12 research outputs found

    Chief's costumes

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    Seminars on improvisation

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    These seminars will involve exercises, guided improvisation and improved performance that bring together diverse practitioners from different communities (across 4 continents) formed/informed by different contexts and histories to provide a focused and rich platform for engagement. The aim of the seminars will focus on clarifying what Andrew, Jondi and the participants mean by improvisation, how we use it, what are its dimensions and what do we imagine its future to be. The workshops will encompass experiential, anecdotal, theoretical and philosophical pathways, in no particular order

    Biosynthesis of zinc substituted magnetite nanoparticles with enhanced magnetic properties

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    The magnetic moments of magnetite nanoparticles are dramatically enhanced through the addition of zinc in a microbiologically driven synthesis procedure. The particles are produced through the reduction of Fe(III)-compounds containing Zn(II) by the iron reducing bacterium Geobacter sulfurreducens. Results indicate a significant increase in the saturation magnetization by over 50% compared to magnetite at both room and low temperatures for relatively minor quantities of zinc substitution. A maximum saturation magnetization of nearly 100 emu g−1 of sample is measured at room temperature. Analysis of the cation site ordering reveals a complex dependence on the Zn content, with the combined effect of Zn substitution of Fe3+ ions on tetrahedral sites, together with Fe2+ cation oxidation, leading to the observed magnetization enhancement for low Zn doping levels. The improved magnetic properties give superior performance in MRI applications with an MRI contrast enhancement among the largest values reported, being more than 5 times larger than a commercial contrast agent (Feridex) measured under identical conditions. The synthesis technique applied here involves an environmentally benign route and offers the potential to tune the magnetic properties of magnetic nanoparticles, with increased overall magnetization desirable for many different commercial applications
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