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Employer
- Josep Carreras Leukaemia Research Institute (IJC)
- Computer Vision Center
- Forest Science and Technology Centre of Catalonia
- Fundació per a la Universitat Oberta de Catalunya
- Institut Barcelona d'Estudis Internacionals
- Institut de Recerca Biomèdica de Lleida, Fundació Dr. Pifarré (IRBLleida)
- UNIVERSIDAD POLITECNICA DE MADRID
- University of Deusto
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Field
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translational, combining molecular analysis of human biological samples from clinically characterized cohorts with the possibility of integrating extracellular-vesicle profiling, non-coding RNA analysis and other
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Relations of the European Union in a Competitive and Fractured World (GLOBALEUTY) is a project which combines dynamic and didactic teaching with state-of-the art research and interactive dissemination
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applications and impact in audio, communications, and music technology. - Develop theoretical models of wave propagation and hybrid methods that combine physical models with artificial intelligence techniques
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community that is driven by its mission, where it will be possible for your work to directly make a difference for society. Benefits Friday afternoons off. Flexibility: our open working model combines remote
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systems. The group combines research with knowledge transfer and scientific support for decision-making in environmental, agricultural, and land-management policies. Located in Solsona (Pre-Pyrenees
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of the University of Deusto. - Enjoy working with complex, nested, or longitudinal data structures. - Aim to combine theoretical insight with rigorous empirical testing. - Have a strong interest in diversity
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Lymphoblastic Leukemia (B-ALL). The project takes a multidisciplinary approach, combining state-of-the-art molecular and cellular biology techniques with genomics, proteomics, metabolomics in mouse models and
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and technology to industry and society. Computer vision is one of the most dynamic areas of artificial intelligence, enabling machines to understand and interpret the visual world. At CVC, we combine
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function of these cells, we combine directed differentiation of human pluripotent stem cells, in vitro and in vivo models of human normal and leukemic development, and state-of-the-art epigenomic and