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such as microelectronics and self-assembly of nanocomposites. Therefore, we seek highly motivated candidates to drive the project independently while interacting closely with senior members of the research
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completed. Knowledge of x-ray/optical/electron physics, including diffraction, optics, detectors, scattering etc. Experience with deep learning (DL) libraries such as Tensorflow, PyTorch, JAX etc. Experience
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learning methods and frameworks especially applied to physical science problems. Experience with x-ray data analysis and/or modeling, such as crystallography, diffraction, or spectroscopy data analysis and
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defect centers. This project aims to explore the use in-situ x-ray diffraction techniques available at the newly-upgraded Advanced Photon Source synchrotron at Argonne as a means to gain new insights
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with developing and carrying out synchrotron and free electron laser x-ray diffraction experiments. Job Family Postdoctoral Job Profile Postdoctoral Appointee Worker Type Long-Term (Fixed Term) Time Type
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. Ability to safely handle and manipulate radioactive material while preventing contamination spread. Characterization, i.e., optical spectroscopy, X-ray diffraction, scanning electron microscopic analysis
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Requisition Id 14630 Overview: We are seeking a Postdoctoral Research Associate to work on groundbreaking research focused on techniques for on-the-fly analysis of neutron diffraction data. Oak
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techniques such as X-ray diffraction (XRD), scanning electron microscopy (SEM), atomic force microscopy (AFM), and UV-vis spectroscopy to study their structural, optical, and electronic properties. Fabricate
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, Thermogravimetric Analysis (TGA), X-ray Diffraction (XRD), and Scanning Electron Microscopy (SEM). The role will involve analyzing reaction pathways, improving material formulations, and testing composite performance
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monochromated Nion U-HERMES microscopes scheduled for delivery in 2025. BNL also houses a laser-free ultrafast electron microscope for time-resolved diffraction and imaging under RF excitation. The research will