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- W2313146887 abstract "A chlorine--iodine--malonic-acid Turing system involving a local concentration-dependent diffusivity (LCDD) has fundamental significance for physical, chemical, and biological systems with inhomogeneous medium. We investigated such a system by both numerical computation and mathematical analysis. Our research reveals that a variable local diffusivity has an evident effect on regulating the Turing patterns for different modes. An intrinsic square-root law is given by ensuremath{lambda} ensuremath{sim} (${c}_{1}+{c}_{2}k$)${}^{1/2}$, which relates the pattern wavelength (ensuremath{lambda}) with the LCDD coefficient ($k$). This law indicates that the system pattern has the properties of an equivalent Turing pattern. The current study confirms that, for the Turing system with LCDD, the system pattern form retains the basic characteristics of a traditional Turing pattern in a wide range of LCDD coefficients." @default.
- W2313146887 created "2016-06-24" @default.
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- W2313146887 date "2012-06-28" @default.
- W2313146887 modified "2023-10-16" @default.
- W2313146887 title "Regulation of Turing patterns in a spatially extended chlorine–iodine–malonic-acid system with a local concentration-dependent diffusivity" @default.
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- W2313146887 doi "https://doi.org/10.1103/physreve.85.066132" @default.
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