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characterization, process testing at laboratory scale, and techno-economic evaluation of developed routes. The project contributes to Morocco’s strategic objectives in resource valorization, environmental
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design. Objectives: The main objective is to support the development and validation of morphing drone prototypes by combining structural optimization, lightweight design, and experimental testing
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safe working procedures in a chemical laboratory. Excellent communication skills (oral and written) in English. Good publication track record in peer-reviewed journals. Ability to work independently and
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procedures in a chemical laboratory. Excellent communication skills (oral and written) in English. Good publication track record in peer-reviewed journals. Ability to work independently and as part of a
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, ICP, and gas sorption analysis. Good understanding of process design for adsorption or membrane-based separation. Strong track record of publications in reputable peer-reviewed journals. Excellent
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and safe working procedures in a chemical laboratory. Excellent communication skills (oral and written) in English. Good publication track record in peer-reviewed journals. Ability to work independently
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laboratory. Excellent communication skills (oral and written) in English. A proven track record of publications in peer-reviewed journals. The ability to work both independently and as part of a
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, including their potential applications in agriculture. Proficiency in experimental design, data analysis, and statistical software. Excellent written and oral communication skills, with a proven track record
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to advance the overall project objectives. Supervision of undergraduate and PhD students Qualification: A PhD degree in physics, materials chemistry, engineering physics, materials science or similar with
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industrial conditions. Keywords: Artificial intelligence, autonomy, digital twin, edge computing, UAV systems. Objectives: Support the development of AI and machine learning algorithms for autonomous