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Field
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der Waals heterostructures. In particular, we will explore the optimal reading of magnetic information via non-linear effects. The project also foresees the integration of optimal working materials
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methods (CASSFCF/NEVPT2). - Stage 2: Support in the analysis of molecular diffusion processes through membranes by means of molecular dynamics studies, oriented to optimize the response as MRI contrast
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samples. MAIN RESPONSIBILITIES Analyze spatial transcriptomics and multi-omics datasets from cancer-patient samples. Develop and optimize bioinformatics pipelines. Integrate and interpret data to identify
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materials. Basic principles: atmospheric pressure jet plasma systems in multiple modes optimized for polymer coating synthesis. Professional Experience: Experience in functions similar to those described will
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artificial intelligence. Good knowledge of linear algebra and optimization tools. Good programming skills in Python and Matlab. Good written and oral communication skills in English. Specific Requirements
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sequences, networks, trajectories, images, etc. - Design, programming, optimization, and parallelization of machine learning algorithms. - Search in repositories and bioinformatics of DNA sequences
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appropriate modelling details for each identified interaction. Establish optimal detection methods for converter-driven interactions in modern electrical energy systems. Propose systematic procedures
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Executive to support the Pilot Line Director in the implementation and operation of the PIXEurope Pilot Line. The successful candidate will be responsible for the overall distribution and optimization
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participate in the daily activities of the hospitalization area of infectious diseases and in the nosocomial infection section. The candidate will be involved in antibiotic optimization policies and programs
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coatings using techniques like electrodeposition and dip coating. •Develop and characterize porous TiO₂ and metal oxide thin films. •Establish and optimize 3D in vitro skin models for biological testing