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for the modulation of their optical properties under an applied voltage. The EC- LIPSE projet concerns the eco-design and development of innovative sustainable methods for the fabrication of efficient optically active
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of lattice CAD models via generative/parametric design (e.g., Grasshopper); - Numerical FE simulation of meta-grains (Abaqus or Z-Set); - Extraction of key data (mechanical properties, critical load
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recruited will be responsible for the electromagnetic design and characterisation of FSS/metasurface type devices made reconfigurable by the integration of agile materials. As part of the OPALE project, we
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team and their collaborators in wireless bioelectronics, the goal of this project is to design a wireless architecture and RF circuits that enable backscattering-based wireless biosensing using organic
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circuits for on-chip delay generation - Design of innovative solutions for acoustic delays - Manufacture of on-chip acoustic circuits in C2N's clean room - Characterisation of the manufactured structures
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for the technical and scientific development around the design and fabrication of the MEA-microfluidic system. The candidate will work in close partnership with the project consortium to integrate sensors and
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photonic chip. Recently, a new type of architecture based on topological photonic crystals has demonstrated almost perfect transmission through waveguides with sharp turns. This feature enables the design
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networks - Actively contribute to the development and fabrication of the optical device - Participate in the experimental design and performance characterization of the device - Work closely with
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carry out research within the "Materials" team of the LAUM, and will be in charge of the design and realization of experiments, signal processing, and interpretations, on non-linear waves in flexible
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Maxwell's equations based on the T-matrix method. On the hardware side, he/she will benefit from extremely powerful calculation servers, one of which is equipped with 4.5TB of RAM. This work on the design of