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various scientific and industrial fields, such as, for example, quantum simulation and optimization. Share this opening! Use the following URL: https://jobs.icfo.eu/?detail=1044
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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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). o Pipeline Development and Maintenance: Implementation, optimization, and execution of efficient and reproducible workflows (pipelines) for the analysis of large volumes of biological data. o
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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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: Development and optimization in the acquisition protocol of novel MRI sequences Implementation of the specific analysis pipelines, from quality control to statistical analysis of the measured outcomes Writing
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to consortium collaborators. Development, optimization, and implementation of novel quantitative proteomic methods. Direct supervision of a Research Technician supporting the group’s experimental activities
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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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: Development and optimization in the acquisition protocol of novel MRI sequences Implementation of the specific analysis pipelines, from quality control to statistical analysis of the measured outcomes Writing
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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