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. This aggregate will constitute a proof of concept for new metallic electrodes directly printed within a host material using a technique similar to 3D printing. The first step will be to synthesize the nanowires in
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Occluding Device Sizing for LAAC in 3D TEE ( AUTO-LAAC), code LCF/TR/CI25/56020040, CaixaImpulse Innovation 2025 , funded by the “la Caixa” Foundation. Scientific Area: Electrical Engineering, Electronic
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Occluding Device Sizing for LAAC in 3D TEE ( AUTO-LAAC), code LCF/TR/CI25/56020040, CaixaImpulse Innovation 2025 , funded by the ‘”la Caixa” Foundation. Scientific Areas: Electrical Engineering, Electronic
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ideal condition to support 3D cell growth via cell-microgel scaffold formation and additive manufacturing. This highly interdisciplinary position will cover material synthesis, microgel production via
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curriculum, including hands-on instruction with digital fabrication tools and software such as 3D printers, laser cutters, CNC mills, 2D vector design tools, and 3D CAD software. ● Serve as a peer-level
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teaching positions. Successful candidates will be industry-leading animators (2D and/or 3D) and game designers (2D and/or 3D) who can demonstrate forward-thinking creativity and exceptional ability as
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, demonstrate equipment capabilities, troubleshoot basic issues, and guide users through the workflows for various technologies including introductory 3D scanning, 3D printing, Virtual Reality, Cricut cutting
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Fuel Cells (MFCs) by developing 3D-printed titanium electrodes using Laser Powder Bed Fusion (LPBF) technology to achieve trabecular and porous structures optimised for microbial growth. Titanium is
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