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Description The PhD student will join the Centre for Research on Animal Cognition (CRCA), an institute dedicated to multidisciplinary and comparative studies of cognition in various animal models. Based
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, hot spots may develop due to the poor heat removal capability of the vapor. Objectives and Methodological Approach The PhD project is based on a combined approach, integrating experimental
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of about 10 nm in thickness, too thick for electronic tunneling effects. This PhD project aims to explore other ferroelectric-based devices that exhibit this type of double polarization hysteresis as a
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of naturally occurring radionuclides. The work will combine long-term incubation experiments, the monitoring of radionuclide lability through desorption-based approaches, the characterization of reactive sites
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University of Tecnology in Gliwice). Nanopipette based optical sensors for tracking chemical gradients at the vicinity of catalytic nanoparticles Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant
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/acsphotonics.3c01104). This method is based on the combination of a color two-photon excitation method developed at the LOB, automated serial sectioning, and the 'brainbow' approach developed at the IdV allowing
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Cognitive Ethology The host team is based in Strasbourg and comprises specialists in the behaviour and cognition of primates and other species. It hosts several PhD and Master students, as well as several
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or ferromagnetic as well as its competition with other correlated phases (superconductivity, charge orders etc..), we propose to use the powerful method developed in our group, based on exquisitely sensitive magneto
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representation language. The thesis will particularly investigate approaches based on attributed graphs to model infrastructures, their topological relationships, inspection-derived observations, and the levels
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Superconductivity High-temperature critical superconducting (HTS) materials, particularly those based on REBCO, enable the development of fully superconducting magnets capable of generating very high magnetic fields