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project aims to design a highly-efficient heat pump based on an innovative thermodynamic principle and intelligent on-board control, in order to improve its energy performance while actively reducing its
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research in information and digital technologies (computer science, automation, robotics, artificial intelligence), with the aim of developing methods for representation, analysis, and control of complex
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on the use of zeolites as sacrificial templates to obtain structured carbon nitrides. These materials are expected to combine very high surface areas, controlled microporosity, and a high density of defects
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. These phenomena are based on the description of a complex flow formed by particles suspended in water, whose solid concentration is controlled both by soil erosion and by particle sedimentation processes
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PhD on 2D quantum photonics : towards neuromorphic applications with 2D ferroelectrics materials M/F
-of-plane ferroelectric domains. The goal of this PhD is to optically detect, track, and ultimately control the ferroelectric state in such materials. Key objectives include imaging ferroelectric domains in a
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for clarithromycin-induced resistance, which is the central pillar of multidrug therapy to control M. abscessus infections. Using wild-type (WT) and clarithromycin-resistant planktonic strains, we demonstrated
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of neural circuits essential for adaptation. The successful candidate will explore the dynamics of neural populations in key brain regions for decision-making and behavioral control: the frontal cortex and
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of the principles and use of specific equipment in the field: incubators, spectrophotometers, thermocyclers, plate washers, microscopes, HPLC, SPR, ITC, etc. Using IT tools for data recording and equipment control
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active in the fields of robotics, mechatronics, automatic control and artificial intelligence. Both departments are located in the same building, and have a long history of working together. A world
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-chip (OoC) technology offer precise control over critical parameters such as fluid dynamics and mechanical stimuli that closely mimic in vivo conditions. This project aims to develop a vascularized liver