Image:CahnHilliard Animation.gif

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[edit] Summary

Gif Animation showing evolution under the Cahn-Hilliard equation with \gamma=0.5. Black and white represent -1,1 values. Initial conditions are equal amounts of randomly scattered -1 and 1 valued points. Array size is 200X200.

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File history

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Date/TimeDimensionsUserComment
current12:23, 12 June 2007267×200 (382 KB)Mcnaknik (Talk | contribs) (Author: Yonatan Oren Source: Own This is an animated GIF showing the evolution of a random initial data under the Cahn-Hilliard equation. The color scale is from -1 (Black) to 1 (White). \gamma=0.5 Produced using MATLAB, 12 June 2007)
12:18, 12 June 2007267×200 (382 KB)Mcnaknik (Talk | contribs) (Author: Yonatan Oren Source: Own This is an animated GIF showing the evolution of a random initial data under the Cahn-Hilliard equation. The color scale is from -1 (Black) to 1 (White). \gamma=0.5 Produced using MATLAB, 12 June 2007)
12:16, 12 June 2007267×200 (382 KB)Mcnaknik (Talk | contribs) (Author: Yonatan Oren Source: Own This is an animated GIF showing the evolution of a random initial data under the Cahn-Hilliard equation. The color scale is from -1 (Black) to 1 (White). \gamma=0.5 Produced using MATLAB, 12 June 2007)
11:57, 12 June 2007267×200 (382 KB)Mcnaknik (Talk | contribs) (Made by Yonatan Oren Using Matlab, on 12 june 2007. This GIF animation shows evolution under the Cahn-Hilliard equation with \gamma=0.5 The time scale is logarithmic, and the array size is 200x200. The initial conditions are equal amounts of points valued)
11:44, 12 June 20071,200×900 (2.82 MB)Mcnaknik (Talk | contribs) (Gif Animation showing evolution under the Cahn-Hilliard equation with \gamma=0.5. Black and white represent -1,1 values. Initial conditions are equal amounts of randomly scattered -1 and 1 valued points. Array size is 200X200. )

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