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Field
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work closely with consortium members and actively support partners responsible for nanoimprint lithography (NIL) to ensure smooth integration of the developed nanomaterials into structured coatings
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the fabrication of copper/carbon composites and the exploration of 3D copper manufacturing. You should have experience with electroplating and material characterization techniques such as SEM, FTIR, XPS, and DRX
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electrospinning devices, as well as structural characterization tools (microscopy, X-ray, spectroscopy), and mechanical and rheological equipment. Context This PhD is part of the ANR FLIGHT project, which aims
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to efficiently create new, sustainable and recycling-adapted structural metals. Alloys with a reduced number of elements, so-called lean alloys, and material systems with a high tolerance to impurities from
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batteries (RFB), enabling affordable and durable long-duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery
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responsible for nanoimprint lithography (NIL) to ensure smooth integration of the developed nanomaterials into structured coatings. The project’s ambition is to realize retrofittable multilayered films
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the built environment. The aim is to develop and validate a low-barrier digital toolkit that integrates material passports with modular LCA procedures to optimize resource reuse in construction and demolition
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for the "Living Manufacture: An Engineered Living Materials based Fabrication Platform" project. We're in search of a dedicated, motivated, and innovative researcher to join the Living Construction research group
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Fraunhofer Institute for Wind Energy Systems IWES | Bremerhaven, Bremen | Germany | about 19 hours ago
twins and determination of the structural properties of rotor blades to improve the estimation of remaining useful lifetime (RUL) along with other requirements and simulations. Your work will advance
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responsible for nanoimprint lithography (NIL) to ensure smooth integration of the developed nanomaterials into structured coatings. The project’s ambition is to realize retrofittable multilayered films