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at IP2I (LMA) and extreme adaptive optics (XAO) for exoplanet imaging at CRAL. This interdisciplinary initiative aims to develop a new generation of wavefront sensors capable of achieving sub-nanometric
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Inria, the French national research institute for the digital sciences | Saclay, le de France | France | 2 months ago
covers the object's entire life cycle and uses real-time data sent by sensors on the object to simulate its behavior, monitor operations, and anticipate its functioning. Partial differential equation (PDE
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interpretable physical strategies from nonlinear quantum dynamics. WP4: Towards Adaptive Quantum Technologies. Ap- ply the framework to quantum memories, atomtronic de- vices, adaptive quantum sensors and matter
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 3 months ago
computation time, and a complex design. To solve these issues, we propose to follow an original approach where the robot is seen as the assembly of modular limbs, each one having its own sensors, actuators and
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implants (cannulas, sensors) using stereotaxy; design and refinement of behavioural tasks using the associated equipment; behavioural tasks in rodents; virus injections, collection and processing of in vivo
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drugs. These applications involve collaborative projects with industry partners (already funded) or academic partners. For these three examples, this metrological approach to sensor development involves a
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. Agricultural robots, drones, IoT sensors, and smart farming platforms are transforming crop production by improving efficiency, reducing labour, and supporting more sustainable practices. However, these
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the BioVolt project, a collaborative effort between the Chemistry and Biology of Metals Laboratory (https://irig.cea.fr ) and the Laboratory of Electrochemistry and Physical-Chemistry of Materials and
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | about 2 months ago
and refining their dynamic models through parameter identification on dedicated test benches, including external measurement systems (encoders, force sensors). The refined models will serve in
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passive seismic experiments (HOREX® and Full-HOREX®). These deployments, involving more than 2,000 nodal sensors, provide high-resolution imaging of the subsurface over an 80 × 80 km area to a depth of ~20