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Field
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implantable devices, combining: - Wireless communication using a backscatter-modulation architecture - Co-design of front-end electronics and miniature RF antennas for chronic implantation - Prototyping and
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to develop algorithms to factor linear differential operators using p‑adic techniques. The central question of this proposal concerns the efficient symbolic resolution of linear differential equations
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project aims to develop digital polymers capable of storing binary information at the molecular level. To achieve this, we will synthesize sequence-controlled polymers using a multi-step solid-phase
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investigate out-of-equilibrium dynamics in high-dimensional disordered systems (including models relevant to machine learning and optimization) by characterizing the fixed points (metastable states, attractors
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to develop, optimize and apply advanced mass spectrometry approaches for the structural and molecular characterization of ARDCs, and to analyze and interpret the resulting data. - Develop and optimize mass
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, autocomplete them, and provide answers through a platform accessible to all researchers. By integrating Health, Biology, Artificial Intelligence, and Epidemiology, it targets three complementary use cases
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processes used in these channels. He/She will participate in modelling these processes at a global level (flows and organisation) as well as at the product treatment level (analysis of product/operator
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of the ligand. In this way, we propose to identify ligands of different sizes and negative charges that can be used to synthesize and characterize metallic molecular structures, taking into account the
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of these interactions—is essential. One promising hybrid quantum system is cavity magnomechanics, where magnons serve as intermediaries between photons and phonons. Magnons are already used in classical applications
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. Investigating the etching mechanisms and selectivity of InP and InGaAlAs films as a function of plasma parameters using ellipsometry, XPS and AFM. 2. Developing an etching process for the multilayer stack meeting