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Structural Geology Tectonics Seismic analysis Geomoechanics Hydrocarbon reservoir systems Job Description The Geology and Sustainable Mining Institute (GSMI) of the University Mohammed VI Polytechnic (UM6P) is
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structures, integrating morphing wings and additive manufacturing processes for high-performance and energy-efficient drones. Keywords: Morphing wings, composites, additive manufacturing, aerodynamics, UAV
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and optimize the extraction processes. Investigate structure-property relationships to correlate the extraction process with the functional performance of nanofibers in various applications
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, in order to improve conceptual development and implementation. Identify areas of improvement within the research structure using integrated management approaches in pursuit of capacity building
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the intersection of energy transition, circular economy, and sustainable construction production. This position aims to advance innovative solutions that promote sustainability in the built environment, focusing
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industrial chemical operations. The selected candidate will join a multidisciplinary team and contribute to the scientific and technical advancement of sustainable construction materials. He/She will
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. The candidate will contribute to the mechanical design, composite fabrication, and experimental validation of UAV structures, integrating morphing wings and additive manufacturing processes for high-performance
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into the fundamental reaction mechanisms and kinetics involved. Investigate thermodynamics-electrode/electrolyte interfacial structure-property relationships to gain deeper insights into material behavior. Develop
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the completion of the construction of its facilities. She/he will: Undertake original research of international excellence. Prepare papers for publication in leading journals and/or contribute to the dissemination
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) necessary for structural and physical-chemical characterization of polymer and polymer-based nanocomposite. Proven experience and familiarity with electrochemical techniques necessary for preparation