Results 281 to 290 of about 15,535 (305)
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Numerical Experiments and Visualization of Chaos

2023
Felipe Contreras-Alcala   +1 more
openaire   +1 more source

Order and chaos in “collisionless” numerical simulations

2006
The collisionless limit of the N-body problem is often justified by the long 2-body relaxation time. Several other possibilities exist by which stellar systems can evolve and relax faster than previously expected. In particular observations and numerical experiments suggest that fractal distribution functions can spontaneously occur.
openaire   +1 more source

Numerical study of models of quantum chaos

2006
This work is dedicated to the study of models of quantum chaos. It is clear that one cannot define chaos in quantum mechanics the same way it is defined in classical dynamics. The classical definition of chaos relies upon the ideas of sensitive dependence on initial conditions and exponentially diverging trajectories.
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Numeric Simulations. Cycles and Quasi-Chaos

1994
On a conceptual level the economic system is a very important sphere existing within the wider framework of a given country’s social system. Although obvious, it should never be forgotten that the economic system, like all other aspects of human sciences, is inextricably linked to all other areas of human endeavour.
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CHAOS IN NUMERICS

1996
B. M. HERBST   +2 more
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Influence of numerical noises on computer-generated simulation of spatio-temporal chaos

Chaos, Solitons and Fractals, 2020
Shijie Qin, Shijun Liao
exaly  

Wiener Chaos expansions and numerical solutions of randomly forced equations of fluid mechanics

Journal of Computational Physics, 2006
Thomas Y Hou, Boris Rozovskii
exaly  

A numerical study of baroclinic chaos

Deep Sea Research Part B. Oceanographic Literature Review, 1987
openaire   +1 more source

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