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Perpignan, and will then continue at the LaTEP laboratory in Pau. Doctoral school: ED 305 – Doctoral School of Energy and Environment at UPVD (University of Perpignan Via Domitia). Context In the current
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conductive regions, • Investigating doping mechanisms and their stability, • Electrical and morphological characterization of transistors, • Evaluating device stability under real-world operating conditions
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technologies to address current societal challenges related to security, health, the environment, and energy. This position is located in a sector covered by the protection of scientific and technical potential
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electric spin control and long spin coherence properties. In the past we have confirmed the magnetoelectric couplings in these molecules using EPR spectroscopy under electric fields, and we recently
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of the facilities required to develop this PhD project: bacterial culture, rheology, surface charge measurements (zeta potential), thermal analysis, X-ray diffraction (XRD), infrared spectroscopy, mechanical behavior
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extensive magnetic and electrical characterization of 300mm fabricated devices, potentially with support of micromagnetic simulation. In this course, alternative materials and methods will be developed using
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) together with three partners in charge of (i) synthesizing novel DNA-templated LH materials and (ii) building a theoretical description of the EE transport in these materials (https://anr.fr/Projet-ANR-24
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. The program's key objectives include advancing the capabilities of ingestible devices by addressing current technical limitations, with a focus on improving diagnostic accuracy, reducing the need for additional
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Arts et Métiers Institute of Technology (ENSAM) | Paris 15, le de France | France | about 14 hours ago
industrial process control remains under-explored; the current approach relies on statistical tests or conventional machine learning. One of the manufacturing processes addressed in this thesis is injection
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the lower atmosphere to the inner heliosphere, and allow a direct comparison with current in-situ data of the nascent solar wind. The numerical experiments will be based on the "Adaptively Refined MHD Solver