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  2. Lotka–Volterra equations - Wikipedia

    en.wikipedia.org/wiki/Lotka–Volterra_equations

    The Lotka–Volterra system of equations is an example of a Kolmogorov population model (not to be confused with the better known Kolmogorov equations), [2] [3] [4] which is a more general framework that can model the dynamics of ecological systems with predatorprey interactions, competition, disease, and mutualism.

  3. Optimal foraging theory - Wikipedia

    en.wikipedia.org/wiki/Optimal_foraging_theory

    One classical version of the optimal foraging theory is the optimal diet model, which is also known as the prey choice model or the contingency model. In this model, the predator encounters different prey items and decides whether to eat what it has or search for a more profitable prey item. The model predicts that foragers should ignore low ...

  4. Paradox of enrichment - Wikipedia

    en.wikipedia.org/wiki/Paradox_of_enrichment

    He described an effect in six predatorprey models where increasing the food available to the prey caused the predator's population to destabilize. A common example is that if the food supply of a prey such as a rabbit is overabundant, its population will grow unbounded and cause the predator population (such as a lynx) to grow unsustainably ...

  5. Foraging - Wikipedia

    en.wikipedia.org/wiki/Foraging

    This model is also known as the prey model or the attack model. In this model the predator encounters different prey items and decides whether to spend time handling or eating the prey. It predicts that foragers should ignore low profitability prey items when more profitable items are present and abundant. [27] The objective of this model is to ...

  6. Aggressive mimicry - Wikipedia

    en.wikipedia.org/wiki/Aggressive_mimicry

    The distinction between aggressive mimicry and predator camouflage depends on the signal given to the prey, not easily determined. Aggressive mimicry is a form of mimicry in which predators, parasites, or parasitoids share similar signals, using a harmless model, allowing them to avoid being correctly identified by their prey or host.

  7. Huffaker's mite experiment - Wikipedia

    en.wikipedia.org/wiki/Huffaker's_mite_experiment

    The solution to these equations in the simple one-predator species, one-prey species model is a stable linked oscillation of population levels for both predator and prey. However, when time lags between respective population growths are modeled, these oscillations will tend to amplify, eventually leading to extinction of both species.

  8. From Predator To Prey: A Hunting Osprey Is Attacked By ... - AOL

    www.aol.com/lifestyle/predator-prey-hunting...

    A fleeting moment captured on the water, where skill, strategy, and a hint of desperation intertwine in a captivating aerial ballet. An osprey’s daring dive and a bald eagle’s relentless ...

  9. Numerical response - Wikipedia

    en.wikipedia.org/wiki/Numerical_response

    a = conversion efficiency: the fraction of prey energy assimilated by the predator and turned into new predators P = predator density V = prey density m = predator mortality c = capture rate Demographic response consists of a change in dP/dt due to a change in V and/or m. For example, if V increases, then predator growth rate (dP/dt) will increase.