Microscale and macroscale models

Microscale and related macroscale models of coexistence in Phalaris arundinacea, a globally distributed grass. Each color represents the spatial extent of a distinct genotype in a microscale model using stochastic cellular automata. Each curve on the graph represents the population level of a corresponding genotype in a macroscale differential equation model.[1]

Microscale models form a broad class of computational models that simulate fine-scale details, in contrast with macroscale models, which amalgamate details into select categories.[2][3] Microscale and macroscale models can be used together to understand different aspects of the same problem.

  1. ^ Cite error: The named reference Nelson 2014 was invoked but never defined (see the help page).
  2. ^ Cite error: The named reference Gustafsson 2010 was invoked but never defined (see the help page).
  3. ^ Cite error: The named reference Gustafsson 2007 was invoked but never defined (see the help page).

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