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both theoretical and experimental approaches. PhD Project Objective This project proposes a theoretical and experimental approach to understand and control charge storage mechanisms in MnO₂ in an ionic
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13 Mar 2025 Job Information Organisation/Company CNRS Department Laboratoire ondes et matière d'Aquitaine Research Field Physics Researcher Profile First Stage Researcher (R1) Country France
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The PhD candidate will explore new methods for wireless power transfer and control of bioelectronic implants deep inside the human body. The research will focus on: Wave Physics & EM Wave Control
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the introduction of new tools for the analysis of such equations both from the theoretical and numerical point of views. This project will contribute to the development of such methods. This PhD project focuses
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that such a treatment is possible. The PhD student's project will be to implement rheological models of powders in the Basilisk open source software, which will require original theoretical and numerical
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industrial problems co-defined with EDF. Qualifications - Master degree in quantum physics or equivalent - Former internships in theoretical quantum optics and quantum thermodynamics will be considered as a
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the user's movements. The PhD student will be expected to tackle the problem through a comprehensive approach, incorporating theoretical, numerical, and experimental techniques. Upon completion of this PhD
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process, and to benchmark them as a function of their energy-efficiency. The beginning of the PhD work will be focused on the quantum states of a single bosonic mode. A key idea is that displacements and
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-supervised by researchers two Pprime research groups: Turbulent Combustion and Flame Structure (CT) and Aerodynamics, Acoustics and Turbulence (2AT). The PhD involves experimental and theoretical components
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School of Physics and Physical Chemistry (ED182). The PhD work will be supervised by Pr. M. Mauro, presently hosted at the Institute of Physics and Materials of Materials Strasbourg (IPCMS) (https