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of the generated texts through behavioural and neurophysiological measures. The expected outcomes are new tools and resources for scientifically grounded textual accessibility, tailored to neuro-atypical audiences
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identification of exchange networks from local to extra-regional scales. The doctoral candidate is expected to conduct metallographic examinations and chemical characterizations (primarily SEM-EDS and LA-ICP-MS
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behavior in D/B interaction. To circumvent this issue, the PhD candidate will fabricate B films on W and WOx substrates using a recently purchase electron-beam evaporator. Such source will allow to produce
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also deal with the diffusive behavior of certain elements simulating fission products (FPs) and activation products within these materials. This thesis will study the properties of chromium-doped UO2
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the objective of investigating the relationship between brain activity and behavior under controlled experimental conditions. The PhD candidate will be responsible for the following activities: • Preparing and
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between pollution control efficiency, electrochemical yield, and energy recovery potential; • Develop coupled electrochemical and hydrodynamic models to predict process behavior; • Participate in
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, if possible with a focus on modelling/numerical simulations. • A good level of Python programming is required. • A level of scientific English sufficient to conduct research and build international
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study these media in electromagnetics and acoustics, based on asymptotic models. We will examine the stability of spectral properties with respect to symmetries as well as the behavior of these media in
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synaptic behavior for neuromorphic computing. Artificial neurons can also be constructed using antiferroelectric tunnel junctions. However, antiferroelectrics like PbZrO3 are complex materials
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, such as oxygen or hydrogen evolution, dramatically affect the local environment pH. This phenomenon becomes a major source of complexity for understanding the long-term nanocatalyst behavior and the