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Original Articles

Application of a Hypolimnetic Oxygen Profile Model to Lakes in Ontario

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Pages 32-43 | Published online: 23 Jan 2009

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A.M. Paterson, P.J. Dillon, N.J. Hutchinson, M.N. Futter, B.J. Clark, R.B. Mills, R.A. Reid & W.A. Scheider. (2006) A Review of the Components, Coefficients and Technical Assumptions of Ontario's Lakeshore Capacity Model. Lake and Reservoir Management 22:1, pages 7-18.
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Articles from other publishers (6)

Xing Fang, Peter C. Jacobson, Liping Jiang, William R. Herb, Heinz G. Stefan, Donald L. Pereira & Lucinda B. Johnson. 2022. Handbook of Climate Change Mitigation and Adaptation. Handbook of Climate Change Mitigation and Adaptation 77 145 .
Jeremy Deeds, Aria Amirbahman, Stephen A. Norton, Douglas G. Suitor & Linda C. Bacon. (2021) Predicting anoxia in low‐nutrient temperate lakes. Ecological Applications 31:6.
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Xing Fang, Peter C. Jacobson, Liping Jiang, William R. Herb, Heinz G. Stefan, Donald L. Pereira & Lucinda B. Johnson. 2020. Handbook of Climate Change Mitigation and Adaptation. Handbook of Climate Change Mitigation and Adaptation 1 70 .
Peter C. JacobsonHeinz G. StefanDonald L. Pereira. (2010) Coldwater fish oxythermal habitat in Minnesota lakes: influence of total phosphorus, July air temperature, and relative depth. Canadian Journal of Fisheries and Aquatic Sciences 67:12, pages 2002-2013.
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David O Evans. (2007) Effects of hypoxia on scope-for-activity and power capacity of lake trout ( Salvelinus namaycush ) . Canadian Journal of Fisheries and Aquatic Sciences 64:2, pages 345-361.
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P J Dillon, B J Clark, L A Molot & H E Evans. (2003) Predicting the location of optimal habitat boundaries for lake trout ( Salvelinus namaycush ) in Canadian Shield lakes . Canadian Journal of Fisheries and Aquatic Sciences 60:8, pages 959-970.
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