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approached by tools in both computational chemistry and applied mathematics. Specifically, the project involves the development of mathematical modeling strategies at both numerical and analytical level to
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Economy group. The positions will be based within the school of Chemistry and Chemical Engineering and will contribute to the digital tool development within two EPSRC funded projects: IDEA: Inverse Design
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of an evolution of this concept, 3D Angular Momentum Multiplexing (3DAMM), for advanced infrastructure to train communications. Its application is to provide a low cost, energy efficient solution to deliver
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of an evolution of this concept, 3D Angular Momentum Multiplexing (3DAMM), for advanced infrastructure to train communications. Its application is to provide a low cost, energy efficient solution to deliver
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development is required. We are seeking a proactive individual with strong initiative, problem-solving skills, and the ability to work both independently and as part of a team. Excellent communication skills