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- CRANFIELD UNIVERSITY
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quality, which finally needs to go for the agricultural application in both lab scale and field testing. Job Requirements: PhD degree in Materials Science, Chemical Engineering, Biology (especially Plant
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: PhD degree in Chemical Engineering or Polymer Chemistry or in equivalent discipline with competitive publication record, with specialty in membrane technology. Knowledge and experiences in the relevant
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: Holders of a Master's degree in Mechanical Engineering or related areas who are PhD students in Sustainable Product and Process Engineering. . DURATION: 12 months, eventually renewable. The fellowship is
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postdoctoral researchers and PhD students investigating complementary experimental, environmental, regulatory, and microbiological aspects of polymer degradation across the Schools of Chemistry, Chemical
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Infrastructure: peatland ecology, urban green infrastructure, biodiversity and conservation. Sustainable Materials & Resources: low-carbon materials, circular economy, renewable resources, and engineering
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Infrastructure: peatland ecology, urban green infrastructure, biodiversity and conservation. Sustainable Materials & Resources: low-carbon materials, circular economy, renewable resources, and engineering
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. Qualifications • PhD in Materials Science, Chemistry, Chemical Engineering, Biomedical Engineering, or a related field • Strong background in hydrogels, hygroscopic materials, polymers, sorbents, or thermal
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. Qualifications • PhD in Materials Science, Chemistry, Chemical Engineering, Biomedical Engineering, or a related field • Strong background in hydrogels, hygroscopic materials, polymers, sorbents, or thermal
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standards linked to your post PhD experience. Eligibility criteria If you are highly motivated researchers in the areas of Polymer Chemistry and Membrane Technology with passion in sustainable bioprocessing
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also reducing the membrane lifetime. Cranfield are therefore working on a new generation of inorganic 2D materials to produce a chemically and physically robust reverse osmosis membrane technology