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astronomical diagrams by developing innovative, domain-specific computer vision tools. The two main objectives of EIDA are: 1. To develop a specific critical framework for astronomical diagrams and define
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. - Define several sonification strategies adapted to each type of biomechanical variable (e.g., angle, speed, position). - Design sounds for each sonification strategy using player videos or a biomechanical
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using image analysis software already available at the LCTS. This will generate two types of computational domains: (i) porosity-calibrated images (i.e., images whose gray levels correspond to the local
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will consist of an online tool allowing the user to define a carbon budget, a climate coalition, and the coalition's oil producer partners, which would then estimate the coalition's oil demand and the
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nucleation and organisation in order to generate specialised microtubule arrays, such as the mitotic spindle or the polarised microtubule networks within neurons. We focus on gamma-tubulin ring complexes (g
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analysis. - Define one (or several) precise research questions and perform data analysis to explore them. - Write scientific papers and give scientific presentations in international meetings. - Participate
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networks, RF and microwave circuits, antennas, electromagnetic simulations, embedded software for wireless communications BLE, LoRAWAN, UWB, etc. Additional comments None Website for additional job details
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describe the neuronal and behavioral changes associated with pharmacological manipulations, through the development of scripts using software such as Python or Matlab. 1) Conduct electrophysiology
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vibrant research environment on the French Riviera, offering an exceptional quality of life and proximity to leading research institutions. • Extensive opportunities for professional development, networking
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polariton accelerator” will exploit exciton–polaritons to implement artificial neural networks directly in hardware rather than in software. Exciton–polaritons are hybrid quasiparticles composed of light