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Mishra (NNUH) teams — collaborative, cross-disciplinary, and hands-on. Who should apply: We welcome applicants with backgrounds in synthetic chemistry, structural biology, pharmacology, biophysics
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Characterize the molecular basis of enzyme function with spectroscopic, kinetic, and structural techniques. About the programme Join experts in industry and academia working to sustainably manufacture
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, and the social and labour market effects of rapid structural change. The doctoral thesis should consist of at least two of the following sub-studies: Tensions in multi-level governance and the need
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processing (e.g., heat treatments) can have on their structure and properties, and (iv) how WELs differ in different aerospace steel grades. This PhD project will seek to address these gaps. The project will
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FFA on different type of metallic surfaces as a function of temperature and concentration. The modelling data and principal component analysis will be used to build property-structural relationships
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keen interest for bio-imaging. Completed Master`s degree in molecular/structural biology or biophysics. An outstanding academic record. Previous experience in protein imaging using atomic force
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theoretical and practical skills training provided by a mixture of industry and academic project partners covering structural biology; biophysical and analytical methods; computational modelling; directed
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at sub-millimetre scales to enhance their tensile strength, promising cementitious materials that meet structural demands with significantly less cement. The successful candidate will: have access to world
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sustainable construction materials. The project includes laboratory experimentation, materials characterisation (e.g., mechanical, durability, and microstructural testing), carbon accounting, and potential
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population health. The student will have the opportunity to attend the structured Early Detection Training Programme (run in partnership with the Alliance for Cancer Early Detection (ACED)), providing PhD