![]() Chaotic behavior can be observed in many natural systems, such as weather and climate. The theory was summarized by Edward Lorenz as follows: Chaos: When the present determines the future, but the approximate present does not approximately determine the future. Remember that individuals vary from this norm, and that a given character may act more or less in accord with his or her alignment from day to day. Each alignment description below depicts a typical character of that alignment. This behavior is known as deterministic chaos, or simply chaos. Nine distinct alignments define all the possible combinations of the lawful-chaotic axis with the good-evil axis. In other words, the deterministic nature of these systems does not make them predictable. This happens even though these systems are deterministic, meaning that their future behavior is fully determined by their initial conditions, with no random elements involved. Small differences in initial conditions yield widely diverging outcomes for such dynamical systems, rendering long-term prediction impossible in general. Chaos theory studies the behavior of dynamical systems that are highly sensitive to initial conditions-a paradigm popularly referred to as the butterfly effect. Chaos theory Chaos theory is a field of study in mathematics, with applications in several disciplines including meteorology, sociology, physics, engineering, economics, biology, and philosophy.
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