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Field
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of advanced scanning/transmission electron microscopy (S/TEM) methods for cutting-edge scientific research in areas such as quantum materials and low-dimensional energy systems. This position emphasizes
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The Center for Nanoscale Materials (CNM) at Argonne National Laboratory is seeking an exceptional Postdoctoral Researcher to join the Electron & X-ray Microscopy Group in a core position within the
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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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biology, molecular biology, protein expression, purification, and biochemistry, and cryogenic electron microscopy, and protein crystallography. The laboratory has access to a large cast of outstanding Cores
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The CFN is seeking an exceptional Postdoctoral Research Associate to conduct research directed to developing state-of-the-art electron microscopy techniques particularly to probe amorphous materials
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Postdoctoral Research Associate in Sum-Frequency Generation Microscopy of Biomolecular Self-Assembly
Research Associate (d/f/m) in Sum-Frequency Generation Microscopy of Biomolecular Self-Assembly with a duration of up to 3 years. In this position, you would join the project using the recently developed and
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: bacteriology, fluorescence microscopy, electron microscopy, antibiotic assays, biochemical purifications, biochemical assays such as binding assays and protein gel electrophoresis, as well as analytical methods
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-mechanical testing of interfaces in multilayered films across a wide range of temperatures (cryogenic to elevated temperatures) and strain rates using in situ SEM techniques Electron microscopy-based
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methods (e.g., AFM, Nano-IR, STM, SECCM, SICM, SECM), advanced light and electron microscopy, materials synthesis (e.g., conductive metal-organic frameworks, 2D/hierarchical structures, nanoparticles
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in binding, and the biochemical/ biophysical properties of MX2’s amino terminus. In the longer-term we will develop collaborations that will exploit electron microscopy to examine the effect of MX2