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evaluation of virtual tutors (recommendation systems) by working at the intersection of education sciences, psychology, and data engineering. The main tasks of the successful candidate will be: - Designing and
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, comparing them with experimental data. - Contribute to the design of future experiments to improve laser guiding. Laser wakefield acceleration (LWFA) is capable of generating accelerating fields three orders
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devices are designed to operate at specific near-infrared wavelengths while remaining minimally perturbative across the rest of the optical spectrum. A key scientific challenge of the project is to achieve
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Development: Design and maintain open numerical simulation codes to model these systems. - Scientific Collaboration: Collaborate with team members on this project and related research initiatives
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matter exist in theories beyond the SM, and the WIMP (Weakly Interacting Massive Particle) is one of the best motivated of these candidates, as it allows to also solve the SM hierarchy problem, directly
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devices are designed to operate at specific near-infrared wavelengths while remaining minimally perturbative across the rest of the optical spectrum. A key scientific challenge of the project is to achieve
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materials and devices. The postdoctoral researcher will work in a stimulating scientific environment that promotes interaction, collaboration, and innovation, and will benefit from the collective expertise
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new photo-crosslinkable chemical functions… In close interaction with the team but also the partner specializing in the characterization of 2D self-assemblies by STM, he/she will then be a driving force
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industrial partners. - Construction of electrochemical cells incorporating specially designed magnetic field sources, including quantitative measurement of local magnetic fields. - Implementation of tools
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generation of laser sources. These devices are based on a physical separation between electrical addressing and optical emission, enabling the design of addressable Tamm lasers with high potential