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Scale-model experiments having different line fire configurations were designed and performed to reconstruct the above-mentioned Brazil fire whirl.
Systematic comparison has been carried out between the experimental data with different tunnel fire configurations and the prediction by the theory presented in a previous paper by Zhang et al. The objective of such comparison is to validate the mechanism explained by the theory and its conclusions.
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Note that even if the weak bound is maintained, it can be shown that there exist infeasible firing configurations.
A stronger bound results from empirical studies which have shown that infeasible firing configurations do not exist, if the maximum phase advance.
Looking at the firing configurations developed by the units in our simulations, one can notice a similarity with the theoretical solutions maximizing the packing density of spheres described above.
The initial firing configuration then is with.
Let be the initial firing configuration with where and.
The infeasible firing configuration with and is a unique fixpoint and has a phase difference of.
In other words, the nodes will infinitely often enter the initial firing configuration.
In a fully connected network comprising of perfect clocks, if the coupling factor, then the nodes will never enter an infeasible firing configuration.
Definition 3.8. is called to be an infeasible firing configuration, if there exists a positive integer such that and the network is not synchronized.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com