaging experiments. It enables
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our department range from clinical pharmacology, systems pharmacology, to basic molecular and cellular pharmacology. More information on the department is available at http://medicine.nus.edu.sg/medphc