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. Description: Cosmic rays make up a plasma of relativistic particles that pervade the galaxy and constitute a considerable fraction of its energy density. Theoretical cosmic-ray research in the Laboratory
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objects and associated with particle dark matter. The goal of this research is to identify sources of astrophysical neutrinos and the highest energy cosmic rays and identify prospects for multi-messenger
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on crystal structure determination using electron or X-ray crystallography. Candidates must have substantial experience in crystallography, specifically in the structure solution and refinement of small
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or deadline for this position has passed and new applications are no longer accepted. *** Position Description The Gamma-ray Astronomy research group at the Institut de Física d’Altes Energies (IFAE) in
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ophthalmoscope using ray-tracing methods, research on new scanning protocols to optimize photon conting Participation in the development of demonstrators of the developed technologies Application of the developed
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at New York University More Jobs from This Employer https://main.hercjobs.org/jobs/22146996/associate-research-scientist-in-the-division-of-science-x28-mathematics-x-ray-x29-dr-pan-x10d-e-naumov Return
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Offer Description Scope of work The successful PhD candidates will be part of the group created by dr Jacek Herbrych (https://jacekherbrych.github.io ) within project NCN SONATA BIS 13 2023/50/E/ST3/00033
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of security screening technology. Their product portfolio includes x-ray screening for cargo and vehicles, aviation x-ray CT scanners for hold and carry-on luggage, radiation detectors, trace chemical detectors
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techniques to assess process outcomes, material quality, and device performance, including optical microscopy, photoluminescence, scanning electron microscopy (SEM), atomic force microscopy (AFM), x-ray
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the group of dr Jacek Herbrych (https://jacekherbrych.github.io ) within project NCN SONATA BIS 13 2023/50/E/ST3/00033 entitled “Properties of low-dimensional quantum systems with charge, spin, and orbital