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aspires to make a lasting impact on national, continental, and global scales, positioning itself as a leader in education, research, and innovation. The Materials Science, Energy, and Nano-engineering (MSN
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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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the research structure using integrated management approaches in pursuit of capacity building/strengthening and the preservation of scientific rigor in research studies. Support if required, the development
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-negative pathways. The open positions currently available provide a valuable opportunity for skilled and driven individuals to join a dynamic team and make significant contributions to this important and
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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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activities and approaches, in order to improve conceptual development and implementation. Identify areas of improvement within the research structure using integrated management approaches in pursuit
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industrial implementation. Identify areas of improvement within the research structure using integrated management approaches in pursuit of capacity building/strengthening and the preservation of scientific
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chemistry and chemical engineering under the direction of Prof Youssef Belmabkhout. The successful candidate will develop and conduct applied research programs in chemistry and chemical engineering focusing
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SUSMAT-RC - Postdoc Position in Computer-Aided Design and Discovery of Sustainable Polymer Materials
candidate is expected to: Build and evaluate chemical databases based on experimental and computational data. Establish predictive models based on artificial intelligence methods. Utilize the developed models
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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