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For the purpose of this question, consider a vertex rearranging function for a graph G = ( V , E ) is a function

For the purpose of this question, consider a "vertex rearranging function" for a graph G =(V, E) is a function \phi : V -> V that rearranges the vertices of G while preserving the graph's structure. This means that if there is an edge between vertices u and v in G, then there must also be an edge between \phi (u) and \phi (v) in G, and if there is no edge between u and v, then there is none between \phi (u) and \phi (v). In other words, \phi is a bijective map from V to V such that (u,v) in E implies (\phi (u),\phi (v)) in E and (u,v) E implies (\phi (u),\phi (v)) E.For the purpose of this question, consider a "vertex rearranging function" for a graph G =(V, E) is a function \phi : V -> V that rearranges the vertices of G while preserving the graph's structure. This means that if there is an edge between vertices u and v in G, then there must also be an edge between \phi (u) and \phi (v) in G, and if there is no edge between u and v, then there is none between \phi (u) and \phi (v). In other words, \phi is a bijective map from V to V such that (u,v) in E implies (\phi (u),\phi (v)) in E and (u,v) E implies (\phi (u),\phi (v)) E.

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