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Field
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against commonly used antibiotics have been increasingly observed world-wide, showing an essential need for designing novel therapeutics to increase the effectiveness of fighting pathogens. Accordingly
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. With this project we propose to design and investigate polyrylene-based antennae capable to perform singlet fission, and couple them to polypyridyl ruthenium catalysts, to tackle these challenges in
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reaction products (methanol and water) from the reaction mixture, shifting the equilibrium towards higher methanol production. This strategy has been studied using other reactor designs with in-situ
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involved, the PhD student will work on the design of new materials useful for the energy transition, in particular radiative cooling and thermophotovoltaics. The candidate: Must have a background in
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Laboratoire des Courses Hippiques (GIE LCH) | Verrieres le Buisson, le de France | France | 6 days ago
a manager in the Research and Innovation (R&I) team, composed of the Director, technical managers, bio-informatician and technicians. Under the supervision of the R&I Director, the Senior Scientist
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effluents, based on bio-based and/or eco-designed sorbents. Project (36 months: from 1st October 2024 to 30th September 2027) The recruited PhD student will initially be responsible for developing polymer
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-how about the required level of abstraction, so as not to get lost in details that would be more appropriate to the realization stage than the design stage. This know-how is also linked to two areas
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the project in this context. WORK: the main idea is to investigate control-oriented tools, typically combining identification [2] with state observation [3], for the ultimate goal of digital twin design
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of Mathematics (DEMA), Probability and Statistics (EPS), and Geometry, Topology, and Algebra (GTA). Discrete polytopal complexes are recent numerical methods, whose purpose is to design approximations of partial
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, vibro-acoustic design needs to be pushed earlier in their design phase. Additionally, product sustainability can be also enhanced by exploiting the information included in sound waves emitted during