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process integration and mass transfer optimization under corrosive conditions. Investigating material stability, impurity control, and competing-species effects in highly acidic and complex matrices
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agricultural conditions. The project will involve microbial strain production and characterization, fertilizer formulation through coating and co-granulation approaches, physicochemical and microbiological
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nutrient availability in water-retentive and responsive systems, with relevance to arid and semi-arid agricultural conditions. Utilize a variety of analytical, spectroscopic, and microscopic techniques (FTIR
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to increase crop production. Hence, exploring the diversity and functioning of soil microbial resources capable of improving nutrients use efficiency and tolerating harsh conditions, could be an effectively
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Design and execute experiments to study molecular and physiological processes in plants. Utilize tools such as proteomics, and metabolomics. Analyze plant phenotypes under controlled and stress conditions
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the efficiency, reliability, and scalability of water harvesting technologies across different environmental conditions. Analyze material-system interactions, particularly the performance of adsorbents, thermal
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farms; Test how to Improve soil organic carbon content using organo-mineral resources under controlled condition; Assess the effect of using organo-mineral resources on soil carbon stock in the field