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Mora Seró and Sixto Giménez Juliá as principal researchers. The objective of the OHPERA project is the realisation of an efficient photoelectrochemical cell for the generation of hydrogen from
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-thermophoresis at the nanoscale in atomic models through computer simulations. Main tasks: Development of mathematical models. Realization of computer simulations. Analysis of simulation results and comparison
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approaches. The main objective of Merkoçi group is to design nanotech devices that can be used even by non professional people for fast diagnostic at home or doctor's office, control of food quality, safety
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associated with dust and combustion aerosols influences primary productivity and carbon uptake in vast regions of the open ocean. The amount and solubility of the deposited iron depend upon its origin and
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of version control systems (git, svn, cvs…) Interest in tutoring and/or advising master and PhD students Competences Fluency in spoken and written English, while fluency in other European languages will be
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ability to lead a small, diverse team of PhD and Master students. Ability to model quantum optical interactions with atoms and to interact with theory collaborators is also desirable
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), through to devices (fabrication technology, nanofabrication) and applications (neural implants and biomedical technologies, biosensors, flexible electronics). Main Tasks and responsibilities: The candidate
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), through to devices (fabrication technology, nanofabrication) and applications (neural implants and biomedical technologies, biosensors, flexible electronics). Main Tasks and responsibilities: The candidate
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from water, and N2 fixation to ammonia. Design of photo(thermo)catalytic reactors. Generation of research outputs and contribution to research with independent and original ideas. Communication and
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lattice gauge theories in two and three spatial dimensions. The successful candidate will join a small team of Master, PhD students and postdocs, and is expected to play a leading role in the development