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into district heating networks (DHN), and to study the architecture, sizing, and control strategies for its optimal integration into such networks. Currently, sensible heat storage remains the most widely used
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to the limited time available in the PhD thesis. The present application involves extending this work to characterize devices currently being manufactured at the CEA, as well as designing optimized optical
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of these tools and will be expected to introduce their own modifications in order to adapt and optimize the analysis for the study at hand. Other tasks include: * Optimizing the experimental setup (4D observations
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layer to accommodate lattice mismatch while enabling the active use of Si as a bottom cell. The applicant will be involved in the deposition and optimization of the GaAs, its doping, passivation/contact
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. The postoc will be in charge of : The synthesis of gold nanoparticles The co-encapsulation of drugs and gold nanoparticles in optimized PLGA NPs The physicochemical characterization of NPs by dynamic
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1: Extension of the coverage and performance of the HLA-Epicheck model through the addition of new antigens. This also includes optimizing the values of certain model parameters. Task 2: Evaluation
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description This work is part of the AAPG 2023 ANR NOBEL project
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catalysts. Optimization of the catalytic reaction will be carried out by tuning different reaction parameters such as pressure, temperature, concentration, catalyst dosage, etc. Throughout these research
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at international conferences. Development and optimization of experimental protocols: stereotactic injections, optogenetics, chemogenetics, in vivo imaging (fiber photometry, calcium imaging). • Development and
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. The project will involve: • Synthesis and characterization of proton-conducting ceramic materials and composite electrodes. • Development and optimization of acid-base infiltration protocols for surface