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Sciences, to exercise the functions of developing a 3D bone model using micro-automation and microfluidic systems, within the METABONE project “Exploration of metastasis in the bone microenvironment – breast
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the observed response through numerical modelling. Where to apply Website https://aunicalogin.polimi.it/aunicalogin/getservizio.xml?id_servizio=1079 Requirements Additional Information Eligibility criteria Oral
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to understand the conditions leading to air and surface discharges under low-pressure conditions typical aircraft systems. The main objective is to develop simplified, operational insulation models and discharge
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biogeochemistry is also essential. The successful candidate will demonstrate proficiency in numerical modeling and statistical methodologies for interpreting in-situ and satellite observations. Additionally
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and numerically. Particle stability analysis: Investigate mechanical stability of crystals and adsorbents under process conditions. Mechanical stress often causes abrasion and breakage, limiting
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You initiate and manage model research projects at the national and international levels, provide impulses for the topic area’s sustainable development, and support colleagues in their further
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Results: Ability to assess the influence of the engine plume on the release of emissions into different atmospheric layers. Numerical model to describe the temporal and spatial dispersion behaviour
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Design, implementation and validation of an advanced numerical model
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will be modelled by analytical and numerical approaches. Existing analytical approaches will be used as a tool to describe the behaviour of fire exposed TRC in tension, while numerical simulations will
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numerous mechanical constraints. The objective of the project will be to allow the visualization and manipulation of glycan chains of the extracellular matrix by metabolic labeling of unnatural