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This simulation applies the chipping model to a bipartite lattice. By doing so the probabilities of chipping and hopping become more complex, leading to three phases: fluid, single-condensate, and double-condensate. By tracking the average mass squared on either sublattice, changes in the organization of mass can be observed.

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z0br0wn/chipping_model_bipartite_lattice

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chipping_model_bipartite_lattice

This simulation applies the chipping model to a bipartite lattice. By doing so the probabilities of chipping and hopping become more complex, leading to three phases: fluid, single-condensate, and double-condensate. By tracking the average mass squared on either sublattice, changes in the organization of mass can be observed.

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This simulation applies the chipping model to a bipartite lattice. By doing so the probabilities of chipping and hopping become more complex, leading to three phases: fluid, single-condensate, and double-condensate. By tracking the average mass squared on either sublattice, changes in the organization of mass can be observed.

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