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integrative structural biology studies: (https://www.i2bc.paris-saclay.fr/facilities/ ). In particular, the doctoral student will have access to cryoEM instruments (Glacios at the I2BC and Titan Krios
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at CRHEA (Valbonne, 06). It will focus on the epitaxy of these new structures using MBE and MOVPE techniques and their structural and electrical characterizations which will be validated by the partners
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Starrydata2). The work will include the implementation of machine learning models (neural networks, random forests, SISSO), generative approaches for predicting crystal structures, the use of machine learning
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. Argument(ation) mining, the new and rapidly growing area of Natural Language Processing (NLP) and computational models of argument, aims at the automatic recognition of argument structures in large resources
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. These include structured data (e.g., GPS coordinates, temperature, humidity), semi-structured inputs (e.g., XML/JSON sensors feed), and unstructured content (e.g., images, videos, audio, human input via voice
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RNA sequencing). RNA structural probing: Implementing the Nano-DMS-MaP method, developed in the host laboratory, to map the secondary structure of full-length viral RNAs and DVGs at single-nucleotide
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complexes with nucleic acids; 2) Evaluation of the delivry complexes for inhalation by Aerosol technology; 4) Analysis of the structure-activity relationship of dendrimers for nucleic acid delivery via
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allows for the precise design of quantum dots while retaining the exceptional mechanical properties of graphene. The electronic structure of bilayer graphene has been intensively studied in recent years
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been designed at low Reynolds number, when the flow is mainly populated by small-scale structures. However, as the Reynolds increases, these control strategies become rapidly inefficient
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(Barcelona, Spain) – Specialist in advanced characterization and in situ/operando analyses (XPS/HAXPES, XAS, EXAFS, etc.). The candidate will undertake research visits to ICMAB to perform structural and