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Field
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structures, domain walls, and topological defects govern macroscopic functionality. In this project, we will employ cutting-edge synchrotron-based 3D imaging techniques to directly visualize ferroic order at
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‐based visualization and user-interaction interfaces, including 3D modelling, physics integration, and cross-platform deployment (PC, mobile, AR); integrating and deploying AR navigation applications
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experience mentoring/teaching, curriculum or workshop development. Experience with safety standards for robotics labs and human–robot interaction studies. Experience with CUDA/accelerators; optimization; SLAM
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for multiple applications, particularly for seabed seismology. In addition, the ABYSS project will offer very rich interactions with a group of nine people on a wide range of seismological applications of DAS
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at New York University Abu Dhabi is seeking postdocs who are passionate about any or all of the following: Data Science, Computational Social Science, Behavioral Economics, Human-Bot interaction
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* lead the independent project(s), designs, develops, executes, and implements scientific experiments, adopt novel technologies to the sample analysis, produce and visualize data for presentation
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of robots to interact with the surrounding environment and humans during the execution of specific tasks. Project description You will be working in the field of robotics and artificial intelligence. More
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on advanced (nano)materials—particularly single‑atom materials (SAMs) on carbon platforms—and their interactions with relevant cellular models in nanomedicine and nanotoxicology. You will join an international
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geographic and taxonomic scope of the analysis, develop approaches to link plant distribution data to (historic) urbanization data, perform data analyses and visualizations to reveal historic trends in species
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for predictive and prescriptive urban data analysis. Experience in visualizing and analyzing spatial and functional interactions within urban infrastructure. Personal and Organizational Skills Ability to model