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- Fundació Hospital Universitari Vall d'Hebron- Institut de recerca
- Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH
- Barcelona Supercomputing Center (BSC)
- CIC biomaGUNE
- CIC nanoGUNE
- CRAG-Centre de Recerca Agrigenòmica
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- Institut Català de Nanociència i Nanotecnologia
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- Institute of Photonic Sciences
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- Universidad Católica de Valencia
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given to the design of couplers that enable low-loss light injection and extraction, which are critical for device performance. In addition to waveguide optimization, the work involves comprehensive
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dedicated to optimizing the searches for high-frequency gravitational waves in a network of electromagnetic cavities, or other setups to be conceived during the project. All aspects, from source
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development and optimization (specially Zn-based) Device and electrode engineering and their design. Preparation of nanomaterials (inorganic and/or organic) Characterization techniques for nanomaterials
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plasticity. The successful candidate will: Implement and optimize molecular and biochemical approaches to characterize metabolic pathways associated with carbon storage and recycling in photosynthesis. Conduct
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. Vall Hebron is one of the largest public hospitals in Spain. The proposal is to work in close collaboration with neuroradiologists and neurologists, in additional projects carried out by the research
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The selected candidate will work collaboratively with the rest
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preclinical models. The work will include: Developing and optimizing radiochemical labelling protocols for nanomotor formulations. Performing quality control, stability, and dosimetry studies of radiolabelled
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. Vall Hebron is one of the largest public hospitals in Spain. The proposal is to work in close collaboration with neuroradiologists and neurologists, in additional projects carried out by the research
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environments. Working closely with partners in the NEXPECH₂ project, you will analyze their materials and provide valuable insights to help optimize device performance. Additionally, you will support
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the adhesion and chelation properties found in nature. Furthermore, a fundamental part of the work will be the detailed study of the process for capturing and removing Contaminants of Emerging Concern (CECs