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Field
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methods with in situ characterisation techniques such as in situ Raman spectroscopy (including SHINERS) and electrochemical mass spectrometry. This combination will be used to investigate the structure
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adaptive design of experiments and physics-based modeling with advanced characterization techniques. For implementing traditional and innovative/advanced materials synthesis and characterization as
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ICFO is offering postdoctoral positions to well-qualified, highly motivated and dynamic young scientists who wish to contribute advance technologies that drive the clean energy transition. The CO2
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Experience in advanced statistical analysis models Experience working with large imaging datasets Experience in advanced MRI sequence and analysis Ability to work well in a multidisciplinary team
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Experience in advanced statistical analysis models Experience working with large imaging datasets Experience in advanced MRI sequence and analysis Ability to work well in a multidisciplinary team
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performance testing at ISOM-UPM. Research activities will be conducted primarily at ISOM-UPM, in close collaboration with national and international partners who will provide access to advanced simulation and
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highly interdisciplinary approach spanning biochemistry, structural biology, cell biology, genetics, and advanced sequencing methods, we aim to answer the following questions: What are the factors and
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. Skills in modelling and analysis using machine learning tools. Experience in environmental and economic assessment and in feasibility and replicability studies. Scientific production (Q1) and technical
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this postdoctoral position, you will apply advanced electron microscopy techniques, including STEM and FIB, to investigate the structure and behavior of catalytic nanomaterials critical for green hydrogen and energy
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broad experience in the development of electronic structure methods and their application in order to perform atomistic simulations of molecules and materials. These include (but are not restricted