290 phd-in-architecture-interior-design-built-environment Postdoctoral positions at CNRS in France
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for the detection of trace amounts of pollutant molecules (BTEX) in aqueous environments (saline or fresh water). He/she will contribute to the implementation of the complete optical system and associated
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field of molecular chemistry and hybrid functional materials. He/She will be involved in the design, experimental work and characterization of new molecular systems exhibiting tunable properties
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and their dynamics in real time. This work will shed light on the interplay between ferroelectric order, interlayer excitons, and dielectric environment, revealing how local optical responses correlate
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her/his project. He/she shall handle design, plan, perform and interpret various experiments. He/she should master the associated literature. He/she should be able to communicate his/her results in
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. - Knowledge of programming techniques (C/C++, Python, Bash) in a Linux environment. - Knowledge of a version control tool (gitlab). - Knowledge of software architectures. - English (level C1). Skills: - Conduct
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, PhD students, and postdocs, conducting research in the field of Mechanics of Living Systems and Health Engineering. The lab carries out fundamental studies on the understanding and modeling of living
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laboratory and cleanroom facilities. • Spearhead innovation toward emerging applications in 2D quantum photonics and light-based neuromorphic computing. • Mentor and guide PhD students and interns, fostering a
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, which brings together 4 partners: LTM/CNRS, pheliqs/CEA, Institut Néel/CNRS and CREAH/CNRS. The aim of the project is to manufacture betavoltaic sources using a new core-shell wire architecture
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researcher to join our team and contribute to a project, dedicated to the study of elastic wave transport in microstructured silicon membranes. The researcher will be primarily responsible for the design and
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of executing the TGL-ReACH project throughout the production phase. Activity 1: Proofread and correct transcripts produced by OCR and HTR processes in the eScriptorium environment Activity 2: Encode XML data