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<div style="direction:ltr; font-family:Tahoma; color:#000000; font-size:10pt">Estimados,</div>
<div style="direction:ltr; font-family:Tahoma; color:#000000; font-size:10pt"> aqui va un anuncio de una posicion postdoctoral en mi grupo. Si hay alguien interesado, que se ponga en contacto conmigo. Saludos,</div>
<div style="direction:ltr; font-family:Tahoma; color:#000000; font-size:10pt"> Jorge<br>
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<div style="text-align:left"><span style="font-family:'Segoe UI',Helvetica,Arial,sans-serif">Jorge J. Kohanoff, Director | Voice: (+44/0) 2890 976032</span></div>
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<div style="text-align:left">Atomistic Simulation Centre | Fax: (+44/0) 2890 975359</div>
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<div style="text-align:left">Queen's University Belfast | e-mail: j.kohanoff@qub.ac.uk</div>
<div style="text-align:left">Belfast BT7 1NN, Northern Ireland (UK) </div>
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<div id="divRpF601486" style="direction:ltr"><font size="2" color="#000000" face="Tahoma">Posicion postdoctoral, Queen's University Belfast, Reino Unido<br>
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<pre>Applications are invited for a 4-year EPSRC-funded postdoctoral position, <br>starting 1 November 2014, to carry out theoretical and computational work <br>in the field of bulk nanobubble dispersions.</pre>
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<pre>Nanobubble dispersions are a novel type of nanoscale bubble system. Their <br>most peculiar characteristic is the remarkable longevity of the bubbles of <br>which they are composed. Existing theories predict that bubbles this small <br>should dissolve extremely quickly but in nanobubble suspensions tiny bubbles <br>persist for weeks and even months. Thus, to fully exploit the potential <br>benefits of nanobubble suspensions, major developments are needed in the <br>science underpinning their existence and behaviour. The overall aim of this <br>project is to study the underlying mechanisms by which these nanobubble <br>dispersions come to exist and persist, and to explain some of their unusual <br>properties using a combination of both experimental and theoretical work.</pre>
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<pre>Applicants should have a PhD in Chemistry, Physics or another relevant subject. <br>A good background in Statistical Mechanics, computer simulation and computer <br>programming is essential. Experience in molecular dynamics simulation of liquids, <br>cavitation, and parallel computing, are also highly desirable. The candidate will <br>be based at Queen University Belfast, and will collaborate closely with <br>researchers at Daresbury Laboratory and in the Department of Chemical <br>Engineering at the University of Birmingham, where the experimental part of <br>this project will be carried out. The project also involves collaboration with <br>industry.</pre>
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<pre>Applicants should complete an online application form, available from the <br>following website: <a href="https://hrwebapp.qub.ac.uk/tlive_webrecruitment/wrd/run/ETREC107GF.open?VACANCY_ID=6268994czz&WVID=6273090Lgx&LANG=USA" target="_blank">https://hrwebapp.qub.ac.uk/tlive_webrecruitment/wrd/run/ETREC107GF.open?VACANCY_ID=6268994czz&WVID=6273090Lgx&LANG=USA</a>, <br>providing an up-to-date CV, a letter of motivation, and the names and contact <br>details of at least three academic referees.</pre>
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<pre>Informal enquiries may be directed to Prof. Jorge Kohanoff <br>(<a href="mailto:j.kohanoff@qub.ac.uk" target="_blank">j.kohanoff@qub.ac.uk</a><a href="mailto:j.kohanoff@qub.ac.uk" target="_blank"><mailto:j.kohanoff@qub.ac.uk></a>) or Dr Gareth Tribello <br>(<a href="mailto:g.tribello@qub.ac.uk" target="_blank">g.tribello@qub.ac.uk</a><a href="mailto:g.tribello@qub.ac.uk" target="_blank"><mailto:g.tribello@qub.ac.uk></a>)</pre>
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<pre>Anticipated interview date: Wednesday 10 September 2014</pre>
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<pre>Salary scale: £31,342 - £37,394 per annum, depending on experience.</pre>
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<pre>Closing date: 20 August 2014</pre>
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