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Field
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-scale, shallow, planar cracks in rocks, faults span a broad range of length scales (10-6-103 km) and surface-to-depth widths (1-102 km) and have a complex 3D architecture (e.g., Giampietro et al., 2025
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the collection of digital data from archaeological remains to the creation of 3D reconstructions of these environments. The second part is directed towards integrating the 3D models with other digital tools (e.g
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research to develop new mathematics and algorithms for analyzing complex data from DOE experimental facilities. Develop new mathematical algorithms targeting one or more focus areas: (1) 3D+ reconstruction
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into the overall study conducted by the Rubiacum team (chronology of development phases of the town wall; graphical reconstruction of structures and their functioning) Related activities : Archival research (on site
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. size-selected cluster sources. Catalytic testing using ultra-sensitive chip-interfaced electrochemistry–mass spectrometry (EC–MS) and ultra-high-vacuum-compatible thermal catalytic setups. 3D atomic
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workflows (e.g., Kilosort, SpikeInterface) and neural data quality control Experience with imaging data processing, anatomical or functional registration, and 3D planning/reconstruction for recording
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be used to prepare lamella samples for high resolution cryo-EM imaging and tomography. From AI assisted image analysis, 3D models for key proteins and biomolecular complexes will be fitted into 3D
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. size-selected cluster sources. Catalytic testing using ultra-sensitive chip-interfaced electrochemistry–mass spectrometry (EC–MS) and ultra-high-vacuum-compatible thermal catalytic setups. 3D atomic
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FieldAstronomyEducation LevelPhD or equivalent Skills/Qualifications Good knowledge of - The300 sims - Disperse application on density field distributions (2D & 3D) - galaxy clusters and cosmology - SZ and X ray cluster
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be used to prepare lamella samples for high resolution cryo-EM imaging and tomography. From AI assisted image analysis, 3D models for key proteins and biomolecular complexes will be fitted into 3D