AbstractThe D-eigenvalues μ1,μ2,…,μn of a graph G of order n are the eigenvalues of its distance matrix D and form the distance spectrum or D-spectrum of G denoted by SpecD(G). Let G1 and G2 be two regular graphs. The Indu–Bala product of G1 and G2 is denoted by G1▾G2 and is obtained from two disjoint copies of the join G1∨G2 of G1 and G2 by joining the corresponding vertices in the two copies of G2. In this paper we obtain the distance spectrum of G1▾G2 in terms of the adjacency spectra of G1 and G2. We use this result to obtain a new class of distance equienergetic graphs of diameter 3. We also prove that the class of graphs Kn¯▾Kn+1¯ has integral distance spectrum
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
AbstractLet D(G)=(di,j)n×n denote the distance matrix of a connected graph G with order n, where dij...
AbstractThe D-eigenvalues {μ1,μ2,…,…,μp} of a graph G are the eigenvalues of its distance matrix D a...
The D-eigenvalues μ1,μ2,…,μn of a graph G of order n are the eigenvalues of its distance matrix D an...
AbstractThe D-eigenvalues μ1,μ2,…,μn of a graph G of order n are the eigenvalues of its distance mat...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
AbstractLet G be a connected graph with a distance matrix D. The D-eigenvalues {μ1,μ2,…,…,μp} of G a...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
AbstractThe D-eigenvalues {μ1,μ2,…,…,μp} of a graph G are the eigenvalues of its distance matrix D a...
The distance matrix of a simple connected graph $G$ is $D(G)=(d_{ij})$, where $d_{ij}$ is the distan...
The D-eigenvalues of a connected graph G are the eigenvalues of its distance matrix D, and form the ...
This paper Deals with the complete bipartite graph K(r, n-r) and the cycle Cn. The matrix of concern...
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
AbstractLet D(G)=(di,j)n×n denote the distance matrix of a connected graph G with order n, where dij...
AbstractThe D-eigenvalues {μ1,μ2,…,…,μp} of a graph G are the eigenvalues of its distance matrix D a...
The D-eigenvalues μ1,μ2,…,μn of a graph G of order n are the eigenvalues of its distance matrix D an...
AbstractThe D-eigenvalues μ1,μ2,…,μn of a graph G of order n are the eigenvalues of its distance mat...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
AbstractLet G be a connected graph with a distance matrix D. The D-eigenvalues {μ1,μ2,…,…,μp} of G a...
The distance matrix of a graph G is the matrix containing the pairwise distances between vertices. T...
AbstractThe D-eigenvalues {μ1,μ2,…,…,μp} of a graph G are the eigenvalues of its distance matrix D a...
The distance matrix of a simple connected graph $G$ is $D(G)=(d_{ij})$, where $d_{ij}$ is the distan...
The D-eigenvalues of a connected graph G are the eigenvalues of its distance matrix D, and form the ...
This paper Deals with the complete bipartite graph K(r, n-r) and the cycle Cn. The matrix of concern...
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
AbstractLet D(G)=(di,j)n×n denote the distance matrix of a connected graph G with order n, where dij...
AbstractThe D-eigenvalues {μ1,μ2,…,…,μp} of a graph G are the eigenvalues of its distance matrix D a...