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Constitutive PINN algorithms for damage and fracture 2) Months 7-12 A fully functional software for 3D fracture, with all the physical features such as branching, coalescence should exist and the International
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stereolithographic 3D printing techniques and characterization of carbon materials, namely by thermogravimetry, SEM, TEM, Raman, elemental analysis, among other relevant techniques; 4) Possess experience in
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. The work plan will integrate advanced methodologies, including: - Establishment, maintenance, and characterization of cell cultures (2D, 3D, and coculture systems) to study tumour–microenvironment
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Engineering, and related fields, with a view to develop and optimize 3D bioprinted models, cell selection and expansion for bone models, biological and mechanical characterization of bioprinted tissues
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of the assessment described under Section 5 below. 2.3 — The compulsory application minute, to be completely filled out, dated, and signed, is available at https://www.ua.pt/file/78384 . 2.4 — Submission
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data collection and mapping. 3D engineering geological modelling. Within these two areas of activity, the candidate is expected to participate in the following: preparation, collaboration and submission
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- Scientific supervision/coordination of the grant: Lino da Silva Ferreira IV - Work Plan / Goals to be achieved: REBORN project will exploit multifunctional biomaterials, bioinks, 3D technologies for scaffold
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microbial contamination present; evaluation of microbial contamination of selected museum surfaces; production of 3D printed prototypes, suitable for the application of experimental coatings; development
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Sciences, to exercise the functions of developing a 3D bone model using micro-automation and microfluidic systems, within the METABONE project “Exploration of metastasis in the bone microenvironment – breast