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Results 1-10 of 29 (Search time: 0.004 seconds).
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PreviewIssue DateTitleAuthor(s)
2005Accessing limnological change and variability using fossil diatom assemblages, south-east AustraliaGell, P.; Tibby, J.; Fluin, J.; Leahy, P.; Reid, M.; Adamson, K.; Bulpin, S.; MacGregor, A.; Wallbrink, P.; Hancock, G.; Walsh, B.
2019Spatiotemporal landscape genetics: investigating ecology and evolution through space and timeFenderson, L.E.; Kovach, A.I.; Llamas, B.
2020Assessment of smoke contamination in grapevine berries and taint in wines due to bushfires using a low-cost E-nose and an artificial intelligence approachFuentes, S.; Summerson, V.; Gonzalez Viejo, C.; Tongson, E.; Lipovetzky, N.; Wilkinson, K.L.; Szeto, C.; Unnithan, R.R.
2019Future ocean climate homogenizes communities across habitats through diversity loss and rise of generalist speciesBrustolin, M.C.; Nagelkerken, I.; Ferreira, C.M.; Goldenberg, S.U.; Ullah, M.D.H.; Fonseca, G.
2019A triple trophic boost: How carbon emissions indirectly change a marine food chainDoubleday, Z.; Nagelkerken, I.; Coutts, M.; Goldenberg, S.; Connell, S.
2005The core of the global warming problem: energyHu, E.
2018How complex should models be? Comparing correlative and mechanistic range dynamics modelsFordham, D.; Bertelsmeier, C.; Brook, B.; Early, R.; Neto, D.; Brown, S.; Ollier, S.; Araújo, M.
2011Non-stationarity in rainfall and temperature in the Murray Darling BasinKamruzzaman, M.; Beecham, S.; Metcalfe, A.
2013Ocean acidification and rising temperatures may increase biofilm primary productivity but decrease grazer consumptionRussell, B.; Connell, S.; Findlay, H.; Tait, K.; Widdicombe, S.; Mieszkowska, N.
2012Radiocarbon bomb spike reveals biological effects of Antarctic climate changeClarke, L.; Robinson, S.; Hua, Q.; Ayre, D.; Fink, D.