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nanostructures for photonic integration in smart vision systems. In particular, he/she will be responsible for the theoretical study and development of codes and numerical models for computer simulation and design
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quantifying the role of CaCO3 fluxes and acidification in global marine P cycling through a combination of field work in the North Atlantic Ocean, laboratory experiments and numerical modelling. A scientific
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comparative insights that enhance research conclusions from Hope observations. Develop Machine Learning methods and run numerical simulations on NYUAD’s High-Performance Computing (HPC) system. Support
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that align with the group. A successful applicant will have demonstrated experience in one or more of the following: (i) simulation of quantum dynamics, (ii) development and implementation of novel
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situ vibration measurements with advanced numerical simulations. Deep underground structures are strongly influenced by complex dynamic soil–structure interactions. Vibration-based monitoring captures
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background in petroleum engineering, geology, geophysics, or related fields. Knowledge of reservoir engineering (especially numerical simulation) and programming skills is preferred. The objective
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skills will be used to build experiment control systems, data analysis systems, and to perform numerical simulations of experiments. What we offer you We offer a temporary contract for 38 hours per week
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Full time Fixed term: 36 months We are seeking to appoint three Postdoctoral Research Associates (PDRAs) to work on the project ‘Calving Law for Ice-Climate Simulations (CALIX)’ funded by
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until the time of signing the contract. Activity Outline: Development of methodologies for the numerical simulation of partial differential equation systems based on neural networks, with particular
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synaptic resilience and the reliability of synaptic responses. The work primarily involves mathematical modeling and numerical simulation, but also the analysis of experimental datasets for model validation