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-driven frameworks for multi-scale modeling, multi-objective optimization, and predictive control of complex chemical and biochemical processes. The research will contribute to next-generation smart
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. To find novel therapeutic targets of drug-resistant bacteria, in our investigation, we apply OMICS approaches to study the alteration of the proteome and its organization on protein complexes to uncover
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: Photonics, Advanced Materials, Optical Detection Systems Experimental Responsibilities: Lead experiments to characterize and study the properties of new photonics materials. Develop complex optical systems
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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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Africa. The program awards an EPS engineering degree, and its education and research are developed at the UM6P Institute of Applied Physics. Field: Nuclear Physics, Radiation Detection, Experimental
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. Field: Nuclear Physics, Radiation Detection, Experimental Measurements Experimental Responsibilities: Conduct hands-on research on radiation detection in nuclear physics. Design and execute experiments
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set of objects that are connected to each other in some fashion. Mathematically, a network is represented by a graph, which is a collection of nodes that are connected to each other by edges. The nodes
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equipment. You will join an international multidisciplinary team. You will apply simulation, multi-objective optimization, and data-driven analytics to evaluate and compare material intralogistics handling
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objectives, demonstrating your alignment with the position and the department's research priorities. Publication Table: Present a table listing your indexed publications, arranged in descending order from
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objectives are met efficiently. Qualifications: A Ph.D. in Materials Science, Environmental Engineering or a related field. Proven experience in synthesis and characterization of nanomaterials or composites