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Environmental dynamics shape human learning: change points versus random walks
Foucault C, Weber LA, Hunt L.
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Discrete versus continuous-time random walks
Journal of Statistical Physics, 1988zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Maes, Dominique +1 more
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Multienergetic continuous time random walk
Zeitschrift f�r Physik B Condensed Matter, 1984We have extended the CTRW theory of Montroll and Weiss including the effect of extra variables, like the energy. This MCTRW scheme can be written in a simple matrix notation, that simplifies its solution. As an example of their usefulness we have studied a two-energy-group neutron diffusion problem.
Manuel O. C�ceres, Horacio S. Wio
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2021
The classical diffusion equation is widely used to describe transport phenomena observed in nature, where u denotes the concentration of a substance, \(\kappa \) is the diffusion coefficient, and (1.1) describes how the concentration evolves over time.
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The classical diffusion equation is widely used to describe transport phenomena observed in nature, where u denotes the concentration of a substance, \(\kappa \) is the diffusion coefficient, and (1.1) describes how the concentration evolves over time.
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