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? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Metabolomic analysis by chromatography-coupled mass spectrometry of biological
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individually or jointly in accordance with the project deliverables and the College of Social Sciences research strategy. 2. Document research output including analysis and interpretation of all data
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Modeling, Analysis & Prediction of Particle-laden Real-Gas Supersonic Turbulence. (Ref. 10267290001)
Description Mission: Carry out the modeling, analysis and prediction of real gas supersonic turbulence. Fuctions to be developed: Develop tools to aid analysis. Perform experimental and computational analyses
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, that combines diffusion and transformer models, there are clear indications that the analysis of this data can be automated. This will open new avenues in data interpretation and building predictive models
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maintain algorithms in biomedical image analysis pipelines. Validate algorithm performance on novel datasets. Analyze spatial transcriptomic data. Perform statistical analyses on data extracted form bio
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Matsushima 577, Kurashiki City [Number of hired] Number of hired:1 person(s) Hiring date:2026-02-23 00:00:00 Starting date:2026-02-23 00:00:00 Where to apply Website https://jrecin.jst.go.jp/seek/SeekJorDetail
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Infrastructure? No Offer Description Grantor: European Union HORIZON Marie Sklodowska-Curie Action (MSCA) Joint Doctoral Network Project portal: https://www.eu4greenfielddata.eu/ Highlights Duration: 1 Sep, 2026
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. Collection and registration of data in the CRDs of the studies. Follow-ups of patients included in studies. Support for data purification for analysis. Functions Recruitment of participants and information
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mathematical modeling with community-based surveillance to understand various facets of public health. The ideal candidate for this position will be an individual with ample coding, analysis/modeling, and data
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of protocols and architectures for practical quantum networks. Carry out experimental characterization and performance analysis of components and links for quantum communications. Develop and validate