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staff members (researchers, engineers, PhD students) and operates several major experimental facilities: LULI2000, Apollon, HERA, XCAN. The PhD student will join LULI's theory team (TIPS) and will work
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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
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). Circadian clocks allow adaptation of physiology and behaviour to external 24h time cues. It is established that chronic disturbance of circadian rhythms leads to increased morbidity and reduced lifespan. In
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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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to the composition and structure of biofilms. The recruited candidate will be responsible for: - Conduct laboratory biofilm exposure experiments in a chemically controlled environment to link speciation of metals in
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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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implement a range of functional approaches (phagocytosis, ROS release, cytokine expression, mitochondrial viability) to characterize their activation state. They will also conduct behavioral experiments in
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for the design of more sustainable all-solid-state batteries. The student will conduct their research at the ICMCB (Institute of Condensed Matter Chemistry of Bordeaux), a joint research unit of the CNRS