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University of California, San Francisco | San Francisco, California | United States | about 1 month ago
Center for Advanced 3D Tech Full Time 86907BR Job Summary The 3D Printing and Design Engineer will function as a project manager in the UCSF Center for Advanced 3D+ Applications (CA3D+). They will
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breast cancer dormancy -Participate in the development of novel biomaterials to model in vitro breast cancer micro-units in controlled 2D and 3D microenvironments -Monitoring breast cancer cell dynamics
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at the intersection of artificial intelligence and cultural heritage. The successful candidate will be involved in cutting-edge research and development in 3D computer vision and machine learning for the digital
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cell-derived muscle models or 3D culture systems (including physiological hypoxia) is a plus. Experience in biochemical and immunological mechanisms of immune-suppression Position Type Research
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Optimized Routing with 3D Loading Constraints (ORoLoC3D) Where
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The Singapore Centre for 3D Printing (SC3DP) drives research development and industry adoption of additive manufacturing technology through collaborative projects with leading industry partners, and
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to the development of innovative STEM modules within 3D, VR, and XR environments. Your objective will be to design and validate learning experiences incorporating elements of gamification and adaptive learning. We
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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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about the program can be found at: https://vapa.uccs.edu/academics/visual-art Essential Functions The duties and responsibilities of the position include, but are not limited to: Demonstrate a strong on
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- Processing of data measuring facial elasticity in patients - Processing of data capturing 3D surfaces based on facial expressions - Numerical simulations (Finite Element) of bone repositioning - Quantification