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- COMPETE2030-FEDER-00728700, funded by the Foundation for Science and Technology | FCT, through the Innovation and Digital Transition Program | Compete 2030, Competition for R&D Projects in All Scientific
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microscaffolds. Experience with scaffold-free, self-assembled 3D tissues or organ spheroids. Excellent and proven knowledge of scientific English, both spoken and written. What we offer At Maastricht University
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systems, and explore their integration into extrusion-based 3D printing for sustainable construction applications. The project offers a unique opportunity to work across materials science, microbiology
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microscaffolds. Experience with scaffold-free, self-assembled 3D tissues or organ spheroids. Excellent and proven knowledge of scientific English, both spoken and written. What we offer At Maastricht University
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data generated in their experiments; Participate in experimental design and planning; Represent the laboratory at scientific conferences. NCN Call Type: OPUS – NZ Application deadline: 7 October 2026, 00
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, high-level industry collaboration, comprehensive facilities and resources have positioned it as a leading hub for 3D printing research and innovation globally. For more details, please view https
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: Familiarity with principles of 3D Science. Experience as a secondary science teacher. Experience with qualitative educational research. Excellent verbal and written skills. Presentation skills. Analytical
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, microscopy, and molecular analysis. Some experiments may require careful timing, serial sample collection, or occasional scheduling flexibility. 40% — Human cell culture, co-culture systems, and 3D skin model
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, relating to craniofacial identification research and 3D digital avatars. You will require a 3D animation, CGI, computer science and/or anatomical modelling background. A knowledge of anatomy and 3D
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. Responsibilities will include electromagnetic simulation and modeling, RF coil development and fabrication, 3D design and printing of mechanical components, laboratory testing, and evaluation of prototype systems