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and evaluation of methods that leverage multimodal signals to improve the performance of multilingual models for low-resource languages, such as Luxembourgish. Particular emphasis will be placed
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through measurements in an acoustic tank on plate and cylinder models. - Development of analytical and numerical methods to describe the coupling of vibroacoustics in heavy fluids and thin structures
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of Regulation no. 487/2020, of May 22nd. Specifically, the Doctorate Initial level will develop R&D activities in the scope of project VirtualTextiLab which inserts in the area of programming and numerical
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mechanics, or advanced material behavior. Programming skills (e.g., Python, MATLAB, Julia,..), ideally with experience in numerical methods or scientific computing. Familiarity with machine learning
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invite applications for a postdoctoral position in the group of Axel Ringh at the Division of Applied Mathematics and Statistics, Department of Mathematical Sciences, with focus on computational methods
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(parallelization, efficient data structures), numerical testing, and results analysis. Familiarity with numerical methods, scientific programming in C++, and an interest in reservoir engineering problems
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within the space between the grains). - Simulating mechanical behavior using, e.g., finite element methods. - Measuring mechanical performance at the sample scale. - Investigating mechanical behavior
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edge of energy systems and computational engineering, developing scalable methods to simulate and secure IBR-dominated grids. Your key responsibilities include: Conducting large-scale simulations
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have high relevance for industrial applications in many sectors. Research in solid mechanics at LTH is specifically focused on constitutive mechanics, numerical methods, microstructural mechanics
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) traditional numerical methods. Contract duration: The tasks described above will be carried out by the hired person as a short-term research project framed within the period between 01/02/2026 and 31/07/2026