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of the devices will then be generalized and tested on applications. Funding category: Financement de l'Union européenne ADVHANDTURE PHD Country: France Where to apply Website https://www.abg.asso.fr/fr
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“minimal” and modular gene cascade to control MeCP2 re-expression and avoid any dosage drift. The thesis work will consist of designing and testing vectors containing gene cascades first during a first
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complementary steps. First, simplified explanations exploit the encoding of complex models to perform partial logical tests on a representative sample. Second, approximation techniques overcome computational
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for the synthesis of carbon nitrides • Multi-step synthesis of carbon nitrides • Material characterization (XRD, gas physisorption, electron microscopy, IR, Raman, solid-state NMR, etc.) • Photocatalytic testing
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to real data (e.g. from GBIF, IUCN, trait databases), test trade‐off scenarios, and compare alternative discounting schemes (constant vs declining discount rates) to see how they influence conservation
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platform at GPM. The activities will be : - Define, set-up and test the experimental protocols for the 2D and 3D investigation of hybrid Ga-oxide/zeolite beam-sensitive materials, in terms of data
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are as follows: Optimize and develop new measurement protocols for single-crystal paleointensity, in particular by combining this technique with the use of a "multispecimen" approach. Test a potential bias
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-structure interactions using a combination of high-resolution numerical simulations (CFD) and advanced experimental measurements (Stereoscopic PIV). A dedicated test bench will enable full-scale global
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the T4SS, test it through functional assays, and validate it using structural approaches. Main tasks Perform genetic constructions (cloning, mutagenesis, sequencing validation) and functional bacterial
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to the design, fabrication and characterization of different test devices in order to assess the future potential of those materials. Activities : • Bibliographic research and technology watch • Use of design