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disturbance experiments at Trinity College Dublin and on modelling resilience and RD at University of Zürich are planned. Research Project DC3 DC3 will use empirical plankton ecology to analyze both
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Python/Matlab or similar. Other Valued Skills Experience in FDTD simulations of advantage. Experience in quantum photonic principles for quantum sensing such as ODMR. Quantum Chemistry/Modelling
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area, namely Mechanical Engineering, or related fields. b) Experience in the numerical modelling of acoustic phenomena, particularly in acoustic streaming and cavitation processes. c) Experience in
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; Skills in computer programming. Workplan and objectives to be achieved: Development of Machine Learning tools for retrobiosynthesis pipelines, including: (i) validation and extension of models and tools
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% Programming and implementation of sensors in microelectronics, 30%; Experience in modelling real-life system for control, 30%; The final classification of the applicant’s merit with the achieved through
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. Understanding of ocular safety, with emphasis on the effects of radiant energy, relevant to environments with UVC radiation sources. Proficiency in scientific and modelling software, such as Zemax, Mathematica
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learning-assisted computational pipeline for the automated detection of point defects in atomic-resolution scanning transmission electron microscopy (STEM) images. Using monolayer MoS₂ as a model system, the
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dynamic thermal simulation of buildings with standard lightweight façades. Development of an innovative numerical model in EnergyPlus that allows for the simulation of buildings with dynamic thermal
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, version control). Specific Requirements Criteria for the assessment of candidates 1. Match between the candidate's profile and the Group 2 / QLAB research agenda - 50%. 2. Methodological skills (optics
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for modelled signal characterisation with a wide range of applications that goes from very low Gravitational Wave signals to Gravimetry. Fellowship 5 – Investigation of the electro-optic properties in BaTiO3