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the molecular mechanisms underlying olfactory orifice formation in zebrafish, focusing on the interactions between the olfactory placode and the overlying skin epithelium. A major objective will be to identify
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the peak of the epidemic in June 2025 (EpiMay). OBJECTIVES The primary objective of this PhD thesis is to compile existing data of various types (reported case numbers, serological survey results) and to
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the completeness and consistency of available knowledge. The third stage will focus on multi-source automatic anomaly detection and the analysis of their potential causes. The objective will not only be to identify
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best to partition a given task (e.g., by morphology, limb, or objective) to balance computational efficiency and solution quality. - Heterogeneous and hybrid coordination: Bring together solvers
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libraries will be generated: one for 3′ SN RNA sequencing and one for SN ATAC-seq. Sequencing will be performed using short-read, paired-end sequencing, with sufficient depth to detect approximately 3,500
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sensing (DAS) via fiber optics, and active seismic data to detect and characterize seismicity across the entire deformation spectrum (earthquakes, tremors, slow-slip events). These observations will be
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-associated mutations. Three specific objectives will be pursued: (i) to characterize the role of NAV1 in regulating adhesion dynamics during axonal navigation; (ii) to elucidate the molecular mechanisms by
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driving conditions, stop-and-go operation, and progressive battery degradation. The objective of the PhD project is to develop estimation, fault detection/isolation, and fault-tolerant control methods
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has profoundly transformed inventory methods over the past decade. Non-invasive, it complements traditional methods (such as kick-sampling for macroinvertebrates) by detecting rare or cryptic taxa
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versatility of the size and redox properties of the f-block elements. The second objective is to use these ligands to promote the formation of multimetallic assemblies in which the metal atoms are close enough