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  2. List of feeding behaviours - Wikipedia

    en.wikipedia.org/wiki/List_of_feeding_behaviours

    Circular dendrogram of feeding behaviours A mosquito drinking blood (hematophagy) from a human (note the droplet of plasma being expelled as a waste) A rosy boa eating a mouse whole A red kangaroo eating grass The robberfly is an insectivore, shown here having grabbed a leaf beetle An American robin eating a worm Hummingbirds primarily drink nectar A krill filter feeding A Myrmicaria brunnea ...

  3. Category:Animals by adaptation - Wikipedia

    en.wikipedia.org/wiki/Category:Animals_by_adaptation

    Download as PDF; Printable version; ... Animals with only two limbs (2 C, 2 P) V. Venomous animals (6 C, 7 P) Pages in category "Animals by adaptation"

  4. Allen's rule - Wikipedia

    en.wikipedia.org/wiki/Allen's_rule

    Allen's rule - Hare and its ears on the Earth [1]. Allen's rule is an ecogeographical rule formulated by Joel Asaph Allen in 1877, [2] [3] broadly stating that animals adapted to cold climates have shorter and thicker limbs and bodily appendages than animals adapted to warm climates.

  5. Adaptation - Wikipedia

    en.wikipedia.org/wiki/Adaptation

    Many aspects of an animal or plant can be correctly called adaptations, though there are always some features whose function remains in doubt. By using the term adaptation for the evolutionary process, and adaptive trait for the bodily part or function (the product), one may distinguish the two different senses of the word. [14] [15] [16] [17]

  6. Adaptive behavior (ecology) - Wikipedia

    en.wikipedia.org/wiki/Adaptive_behavior_(ecology)

    Organisms begin as naive individuals and learning allows them to obtain the knowledge they need to adapt and survive. A learned adaptive behavior must have a psychological, as well as a biological, component; without the integration of these two disciplines, behavioral adaptation cannot occur.

  7. Organisms at high altitude - Wikipedia

    en.wikipedia.org/wiki/Organisms_at_high_altitude

    An Alpine chough in flight at 3,900 m (12,800 ft). Organisms can live at high altitude, either on land, in water, or while flying.Decreased oxygen availability and decreased temperature make life at such altitudes challenging, though many species have been successfully adapted via considerable physiological changes.