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                at the molecular scale, even breaking covalent bonds. Indeed, mechanical force is a formidable source of energy that, with its ability to distort, bend and stretch chemical bonds, is unique in its ability to promote 
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                systems that morph with intention rather than by chance. We are inspired by nature, that offers countless inspirations, but the challenge is to translate these elegant mechanisms into technical solutions 
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                A competition for the fully funded Ashby PhD Scholarship in the area of Mechanics and Materials is now open at the Department of Engineering, University of Cambridge. The Scholarship, endowed in 
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                treatment in recycled cardboard making or to reassess the types of chemicals that the industry uses. The aim of this PhD project is to illuminate the key mechanisms of how the surface-active chemical (SAC 
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                mechanisms of how the surface-active chemical (SAC) films interact with the surface of microbial biofilms, to investigate rheological properties of these films and develop physical properties-composition 
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                -Planck-Zentrum für Physik und Medizin, Erlangen) in order to decipher the chronology and microscopic mechanisms of bacterial ECM formation. This project will uncover the hitherto unknown mechano-physico 
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                microscopic mechanisms of bacterial ECM formation. This project will uncover the hitherto unknown mechano-physico-chemical mechanisms that lead to ECM formation – the key component that cements bacterial 
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                Primary supervisor - Dr Myriam Charpentier Nitrogen (N) acquisition is fundamental for plant growth. However, N is poorly available in soils, leading to extensive and costly chemical fertiliser applications. It is estimated that 50-70% of nitrogen-derived fertilizer provided to the soil is lost,... 
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                discover and test candidate molecular and cellular mechanisms underlying the switch between structural brain plasticity and degeneration in response to experience, and how this in turn modifies behaviour 
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                , fabrication, and experimental implementation of piezoelectric energy harvesters capable of operating under heavy mechanical loads. This project aims to develop innovative devices that can convert large-scale