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of the energy efficiency of components and systems. Position description : The position is available within the Grenoble Electrical Engineering Laboratory (G2ELab), in the Power Electronics team
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oxide materials, with the aim of accelerating the discovery of materials for smart windows, smart sensors, low power lighting and electronic systems. In this context, CALPHAD method appears to be a
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Project description: Flexible electronics has witnessed exciting progress in academia over the past decade due to advantages in manufacturing cost, large area fabrication, weight reduction, shape
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Description The person recruited will be responsible for the development of a computer system that combines deep learning, natural language processing, and psychology of language. - Develop, manage and
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physicsYears of Research Experience1 - 4 Additional Information Eligibility criteria The candidate should have the ability to work in a multi-disciplinary environment (e.g. thin films synthesis, cristallo
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Proportion of work : Full time Workplace : Institut de Science et d'Ingénierie Supramoléculaires (ISIS) – Centre Européen de Sciences Quantiques (CESQ) Desired level of education : PhD or equivalent
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Post-Doc- Combinatorial deposition of functional thin films by Spatial Atomic Layer Deposition (M/F)
microscopy, electron microscopy (SEM, TEM) and in situ Raman spectroscopy will be routinely used and will be combined with the developed in situ measurements. For this the postdoc will mainly in charge of
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, or other relevant indicators. - Demonstrated ability to conduct research collaboratively and independently. - High-level communication skills. - Technical knowhow in electronics, mechanical design, modelling
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of the combined experimental/theoretical international ANR project PuMMAVi (Pumping, Measuring and Modeling Atomic Vibrations in the Electron Microscope) in collaboration with the Humboldt Universität
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accessible [1]. Treatment planning is routinely performed on CT imaging since accurate dose calculation requires the conversion of Hounsfield unit values (HU) of the CT to relative electron density (ED