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Field
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objective of this thesis is to develop a new PUF based on Ferroelectric technologies and evaluate it according to the state of the art both in terms of quality and security attack. In addition, PUF design are
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will be considered. Finally, demonstrators will be produced, for example enabling the design and control of a micro-actuator based on the formation and destruction of drops or the design of a robot
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The aim of this thesis project is to design a fully operational phase-change immersion set-up with the aim of achieving very high heat transfer coefficients (and thus cooling energy-dense equipment
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exchange interaction between their magnetic sub-lattices. In this PhD thesis, we propose to design and use a novel detection scheme consisting in integrating the antiferromagnet within a micrometer scale
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fluid-sediment velocity profiling method based on multi-bistatic pulse-coherent Doppler velocimetry which is currently implemented in the Acoustic Concentration & Velocity Profiler technology designed
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design, and innovative computer architectures. Our research interests range from the study of fundamental phenomena to the design of new devices with potential for technological applications in information
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)” is an internationally known laboratory focusing on the fundamental science of materials for energy storage and conversion devices. The main activities of CSE include the structural design of new
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have expertise in the conception, the fabrication and the characterization of battery components, including the electrodes, electrolyte and the separators. To do so, they combine sol-gel chemistry and
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specifically-designed particles to contaminated or damaged regions using diffusiophoresis for remediation. For that, the candidate will, Perform an extensive literature review on diffusiophoresis in porous media
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envisaged in the national energy plan for the future, identifying necessary adaptation measures to enhance energy security in a changing climate context. Requirements Research FieldEnvironmental