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, CeRh2Si2, TbB4 etc.) near metamagnetic transitions and unconventional superconducting phases. Within step 1, magnetization probes will be developed, tested and compared before choosing the most optimal
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parameters of RNA–ligand interactions. The identified compounds will then be tested in melanoma cells to assess their ability to interfere with LENT function and induce apoptosis; co-crystallization trials
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(materials, scenarios) - Translation of local knowledge into simulation rules - Facilitation or co-facilitation of model testing sessions - Collection of feedback for prototype iterations. Analysis and
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simulations, optical modeling, and rigorous experimental validation. The focus will be on the design, prototyping, and testing of a novel XAO instrument based on the iMz architecture. Unlike conventional
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. They will be responsible for experiments on rodents (stereotaxic intracerebral injection; brain sampling; brain sectioning and extracellular electrophysiological recording of brain activity; behavioral tests
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-Prée) and action 3 (testing instruments for debating habitability, IRD, IGE, OSUG, IEP Grenoble). • Conduct a state-of-the-art review on wicked problems and on selected environmental problems
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implementing experimental protocols; • Recruiting and testing healthy adult volunteers; • Conducting behavioral experiments in a laboratory environment; • Operating a functional near-infrared spectroscopy (fNIRS
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on which the model is based. The benefits of the proposed methodology will be evaluated through both idealized test cases and realistic simulations, with results compared against available observations
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contribute to various aspects: - setting up the optical implementations of new concepts - testing and validation of new experimental set-ups - pilot/simulation programming - characterisation of various samples
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of a cell adhesion protein, neuroligin-1, in communication between neurons and astrocytes in hippocampal circuits, and will examine the impact of autism-associated mutations. To achieve this objective