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processes—to precisely control the composition, size, and distribution of these nanocatalysts. These materials, with their exceptional properties, are designed to accelerate CO₂ methanation, a critical
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sputtering or in an ionic liquid. It will then study their effect on the photoconversion properties of CO2. Finally, the BiBOP project uses innovative synthesis processes but is primarily part of an approach
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. This will be made on different Cu-FR4-Cu laminate test-structures with a FR4 thickness ranging between 35 to 100 μm. A preliminary assembly process optimization will be performed (e.g., temperature
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person will adapt the screening procedure used by the team to mRNA screening. This may require not only adapting the reaction conditions, but also introducing additional chips, and possibly even developing
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Additional Information Eligibility criteria The candidate should have a PhD in Biology/Evolutionary Biology and skills in bioinformatics and macroevolution (ideally models of phenotypic evolution
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researchers, PhD students, engineers and technicians in a multicultural and international environment. The candidate will join the group of Malene R. Jensen, which specializes in understanding the role
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Information Eligibility criteria -- PhD in population genetics -- Expertise in phylogenetics, high-throughput sequencing, and bioinformatic analyses -- Ability to write scientific articles and present results
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Eligibility criteria PhD in Mathematics. Candidates with expertise in one of the following research areas are encouraged to apply: - Complex foliations; - Birational geometry; - Qualitative theory of real
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FieldMathematicsYears of Research Experience1 - 4 Research FieldHistory » History of scienceYears of Research Experience1 - 4 Additional Information Eligibility criteria - PhD in computer science or applied mathematics
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to work both in a team and independently. • Ability to supervise interns and PhD students. • Scientific article analysis, scientific monitoring, and writing of scientific research articles. Website