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indefinite, subject to project funding, with an execution end date of 30 September 2027. Main Responsibilities The researcher will contribute to the following activities: Development and characterization of 3D
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Virtual Material Design (VMD) pipeline for neuromorphic spintronics based on topological spin textures, including 2D skyrmions and 3D hopfions. Project background: Topological spin textures (TSTs) combine
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further development and optimization of the Twin-Pipe Pumping (TPP) technology, a protected, extrusion-based 3D printing technology developed at Ghent University which allows for an increased printing speed
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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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, and phenotypes in disease-relevant contexts. Our research blends engineered 3D biomaterials with advanced imaging and molecular tools to elucidate biological mechanisms that can ultimately inform
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to imagine novel task configurations and learn robust manipulation policies from just a few real demonstrations. You will work at the intersection of 3D computer vision, physical simulation, and robot learning
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(20%) Extending the SOLEDGE3X code to a fully 3D version, including 3D magnetic geometry, working closely with CEA collaborators (50%) Benchmarking fully 3D SOLEDGE3X simulations against experimental
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-changing technologies. Life-changing careers. Learn more about Sandia at: https://www.sandia.gov *These benefits vary by job classification. What Your Job Will Be Like: We are seeking a Postdoctoral
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assistant may be assigned to one or more specialty areas based on departmental needs, including laboratory support, grading assistance, and 3D printing operations. This role provides hands-on experience in
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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