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. The fellowship is due to start in 04/2026. . WORK PLAN: Development and characterization (physicochemical, mechanical and biological) of 3D biphasic structures based on electrospinning with bioactive agents
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, including total compensation, please visit: https://ucnet.universityofcalifornia.edu/compensation-and-benefits/index.html Required Qualifications Graduate of a formal radiology technology-training program in
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fabrication (CAM, Rhinoceros 3D, Grasshopper, Adobe Suite) OSHA Certified Knowledge, Skills, Abilities (KSAs): Knowledge and abilities of traditional fabrication assemblies and techniques (woodworking, metal
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environments, such as STEM labs, makerspaces, or similar settings. (Preferred) Experience or interest in areas such as robotics, coding, digital media, CAD design, 3D printing, or networked systems is desirable
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team of 12 technical staff. The mechanical workshop has a range of machinery including conventional workshop equipment (lathes, mills etc.) CNC machines, 3D printers and other tooling. The role holder is
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://sites.google.com/view/jan-rozman/home ) and Dr. Matej Krajnc (https://matejkrajnc.splet.arnes.si ) on topics related to the role of activity in 2D and 3D tissue dynamics, focusing on computational approaches such as
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to 3D printing partners. 4. Bibliographic and patent analysis. 5. Coordination of project activities jointly with the Partners. 6. Drafting of deliverables and Project Milestones. 7. Monitoring
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work in strategic directions that are of significant impact to industry, science and technology. For more details, please view https://www.ntu.edu.sg/cee . We are looking for a Research Fellow to work
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of three-dimensional bone scaffold models, c. Design and fabrication (3D printing) of three-dimensional bone scaffold models, d. Preparation of samples for physicochemical and mechanical testing, e
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, including the use of 3D printing techniques Excellent knowledge of German and English (at least C1 level), including relevant technical terminology Independent and self-reliant working style Reliability