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and structure materials, (7) Inorganic nanomaterials, (8) Macromolecules and biomaterials, (9) Data-driven materials development, and (10) Advanced materials analysis technology. * Research Environment
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properties to them, generates a finite element mesh, and performs virtual measurements. The goal is to build a computational platform that can predict the macroscopic behavior of a material from knowledge of
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Technologies, ORCID: https://orcid.org/my-orcid?orcid=0000-0001-7930-1751 Topic Description: Smart textile technologies are rapidly advancing, making the formation of conductive tracks directly on textile
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position within a Research Infrastructure? No Offer Description The available position is in the Materials and Topologies for Sensors and Devices (MTSD) Unit of FBK-SD. The unit conducts R&D and service
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. Here the isotropic in-plane electronic structure of a 2D direct-gap semiconductor is interfaced with the anisotropic, flat-band–influenced electronic landscape of a quasi-1D material. These dimensional
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levels. We are especially interested in candidates with a strong teaching interest in, but not limited to, building materials and methods, construction graphics, cost estimating, planning and scheduling
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; and to enforce contractor compliance with the construction documents; knowledge of methods, materials, tools, equipment, occupational hazards, and safety precautions of the trade; expert knowledge
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levels. We are especially interested in candidates with a strong teaching interest in, but not limited to, building materials and methods, construction graphics, cost estimating, planning and scheduling
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on thermoelectric properties. The different materials obtained will be characterized in terms of structure at different scales (XRD, SEM, XRR, Raman, etc.) and chemistry (XPS, Raman, etc.). The first thermoelectric
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porous materials using green supercritical fluid technologies. The position (TV‑L E13) offers the opportunity to pursue a PhD, access to state‑of‑the‑art research infrastructure, and close collaboration