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Field
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candidate will help characterise a novel oxygen sensing enzyme implicated in hypoxic disease using a range of biochemical, biophysical and structural techniques, with the aim of elucidating enzyme mechanism
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on Experimental Study and Computational Solids Mechanics model of soft multifunctional materials such as magneto-active polymers (MAPs), Electro-active polymers (EAPs). The successful candidate will work on the
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national human rights courts, tribunals, mechanisms, and transitional justice processes, and propose potential pathways to justice for victims. This position relates to the second part of the project
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into two main areas: (1) material development and characterization to ensure optimal sensing and mechanical performance, and (2) structural evaluation of SS-FRCMs under environmental stressors such as freeze
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hypotheses of diversity-productivity relationships to infer the ecological mechanisms driving these relationships in temperate forest ecosystems. Hybrid or remote arrangements may be considered, but in-person
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in neurodevelopment. This role will focus on data analysis and methods development to develop a better understanding of the mechanisms underpinning typical and altered neurodevelopment, brain structure
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. The research project is funded by the BBSRC for three years and is led by Dr Tim Davies. The research will explore the mechanism by which Wnt signalling can promote successful cytokinesis in the early C. elegans
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reinforced concrete structures, using mechanical, acoustic, electromagnetic, electrical, and electrochemical methods and devices, such as ultrasonic methods or GPR, 2) application of numerical simulation and
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of the Principal Investigator, the Postdoctoral Associate will be responsible for the design, analysis, interpretation, and presentation of experiments regarding the study of molecular mechanisms of the regulation
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. The research project is funded by the BBSRC for three years and is led by Dr Tim Davies. The research will explore the mechanism by which Wnt signalling can promote successful cytokinesis in the early C. elegans