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development by comparing different species. You will use single-cell sequencing, protein sequences, and structural data to elucidate how striated muscle has evolved from simple species, such as cnidarians
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combining the properties of thermally activated delayed fluorescence (TADF) and circularly polarised luminescence (CPL) for use as emitters in organic light-emitting diodes (OLEDs). MolKiCy's approach is to
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the materials that host lithium. To overcome this limitation, the use of metallic lithium as the negative electrode is necessary. However, this approach remains unstable due to issues related to the formation
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, the environment and ecology, transportation, robotics, energy, culture, and artificial intelligence. Overview of the CNRS as an employer: https://www.cnrs.fr/fr/le-cnrs Presentation of IRISA as the host laboratory
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, understanding and predicting their thermal conductivity from first principles calculations is very challenging. In this doctoral research project, we plan to use machine learning potentials to investigate
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. Techniques/methods in use: Density Functional Theory, Surface X-ray Diffraction, Surface Science Applicant skills: Strong background in chemistry, physical chemistry, materials science, or condensed matter
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the consideration of transfer learning, machine learning interaction potentials, and existing knowledge from experimental studies. Techniques/methods in use: Density Functional Theory, Machine Learning Applicant
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)materials: Self-Assembly of Peptides and Polymers (IRIS) team at the ICS. He/she will be depending from the ED222 doctoral school. For more information, please visit the website: https://www.ics
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time scales. To do this, we will build on a landscape picture of stochastic gene expression dynamics inferred from data using modern machine learning techniques. The results will inform us about how
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recruited to the laboratory as part of a European consortium involving 16 academic laboratories and 8 industrial partners in the field of orbitronics. The use of the orbital polarization and orbital torques