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bacterial genomic sequences. The successful candidate will play a key role in developing and optimizing these models, applying them to diverse bacterial use cases, and contributing to the development
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technical background in at least one of the following areas: Mathematical optimization, Resource allocation, Machine learning, Wireless communication. Good communication skills in oral and written English
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porous materials for CO2 hydrogenation reactions using photo- or thermal catalysis. The successful candidate will be involved in optimizing the synthesis process, with experience in photo-catalysis
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, Cosmetology, Natural Products Chemistry, and Cell biology or related field. Requirement Hands-on experience in optimizing extraction processes and characterizing bioactive ingredients from various biomass
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communities in soil environments. Develop and optimize laboratory protocols for characterization, and functional analysis of soil biology. Utilize high-throughput sequencing technologies to analyze soil
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. Design and perform laboratory experiments to test and validate new approaches for optimizing the efficiency and sustainability of phosphate-based products. Utilize advanced analytical techniques (such as
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department is seeking a highly motivated and skilled Postdoctoral Fellow to join a dynamic, interdisciplinary research team. The position focuses on the development, optimization, and integration of advanced
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requires active participation in an interdisciplinary team to evaluate and optimize integrated soil fertility management strategies. Key duties and responsibilities: Research implementation: Design and
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friendly coatings. Key Responsibilities Research and Development: Design, synthesize, and characterize green or ecological materials for agronomic applications. Material Optimization: Develop functional
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: Conduct experimental research to advance the understanding of thin film deposition processes using PVD techniques such as magnetron sputtering Optimize deposition parameters to achieve desired thin film