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Results 11-20 of 29 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2014Combining population genetics, species distribution modelling and field assessments to understand a species vulnerability to climate changeMcCallum, K.; Guerin, G.; Breed, M.; Lowe, A.
2011Clarifying climate change adaptation responses for scattered trees in modified landscapesBreed, M.; Ottewell, K.; Gardner, M.; Lowe, A.
2013Disrupting the effects of synergies between stressors: improved water quality dampens the effects of future CO₂ on a marine habitatFalkenberg, L.; Connell, S.; Russell, B.; Frid, C.
2010The direct effects of increasing CO₂ and temperature on non-calcifying organisms: increasing the potential for phase shifts in kelp forestsConnell, S.; Russell, B.
2012Managing the long-term persistence of a rare cockatoo under climate changeHarris, J.; Fordham, D.; Mooney, P.; Pedler, L.; Araujo, M.; Paton, D.; Stead, M.; Watts, M.; Akcakaya, H.; Brook, B.
2010Age and origin of alluvial sediments within and flanking the Mt Lofty Ranges, southern South Australia: a late quaternary archive of climate and environmental changeBourman, R.; Prescott, J.; Banerjee, D.; Alley, N.; Buckman, S.
2012Little left to lose: deforestation and forest degradation in Australia since European colonizationBradshaw, C.
2012Predicting ecosystem shifts requires new approaches that integrate the effects of climate change across entire systemsRussell, B.; Harley, C.; Wernberg, T.; Mieszkowska, N.; Widdicombe, S.; Hall-Spencer, J.; Connell, S.
2011Forecasted CO₂ modifies the influence of light in shaping subtidal habitatRussell, B.; Passarelli, C.; Connell, S.
2013Multi-species distribution modelling highlights the Adelaide Geosyncline, South Australia, as an important continental-scale arid-zone refugiumGuerin, G.; Lowe, A.