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Sustainable Materials for Consumer Products)¿. The part of the project led by Prof. Cooper will focus on two key objectives: 1) development of automated and robot-assisted methods for polymer synthesis
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Sustainable Materials for Consumer Products)¿. The part of the project led by Prof. Cooper will focus on two key objectives: 1) development of automated and robot-assisted methods for polymer synthesis
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Sustainable Materials for Consumer Products)’. The part of the project led by Prof. Cooper will focus on two key objectives: 1) development of automated and robot-assisted methods for polymer synthesis
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England (E3) Programme and will synergistically combine world-leading expertise in membrane biology and novel polymer chemistries to establish a first-of-its-kind institute, expanding our distinctive
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for monitoring high-value composite materials, including Carbon Fibre Reinforced Polymer (CFRP). Collaboration between the optics and composite community is key in this project, and our researchers will work
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optical fibre, specifically designed for monitoring high-value composite materials, including Carbon Fibre Reinforced Polymer (CFRP). Collaboration between the optics and composite community is key in
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biomanufacturing route with carbon capture and utilisation (BMCCU) that can produce sustainable bioproducts (e.g., detergents, polymer, medicine, etc) with net zero loss of carbon resources flow throughout
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synergistically combine world-leading expertise in membrane biology and novel polymer chemistries to establish a first-of-its-kind institute, expanding our distinctive excellence in computational membrane science
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thermophilic system, and of alpha1-antitrypsin in a range of conformations, including the pathological polymer state purified ex vivo. We already have very encouraging preliminary data showing we can purify
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skilled researcher to support multiple research projects working with various sensors, electronic devices, smart textiles, e-textiles, wearable electronics, smart polymers, smart composites, as