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Field
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-scale numerical simulation framework to assess mechanical cloaking meta-structures within the ANR–FNR Metacloak project (Robust multi-scale design of meta-structures for mechanical cloaking from additive
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) analysis on gold surfaces. The student will develop a data analysis method (e.g. statistical methods) to identify the main parameters driving metabolite-surface interactions in the presence of different
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programming skills (C++ or Python) and experience with numerical modeling (for instance, Finite Element Analysis or Computational Fluid Dynamics); A strong interest in—and willingness to learn and perform
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international research contexts Your Profile: Excellent Master’s degree in mechanical engineering, energy systems, computational engineering, or a related field Strong background in numerical methods and applied
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ESA's TGO CaSSIS, NASA MRO HiRISE and CTX, complemented with insights gained using numerical modelling and analogue field studies on Earth. The results of the project would be relevant both for current
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the analysis of aircraft-based observations, controlled laboratory experiments, and the development of advanced simulation tools. In parallel, GRAIL addresses key technological challenges, including
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workflow for the analysis of single-crystal diffuse scattering. In this project, you will have the opportunity to contribute towards reaching this challenging aim. Your tasks include: Deducing numerous
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of the SCPA is obtained by the following formula: SCPA = 0.8 STP + 0.2 EMA. 9.4. The Interview (INT), with the duration of 15 minutes, will be classified on a numerical scale from 0 to 100 points, applying
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. 9.4. The Interview (INT), with the duration of 15 minutes, will be classified on a numerical scale from 0 to 100 points, applying the following parameters and criteria evaluation, represented in
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of 15 minutes, will be classified on a numerical scale from 0 to 100 points, applying the following parameters and criteria evaluation: a) attitude and critical sense (ACS) b) motivation of the candidate