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, updated 2025/11/03, listed until 2026/05/16 04:59 AM UnitedKingdomTime) Position Description: Apply Position Description The Center for High Order Plasma Turbulence Modeling for Z-Pinch (HighZ: https
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. Functions to be developed: Carry out 3D design of parts and assemblies in Creo Parametric and/or Creo Elements. Calculate and simulate finite elements. Prepare plans. Document the manufacturing. Where
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on existing methods, including a foundational model for mapping 2D mouse images to a canonical 3D mesh, with the goal of extending to full 3D reconstruction. This will enable inferring canonical 3D postures
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solar tornadoes. The main objective of this project is to provide 3D directional energy flux maps of the solar atmosphere. It will be achieved by tracking the intricate interplay between plasma flows and
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ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - DIPARTIMENTO DI INGEGNERIA CIVILE, CHIMICA, AMBIENTALE E DEI MATERIALI | Italy | 19 days ago
science, this approach will deliver tools for data-driven, sustainable composite design and inform industry decision-making on a global scale. Parametric modelling with 3D CAD tools and programming
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combines technical expertise in 3D content creation and animation with cutting-edge virtual production workflows, including LED volume systems, motion capture technologies, and real-time rendering pipelines
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Queen's University Belfast's innovative MediaLab facility. This position combines technical expertise in 3D content creation and animation with cutting-edge virtual production workflows, including LED
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, scientific and medical meetings Experience in the design and fabrication of medical devices, mechanics of materials, biomaterials, blood-material interactions, 3D printing, computer aided design, and in vitro
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. English fluency is a must. The successful candidate will be able to teach one of the undergraduate courses related to UI UX design, media arts and design, graphic design, product design, 3D technologies
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across HHMI. The Foundational Microscopy Image Analysis (MIA) project sits at the heart of AI@HHMI. Our ambition is big: to create one of the world’s most comprehensive, multimodal 3D/4D microscopy