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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description PhD Position in Advanced 3D Organotypic Bone Models for In Vitro Osteosynthesis Research
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https://www.academictransfer.com/en/jobs/357455/phd-on-mathematical-modeling-of… Requirements Specific Requirements We are looking for talented enthusiastic PhD candidates who meet the following
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Researcher in Structural Analysis for 3D Concrete Printing to join our R&D and Engineering team in Barcelona (Spain). The researcher will play a key role in the design, modelling, and structural validation
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numerical modelling tools, i.e. a depth-averaged (2DH) and a 3-dimensional (3D) model, in the TELEMAC modelling system (www.openTELEMAC.org ) to simulate the fluxes and fate of plastics in the Scheldt Estuary
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systems, segmenting medical imaging data, and creating accurate 3D anatomical models for analysis and 3D printing. You’ll be working alongside multidisciplinary teams across clinical, research, and
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the design and optimization of multistatic and multifrequency radar architectures for near-field 3D imaging. - Contribute to the electromagnetic modeling of radiating systems, wave-object interaction, and
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research experience in an international context; Participation in scientific meetings and workshops (preferably with oral and poster communications); Experience in 2D, 3D and in vivo melanoma mouse models
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optimization and aerodynamic modeling. Fabrication: Composite layup, 3D printing (FDM/SLA), and assembly of drone airframes. Testing: Wind tunnel, fatigue, and flight tests for mechanical and aerodynamic
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waves still remains a challenging and important research topic, with applications ranging from modelling tsunamis, rogue waves, and ice floes to informing ship design and coastal management. The accurate
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Citrin Foundation (Registration Number: 15940318) 2 Allen Street, London-United Kingdom, W8 6BH | United Kingdom | 2 months ago
derived from human induced pluripotent stem cells (iPSCs), which offer clinical relevance and a more reliable disease model. Using 3D liver-like models derived from patient iPSCs and genetically modified