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and implement robotic control systems Optimization of formulation for UV 3D printing / direct ink writing 3D printing Contribute to ongoing soft robotics research Design and prototype using CAD software
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-driving lab hardware and software protocols. The role will focus on ultra-low cost self-driving lab systems, reproducing systems via 3D printing, programming microcontroller firmware, and producing
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the team of the NAMIC Project for 3DP Ship Hull Design. The Research Engineer will play a critical role in the development, validation, and optimization of 3D-printed Ship Hull and Connector System
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with a focus on complex shoulder girdle and chest wall pathology, alongside additional subspecialty topics. Our research program emphasizes advanced medical technologies, including 3D printing
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techniques. This project aims to enhance the processability of reversible polymer networks for conventional thermoplastic methods, including extrusion, injection moulding, and 3D printing, by adjusting
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in the School of Civil and Environmental Engineering (CEE) and conduct research on digital manufacturing strategies for construction, with a particular focus on 3D concrete printing and architected
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) Rapid Prototyping (3D printing, Raspberry Pi, FPGA) Electrode patterning and cleanroom fabrication techniques Good team player with strong interpersonal skills Entry level applicants will also be
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(https://qomix.weebly.com/), which is focussed on quantum science with ultracold atoms and quantum technologies based on advanced 3D-printing methods. Our areas of interest include fundamental questions in
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of engineered surfaces within the Nano Mechanics and Tribology Laboratory. Research areas include two-photon lithography (TPL) 3D printing, coatings and thin films, adhesion science, and nanomechanical
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grant, with 1 position(s), under the project Liquid3D GA:101045072, title Liquid3D : 3D Printed Soft-Matter Electronics based on Liquid Metal Composites: Nature Inspired, Nature-Friendly, Resilient