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in doing so. The Mechanistic Molecular Biochemistry Group (Prof. Ismail) investigates the molecular mechanisms and biological functions of disease-related proteins using a multidisciplinary approach
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EXAFS) and high-resolution Raman and diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) to unravel charge transfer mechanisms, active sites and intermediate molecules in the reaction
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reducing future maintenance costs. Additionally, evaluating the mechanical and durability restoration after repair or healing is crucial for continuous safe operation and extending the useful life
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mechanisms involving genetic, epigenetic and chromatin organisation factors governing the cell-type specific response to ARS mutations. Therefore, integrative genome-wide cis-regulatory network analysis
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well as the available public data suggest mechanisms involving genetic, epigenetic and chromatin organisation factors governing the cell-type specific response to ARS mutations. Therefore, an integrative genome-wide cis
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topics Crystallization of polymers Analysis of the structure of semi-crystalline polymers Mechanical and thermal properties The work involves lab experiments, data acquisition, validating findings
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towards CRC. The presence of genetic differences, including single nucleotide polymorphisms (SNPs), in mucin genes can give rise to a large repertoire of structurally diverse mRNA isoforms via alternative
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for wind turbines, with the ultimate objective of including structural health information in windfarm asset management to optimise structural lifetime consumption while guaranteeing optimal power production
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are effective mechanisms to activate and consolidate the transitions as well as the resulting socio-spatial effects. The project is recruiting 13 doctoral candidates to pursue post-graduate studies towards
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polymorphisms (SNPs), in mucin genes can give rise to a large repertoire of structurally diverse mRNA isoforms via alternative splicing. While most mRNA isoforms produced from the same mucin gene locus encode