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National Aeronautics and Space Administration (NASA) | Hampton, Virginia | United States | 14 days ago
. The Durability, Damage Tolerance, and Reliability Branch (DDTRB) conducts a broad-based research and technology program that quantifies behavior, durability, and damage tolerance of structural materials; develops
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structure can be controlled to develop multifunctional surfaces for applications in photonics and related technologies. Research activities may include the development of nanostructured surfaces with tailored
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manipulating these affect the nanoscale chemical and structural composition of perovskite thin-films. Through gaining understanding and control of these systems from the nanoscale, this project aims to deliver
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. Olga Fink ). IMOS develops advanced machine-learning and AI methods for complex engineering and industrial systems, with a particular focus on improving their reliability, availability, and operational
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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral Researcher in Time-resolved X-ray Nanoimaging for Semiconductor Reliability Mission
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, as these aspects are central to the development of reliable and efficient engineering solutions. You are able to present your research in a clear and structured manner in scientific papers and at
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machine-learning and AI methods for complex engineering and industrial systems, with a particular focus on improving their reliability, availability, and operational performance while enabling more
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MinION (SNPs, structural variants, transposable elements, …) - Analyses of evolutionary genomics (phylogenomics, orthology, selection, synteny) -Contribution to data production (strain collection and
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scales. We integrate paleomagnetism and rock magnetism with field geology, structural geology, tectonics, geophysics and geodynamic modelling to address plate-boundary evolution, lithospheric deformation
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that learn multiple-state adiabatic potential-energy surfaces, energies, gradients or forces, derivative nonadiabatic couplings, and state-transition behavior from electronic-structure data. Design reliable