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Predator-prey models 

Nathan Kutz
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WEB: faculty.washington.edu/kutz/a...
This lecture is part of a series on advanced differential equations: asymptotics & perturbations. This lecture introduces a general framework for constructing the qualitative behavior of 2x2 systems of nonlinear differential equations. Specific attention is given to the classic predator-prey models for illustrating the dynamics.

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21 июл 2024

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Комментарии : 11   
@datchentai3047
@datchentai3047 2 месяца назад
Excellent! Thank you!
@subhrohalder4104
@subhrohalder4104 Месяц назад
Great Explanation
@AJ-fo3hp
@AJ-fo3hp Год назад
19.07 completely education video Thank you Nathan Kutz
@jimlbeaver
@jimlbeaver 3 года назад
Great explanation, very comprehensible. Thanks for taking the time to explain the intuition. That really helped.
@HassanKhan-cs8ho
@HassanKhan-cs8ho 3 года назад
Well said prof has done awesome work in presenting the intuition
@HassanKhan-cs8ho
@HassanKhan-cs8ho 3 года назад
Phenomenal Thank you Prof!!!
@manullangjihan2100
@manullangjihan2100 3 года назад
Thank you prof for this incredible explanation.
@audacityofimagineering7209
@audacityofimagineering7209 2 года назад
Thank you for the excellent explanation sir!
@jayalalkj1576
@jayalalkj1576 3 года назад
Wonderful explanation Nathan. How we can bring these formulas as function into R/Python programing language? I would like to learn that part as well. Thanks Again.
@sunghyunkim3881
@sunghyunkim3881 3 года назад
Typo from 14:10. The right one is dy/dt = -c*y + \alpha*x*y
@muttleycrew
@muttleycrew Год назад
Yeah that was really odd. The idea that somehow the number of wolves depends negatively on the number of rabbits suggested that the rabbits were eating the wolves!
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