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- W1636703370 abstract "Historically, both experimental and theoretical ecologists have sought to emulate the development of early theory in the physical sciences: the ideal that a few simple equations may accurately predict the complex movement of celestial bodies or interactions among molecules in mixing gasses. In the environmental sciences, such simple clockworks have rarely been found, and rather than predictable stable or recurring patterns, erratic patterns abound. The discovery in the late 1970s through mid-1980s of certain ecological models—such as the Ricker or discrete logistic maps—suggesting erratic fluctuations through dynamic chaos caused what cautionaries may characterize as ecology’s period of “rational exuberance” with respect to hoping that a small set of mathematical equations may explain the erratic dynamics of real-world ecological communities. Upon much discussion, the field as a whole grew skeptical of this idea. In PNAS, Beninca et al. (1) present evidence that the erratic fluctuations in an intertidal rock-pool ecosystem are caused by competitive interactions that cause chaotic dynamics. This important study sheds new light on a number of threads of discussion in contemporary ecology related to variability and predictability in ecology." @default.
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- W1636703370 date "2015-05-11" @default.
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- W1636703370 title "Nonlinearity and chaos in ecological dynamics revisited" @default.
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- W1636703370 doi "https://doi.org/10.1073/pnas.1507708112" @default.
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