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- Q15994781 subject Q8234698.
- Q15994781 subject Q8298270.
- Q15994781 subject Q8498916.
- Q15994781 abstract "In graph theory, the tensor product G × H of graphs G and H is a graph such that the vertex set of G × H is the Cartesian product V(G) × V(H); and any two vertices (u,u') and (v,v') are adjacent in G × H if and only if u' is adjacent with v' and u is adjacent with v.The tensor product is also called the direct product, categorical product, cardinal product, relational product, Kronecker product, weak direct product, or conjunction. As an operation on binary relations, the tensor product was introduced by Alfred North Whitehead and Bertrand Russell in their Principia Mathematica (1912). It is also equivalent to the Kronecker product of the adjacency matrices of the graphs.The notation G × H is also sometimes used to represent another construction known as the Cartesian product of graphs, but more commonly refers to the tensor product. The cross symbol shows visually the two edges resulting from the tensor product of two edges.".
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- Q15994781 comment "In graph theory, the tensor product G × H of graphs G and H is a graph such that the vertex set of G × H is the Cartesian product V(G) × V(H); and any two vertices (u,u') and (v,v') are adjacent in G × H if and only if u' is adjacent with v' and u is adjacent with v.The tensor product is also called the direct product, categorical product, cardinal product, relational product, Kronecker product, weak direct product, or conjunction.".
- Q15994781 label "Tensor product of graphs".
- Q15994781 depiction Graph-tensor-product.svg.