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for the creation of 3D products, as it allows us to overcome the main limitations of current additive technologies. This research is aimed at the development of numerical models based on molecular dynamics approach
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25 May 2024 Job Information Organisation/Company Politecnico di Milano Research Field Engineering Researcher Profile Recognised Researcher (R2) Leading Researcher (R4) First Stage Researcher (R1) Established Researcher (R3) Country Italy Application Deadline 24 Jun 2024 - 23:59 (UTC) Type of...
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measurements on molecules of optoelectronic interest. These experiments are performed in the framework of the H2020 ERC TOMATTO project "The ultimate time scale in organic molecular optoelectronics
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for selective recognition of molecular iodine and other compounds, including anionic compounds, of biological interest. The presence of heteroatoms in these compounds will be used to promote recognition processes
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. Analysis of the process stages and definition of the basic modeling assumptions. Data gathering and development of a dynamic model of the system. Validation through comparison with real system data at pilot
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) at the Politecnico di Milano, enhancing research experience, including international, in the field of transport phenomena, fluid dynamics of reactive and multiphase systems, with reference to applications in
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, potentially exploiting the intrinsic dynamics of the device. In parallel, a characterization activity must provide feedback on the limitations of implementable synaptic weights, such as the number of bits per
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and identification of the most critical process stages. Benchmark and identification of the basic modeling assumptions. Data gathering and development of a dynamic model of the process. Validation
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for the investigation of plasmas in LPDs and tokamaks. This project aims to apply the most advanced codes for plasma-wall interaction, such as ERO2.0, to a LPD and tokamak to describe the dynamics of hydrogen, argon and