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Stability and complexity in model ecosystems.
Robert M. May
- Vol. 6, pp 1-235
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The article was published on 1973-01-01 and is currently open access. It has received 5524 citations till now.read more
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The Economics of Non-Convex Ecosystems:
Partha Dasgupta,Karl-Göran Mäler +1 more
TL;DR: The economics of non-convex Ecosystems: Introduction P. Dasgupta, K.-G. Maler, A. Xepapadeas, A.-S. Crepin this article.
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Patterns of plant invasions: a case example in native species hotspots and rare habitats
Thomas J. Stohlgren,Thomas J. Stohlgren,Yuka Otsuki,Cynthia A. Villa,Michelle Lee,Jayne Belnap +5 more
TL;DR: The vulnerability of various habitats to invasion by exotic plant species in a 100,000 ha area in the southeast corner of Grand Staircase-Escalante National Monument, Utah is evaluated.
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Mathematical models and understanding in ecology
TL;DR: This paper recommends choosing “patterns” actually existing in ecological systems, rather than questions of a general nature, as a point of departure for conceptual models, so that the advantages of conceptual models can be utilized without having to relinquish the testability of the hypotheses proposed with the aid of the models.
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Competition theory, evolution, and the concept of an ecological niche
TL;DR: Some of the main tenets of competition theory are examined in light of the theory of evolution and the concept of an ecological niche to avoid violating the principle of competitive exclusion and the related assumption that communities exist at competitive equilibrium.
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Molecular and morphological characterization of cyanobacterial diversity in the stromatolites of Highborne Cay, Bahamas.
Jamie S. Foster,Stefan J. Green,Steven R. Ahrendt,Steven R. Ahrendt,Stjepko Golubic,R. Pamela Reid,Kevin L Hetherington,Lee Bebout +7 more
TL;DR: The results of this study reveal that the genetic diversity of the cyanobacterial populations within the Highborne Cay stromatolites is far greater than previous estimates, indicating that the mechanisms of strom atolite formation and accretion may be more complex than had been previously assumed.