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models combined with the finite element method. Constitutive relations are required to describe material behavior. Advanced stainless steel typically possess complex microstructures across various length
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affected by tectonic events, overprinting the primary magmatic processes. Complicated geological histories result in modification of the mineral chemistry and rock microstructure. The study area, Bjerkreim
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production processes and are actively exploring the incorporation of new materials, technologies and designs in their operations to achieve zero-carbon construction elements. The construction industry is under
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Can scrap steels become the future of high-performance 3D printing? Join us in reshaping metal manufacturing by turning industrial waste into precision-engineered components through 3D-printing! Job
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and optimize device architectures using finite element simulations. Fabricate prototypes using 3D printing, and cleanroom technologies. Implement test setups and assess devices performance through
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% of global freshwater consumption and the main driver of overexploitation of finite and vulnerable freshwater resources in many parts of the world. With the demand for food growing, geopolitical dynamics
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fields, and risk damaging the part during fabrication. Finite element analysis (FEA) models, while capable of delivering detailed spatiotemporal distributions of thermal variables, suffer from limited
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laboratory testing to study the microstructure and the monotonic and cyclic mechanical behavior of the volcanic basalt sand. Subsequently, results of model-scale centrifuge tests and advanced numerical
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tools • Modeling of devices with the finite element method • Micro-nano fabrication in the IEMN's clean room • Physical / Electrical characterization of devices • Participation in the ANTARES project
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tested to evaluate mechanical and durability performance under realistic conditions. The findings will be used to calibrate finite element simulations, which will serve as a tool to predict material and