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to) SIESTA (www.siesta-project.org) and its TranSIESTA functionality. SIESTA is a multi-purpose first-principles method and program, based on Density Functional Theory, which can be used to describe the atomic
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to help build the Quantum Industry through a Pan-European mobility program. A number of fellowships therefore exist to support outstanding DigiQ students to undertake a research stay (internship or master’s
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. The successful candidates will be joining the Photon Harvesting in Plants and Biomolecules group led by Prof. Dr. Nicoletta Liguori. Our group combines state-of-the-art methods in experimental ultrafast
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/or implementation of algorithms and/or computational pipelines Background/experience in building statistical and/or machinelearning methods, in particular for data integration tasks, would be a plus
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Biosensors carries out research on the integration of nanotechnology methods, tools and materials into low cost, user friendly and efficient sensors and biosensors. The main objective of Merkoçi group is to
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Biosensors carries out research on the integration of nanotechnology methods, tools and materials into low cost, user friendly and efficient sensors and biosensors. The main objective of Merkoçi group is to
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Experience: Chemical synthesis by CVD and hydrothermal methods, microscopy and spectroscopic techniques · Personal Competences: We are looking for a highly motivated person, enthusiastic
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) and its TranSIESTA functionality. SIESTA is a multi-purpose first-principles method and program based on Density Functional Theory, which can describe the atomic and electronic properties of systems
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and 2D materials, and oxides. Fabrication of functionalized Pb-free MHPs by solution processing methods. Fabrication of complete Pb-free MHPs solar cells and memristors (TFTs). Stability analysis
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and computational methods. The lab encourages wet lab scientists to engage in their own data analysis and provides a supportive environment to this end. The group is funded by European Research Council