<p><img src&equals;"https&colon;&sol;&sol;logoimg&period;careerjet&period;net&sol;f0b8fd31688ced6e096b273c5f4177f0&lowbar;mobile&period;png"&sol;><br &sol;>&NewLine;<b>Job title&colon;<&sol;b> PhD Studentship&colon; Regenerating Freshwater Ecosystems&colon; Chalk Stream Restoration in the UK<br &sol;>&NewLine;<br &sol;><b>Company&colon;<&sol;b> University of Southampton<&sol;p>&NewLine;<p><b>Job description<&sol;b>&colon; Supervisory Team&colon; Paul Kemp&comma; Andrew Vowles<&sol;p>&NewLine;<p> <b>Project description<&sol;b><&sol;p>&NewLine;<p> Chalk streams have been modified by humans for millennia for agriculture&comma; navigation&comma; flood risk mitigation&comma; and hydropower&period; Compared to other river systems they have received relatively limited attention&period; Today&comma; efforts to restore rivers to a more natural condition are widespread for the purpose of enhancing ecological condition&comma; fisheries&comma; and to reduce flood risk through natural flood management strategies&period; Nevertheless&comma; there is often a lack of sufficient monitoring to quantify the effectiveness of such approaches&comma; and where there has&comma; results are often variable&period; This collaborative project led by the University of Southampton in partnership with The Piscatorial Society&comma; Southern Water&comma; and Wessex Rivers Trust will adopt an innovative approach to monitor a unique river and wetland restoration and regeneration project on the River Anton&comma; Hampshire&period; The project will quantify the physical&comma; chemical and ecological response to restoration actions taken by achieving the following objectives&colon; &ast; Physical habitat quantification&colon; depth&comma; width&comma; bathymetry&comma; hydrodynamics&comma; sediments&comma; and woody material of the pre-existing channel will be mapped prior to and after the restoration activities and compared with an unrestored local control site exhibiting similar pre-restoration characteristics&period; Appropriate technical methods will be used including bathymetric and hydrodynamic measurements and GIS&period; <&sol;p>&NewLine;<ul>&NewLine;<li>Chemical habitat quantification&colon; For the same locations&comma; chemical parameters including temperature&comma; dissolved oxygen&comma; nutrients&comma; and turbidity will be monitored using appropriate sensor technology&period;<&sol;li>&NewLine;<li>Ecological response to habitat modification&colon; Ecological response for macrophytes&comma; macroinvertebrates&comma; and fish will be monitored using a range of technique ranging from simple quadrat surveys and kick sampling to detailed information on fish abundance and diversity and movement using electric fishing and appropriate telemetry techniques&period;<&sol;li>&NewLine;<&sol;ul>&NewLine;<p> Working as part of an interdisciplinary team of biologists and engineers the successful applicant will conduct a field study to quantify the effectiveness of the restoration approaches adopted at the study site&period; They will develop skills in field study design&comma; kick sampling&comma; arc-boat surveys&comma; electric fishing&comma; fish telemetry&comma; statistical analysis &lpar;e&period;g R&rpar;&comma; GIS and technical writing&period; We are looking for a dedicated person with a background in environmental science related subjects &lpar;e&period;g&period; geography&comma; ecology&comma; biology&comma; environmental science&rpar; and an interest in interdisciplinary work in collaboration with engineers to solve challenges related to freshwater ecosystem restoration&period; The successful candidate will have a first class or high upper second class undergraduate degree in an appropriate discipline&period; A merit or distinction class mark at Masters level would also be advantageous&period; As the project will be field based the successful candidate would also be expected to have a full driving licence&period;<&sol;p>&NewLine;<p> <b>Entry Requirements<&sol;b><&sol;p>&NewLine;<p> A very good undergraduate degree &lpar;at least a UK 2&colon;1 honours degree&comma; or its international equivalent&rpar;&period;<&sol;p>&NewLine;<p> Closing Date&colon; 31 March 2024&period;<&sol;p>&NewLine;<p> Funding&colon; For UK students&comma; Tuition Fees and a stipend of £18&comma;622 tax-free per annum for up to 3&period;5 years&period;<&sol;p>&NewLine;<p> <b>How To Apply<&sol;b><&sol;p>&NewLine;<p> Apply online&colon; &period; Select programme type &lpar;Research&rpar;&comma; 2024&sol;25&comma; Faculty of Physical Sciences and Engineering&comma; next page select &OpenCurlyDoubleQuote;PhD Engineering &amp&semi; Environment &lpar;Full time&rpar;”&period; In Section 2 of the application form you should insert the name of the supervisor Paul Kemp<&sol;p>&NewLine;<p> Applications should include&colon;<&sol;p>&NewLine;<p> Curriculum Vitae<&sol;p>&NewLine;<p> Two reference letters<&sol;p>&NewLine;<p> Degree Transcripts&sol;Certificates to date<&sol;p>&NewLine;<p> For further information please contact&colon;<&sol;p>&NewLine;<p> £18&comma;622 tax-free per annum<br &sol;>&NewLine;<br &sol;><b>Expected salary<&sol;b>&colon; &pound&semi;18622 per year<br &sol;>&NewLine;<br &sol;><b>Location<&sol;b>&colon; Southampton<br &sol;>&NewLine;<br &sol;><b>Job date<&sol;b>&colon; Sat&comma; 04 Nov 2023 00&colon;23&colon;05 GMT<&sol;p>&NewLine;<p><a href&equals;"https&colon;&sol;&sol;jobviewtrack&period;com&sol;en-gb&sol;job-4b1b417d45204f3d5301440606151d0f0c50763a0c005e444f4c590d0000253252061b0919061145066a3a075f4f584359170707577673171a040f0a641143595e441a&sol;0cb8bf25a9ab93cf2ec4a2fb69d600e0&period;html&quest;affid&equals;d54dda8fa2db24c8445c282b3d357966"><b>Apply for the job now&excl;<&sol;b><&sol;a><&sol;p>&NewLine;

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