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of radium, uranium and plutonium, whose isotope ratios in the environment are important indicators of human activity in the nuclear industry. Copper is also considered, where the quantification or separation
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systems, which mimic human brain functionality, utilize components such as memristors to emulate synapses. These systems represent a promising avenue to reduce the energy footprint of AI technologies
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of the world's leading research institutions. To meet the major challenges of today and tomorrow, its scientists explore life, matter, the Universe and the workings of human society. Internationally recognized
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emitted by human activity is one of the solutions needed to limit climate change. The aim of this thesis is to develop new CO2 capture processes using Hollow Fiber Membrane Contactors (HFMC). We
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skills in analytical chemistry, physical chemistry and photochemistry also enable us to accurately assess the structure/properties relationship of these reactive objects. This research is carried out in
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certain primary data. The invention of microblade pressure debitage: new methodological approaches and archaeological implications for Homo sapiens 'adaptation to the Northern Latitude of Asia during
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synaptic depolarization, in connection with its dendritic localization. We will study this mutation using a newly developed mouse model in which one of the mutations identified in humans has been introduced
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construction of "consensus" receptors that summarize all the properties of human olfactory receptors, allowing us to publish the first structure of an olfactory receptor this year. The project will focus
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sciences and humanities, the use of biographical surveys to gather life histories has become widespread. However, while the collection of biographical data using a paper form in the specific Ageven (for Age
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) represents a promising alternative. However, these materials face unsuitable cycling operating conditions (T and PH2). Complex aluminum hydrides such as NaAlH4 (7.4 wt%) represent another credible option