• The LotkaVolterra equations, also known as the LotkaVolterra predator–prey model, are a pair of first-order nonlinear differential equations, frequently...
    34 KB (4,494 words) - 20:09, 15 July 2025
  • Thumbnail for Random generalized Lotka–Volterra model
    The random generalized LotkaVolterra model (rGLV) is an ecological model and random set of coupled ordinary differential equations where the parameters...
    15 KB (2,056 words) - 00:58, 20 June 2025
  • The generalized LotkaVolterra equations are a set of equations which are more general than either the competitive or predator–prey examples of Lotka–Volterra...
    12 KB (1,821 words) - 15:43, 26 May 2025
  • generalised to the generalized LotkaVolterra equation to include trophic interactions. The form is similar to the LotkaVolterra equations for predation...
    21 KB (3,114 words) - 15:07, 27 August 2024
  • Thumbnail for Interspecific competition
    on populations have been formalized in a mathematical model called the Competitive LotkaVolterra equations, which creates a theoretical prediction of...
    25 KB (3,349 words) - 04:36, 2 June 2025
  • Competitive Lotka–Volterra equations Generalized LotkaVolterra equation Random generalized LotkaVolterra model Chase, Jonathan M.; Leibold, Mathew A...
    27 KB (4,412 words) - 04:45, 15 July 2025
  • Thumbnail for Keystone species
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    29 KB (3,149 words) - 06:35, 3 July 2025
  • Thumbnail for Species distribution modelling
    analysis (ENFA) Mahalanobis distance Isodar analysis Generalized linear model (GLM) Generalized additive model (GAM) Multivariate adaptive regression splines...
    19 KB (2,208 words) - 18:51, 28 May 2025
  • Thumbnail for Autotroph
    Post, David M (2002). "Using Stable Isotopes to Estimate Trophic Position: Models, Methods, and Assumptions". Ecology. 83 (3): 703–718. doi:10...
    20 KB (2,090 words) - 18:35, 3 July 2025
  • Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    7 KB (673 words) - 21:02, 2 August 2025
  • Thumbnail for Chemosynthesis
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    12 KB (1,197 words) - 18:18, 6 June 2025
  • Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    9 KB (822 words) - 00:57, 19 July 2025
  • Thumbnail for Tide pool
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    26 KB (2,791 words) - 20:49, 22 May 2025
  • Thumbnail for Competitive exclusion principle
    exclusion is predicted by mathematical and theoretical models such as the LotkaVolterra models of competition. However, for poorly understood reasons...
    23 KB (2,760 words) - 06:52, 29 May 2025
  • Thumbnail for Mutualism (biology)
    needed] One of the simplest frameworks for modeling species interactions is the LotkaVolterra equations. In this model, the changes in population densities...
    48 KB (5,601 words) - 02:35, 9 June 2025
  • more than 100,000 different decomposers in existence. Models of trophic levels also often model energy transfer between trophic levels. Primary consumers...
    17 KB (2,046 words) - 13:17, 26 July 2025
  • Theory of Natural Selection, and Alfred J. Lotka called the intrinsic rate of increase, t = time. The model can also be written in the form of a differential...
    6 KB (735 words) - 12:07, 4 April 2025
  • Thumbnail for Minimum viable population
    on random events. Thus, any calculation of a minimum viable population (MVP) will depend on the population projection model used. A set of random (stochastic)...
    9 KB (1,095 words) - 13:53, 4 June 2025
  • Thumbnail for Commensalism
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    28 KB (3,017 words) - 19:30, 17 July 2025
  • Thumbnail for Detritus
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    15 KB (2,034 words) - 20:47, 24 May 2025
  • Thumbnail for Phototroph
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    8 KB (740 words) - 10:49, 2 June 2025
  • Thumbnail for Ecosystem model
    alternative to the Lotka-Volterra predator-prey model and its common prey dependent generalizations is the ratio dependent or Arditi-Ginzburg model. The two are...
    23 KB (2,502 words) - 01:04, 12 July 2025
  • Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    7 KB (852 words) - 23:53, 15 June 2025
  • Thumbnail for Nocturnality
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    19 KB (2,287 words) - 15:35, 16 July 2025
  • Thumbnail for Decomposer
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    12 KB (1,388 words) - 16:20, 24 July 2025
  • this model, species persist via a balance between random local extinctions in patches and colonization of new patches. Tilman et al. used this model to...
    33 KB (3,907 words) - 14:18, 6 November 2024
  • Thumbnail for Detritivore
    "Biomass transformation webs provide a unified approach to consumer-resource modelling". Ecology Letters. 14 (2): 113–24. Bibcode:2011EcolL..14..113G. doi:10...
    10 KB (982 words) - 08:43, 19 June 2025
  • Thumbnail for Kleiber's law
    transport nutrients (i.e., blood volume) is a fixed fraction of body mass. The model assumes that the energy dissipated is minimized and that the terminal tubes...
    28 KB (3,321 words) - 16:49, 8 June 2025
  • Thumbnail for Foster's rule
    Predator–prey (LotkaVolterra) equations Recruitment Small population size Stability Resilience Resistance Random generalized LotkaVolterra model Species Biodiversity...
    6 KB (691 words) - 05:19, 29 March 2025
  • Thumbnail for Population ecology
    Bertalanffy are covered as special cases of the general formulation. The LotkaVolterra predator-prey equations are another famous example, as well as the alternative...
    31 KB (3,593 words) - 13:25, 22 July 2025