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-trained tool on other image sensors and at different mountain sites presents difficulties. Specifically, generalizing a model trained on a specific site to other sites with different environmental
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 6 days ago
petals of roses with different petal numbers vary in shape and size. Accurately quantifying the size and shape of petals within a rose, at different growth stages, allows to study fundamental biological
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numerical methods for the inverse design of nanophotonic structures enabling broadband, multiparameter sensing in fiber-based systems. The project is a collaboration between AMOLF, TU Eindhoven, and
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these effects in different solvents with molecules of different types: organic or inorganic, structure chirality or atropoisomeria. Main activities: This project is based on Optical Raman Activity (OAR
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the following areas will be considered: Microscopy development and applications: Design, construction and application of high-speed 3D microscopy methods including our SCAPE / light-sheet approaches, two-photon
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us
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including finite element simulations. You will have the opportunity to develop and test models for unique device structures including graded channel/multi-channel GaN RF HEMTs, as well as state-of-the-art GaN
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QGG - Aarhus University seeks a postdoc researcher in sustainable breeding: developing simulation...
our team to advance this area and work on developing the tools and applying them to research projects covering different topics and species depending on the candidate’s interests and previous experience
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advanced microbial cultivation & microbiome metabolomics high-throughput & AI-driven antifungal discovery fungal symbiosis and pathogenicity fungal metabolites, epigenetics & microbiome structuring
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wide and ultra-wide bandgap semiconductor materials and devices, including GaN and Gallium Oxide. You will have the opportunity to work with unique device structures including graded channel and multi