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in vacuum using a laser focused through a high numerical aperture objective. The laser produces an optical force equivalent to a mechanical spring, and the system can be regarded as a mass-spring
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-142,143Nd, 176Lu-176Hf and 182Hf-182W isotope systematics, and (3) making numerical models of early Earth evolution that can reproduce and account for newly acquired data together with available data from
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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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the design to the production and implementation of instruments on board satellites for numerous space exploration missions (CNES, ESA, JAXA, NASA). Among these instruments, LPC2E is the world leader in space
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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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conditions and validate the developed models. Candidate Profile: We are looking for a candidate with a background in numerical simulation, who is also interested in learning experimental electrochemistry
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been successfully used to stabilize flames of numerous carbon fuels up to powers of 100 kW. The first part of the thesis will study the fundamental interaction phenomena between NRP discharges and a
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, and biology) focused on on topic: functional materials. The institute adopts a multidisciplinary approach to address future challenges across numerous fields, including environmental transition, energy
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conditions; (ii) for the development of simplified models for the key combustion and sound-generation processes; (iii) for the validation of high-fidelity numerical simulations performed as part of a second
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-of-the-art numerical simulations of the solar corona and wind. - Analysis of remote-sensing observations from e.g. SDO, IRIS, Hinode, Solar Orbiter ; - Collaboration with the CROSSWIND team at LP2CE (PI: Clara