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on signals and complex systems. Gipsa-lab develops projects in the strategic fields of energy, the environment, communication, intelligent systems, life and health technologies, and language engineering
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dynamic ecosystem that brings together academics and companies of all sizes. The Signal team of the i3S Laboratory (https://i3s.univ-cotedazur.fr/signal ), aims to develop advanced, innovative and adapted
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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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the extent of glaciers over time using moraine dating and reconstruct the evolution of the glacier fronts of the studied glaciers using a statistical model. • Identify and quantify the influence
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leading laboratory in optics and nanophotonics. The PhD student will benefit from: - The expertise of the team's PhD students and postdoctoral researchers, who are already involved in the development
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field) and ground-based (radio) data - Use of various software codes: (i) radio emission simulation code, (ii) solar wind propagation code. - Development of software (preferably in Python) for data
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static mode and under photonic excitation in order to establish the reference electronic state of the surfaces and to monitor its evolution. THz spectroscopy will then provide access to the conductivity
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are of paramount importance in a variety fields such as energy, analytical chemistry, catalysis,.. Several approaches for covalently bonding organic moieties to surfaces exist, often relying on local generation
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provides access to individual dynamic parameters (cell cycle, fate, motility). - ISMO (UMR 8214), where metallic nanoparticles (Gd, Pt, etc.) are developed to locally amplify the effects of ionizing
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interfacial phenomena. The project is part of the ERC Starting Grant EMBIOMO, which focuses on the dynamics of embolism propagation within leaf vascular networks and on the development of biomimetic models