Three main tools to study graphs mathematically are to make use of the vertex degrees, distances and matrices. The classical graph energy was defined by means of the adjacency matrix in 1978 by Gutman and has a large number of applications in chemistry, physics and related areas. As a result of its importance and numerous applications, several modifications of the notion of energy have been introduced since then. Most of them are defined by means of graph matrices constructed by vertex degrees. In this paper we define another type of energy called q-distance energy by means of distances and matrices. We study some fundamental properties and also establish some upper and lower bounds for this new energy type
The energy of a graph began with German physicist, Erich H¨uckel’s 1931 paper, Quantenttheoretische ...
The topic of graph energy was first introduced by Ian Gutman in 1978 and arose as a problem in chemi...
The generalized distance matrix D α ( G ) of a connected graph G is defined as D α ( G ) = α T r ( G...
Abstract Let G be a graph with n vertices and m edges. The term energy of a graph G was introduced b...
AbstractThe distance energy of a graph G is a recently developed energy-type invariant, defined as t...
The generalized distance matrix of a connected graph $G$, denoted by $D_{\alpha}(G)$, is defined as ...
The complementary distance (CD) matrix of a graph $G$ is defined as $CD(G) = [c_{ij}]$, where $c_{ij...
Abstract The energy of a graph G is defined as the sum of the singular values of its adjacency matri...
<p>The reciprocal complementary distance (RCD) matrix of a graph $G$ is defined as $RCD(G) = [rc_{ij...
Recently we introduced the concept of minimum dominating energy[21]. Motivatedby this paper,we intro...
summary:For a simple connected graph $G$ of order $n$ having distance Laplacian eigenvalues $ \rho ^...
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
The distance energy of a graph is defined as the sum of absolute values of distance eigenvalues of t...
Let G be a simple undirected connected graph, then DαG=αTrG+1−αDG is called the α-distance matrix of...
The energy of a graph began with German physicist, Erich H¨uckel’s 1931 paper, Quantenttheoretische ...
The topic of graph energy was first introduced by Ian Gutman in 1978 and arose as a problem in chemi...
The generalized distance matrix D α ( G ) of a connected graph G is defined as D α ( G ) = α T r ( G...
Abstract Let G be a graph with n vertices and m edges. The term energy of a graph G was introduced b...
AbstractThe distance energy of a graph G is a recently developed energy-type invariant, defined as t...
The generalized distance matrix of a connected graph $G$, denoted by $D_{\alpha}(G)$, is defined as ...
The complementary distance (CD) matrix of a graph $G$ is defined as $CD(G) = [c_{ij}]$, where $c_{ij...
Abstract The energy of a graph G is defined as the sum of the singular values of its adjacency matri...
<p>The reciprocal complementary distance (RCD) matrix of a graph $G$ is defined as $RCD(G) = [rc_{ij...
Recently we introduced the concept of minimum dominating energy[21]. Motivatedby this paper,we intro...
summary:For a simple connected graph $G$ of order $n$ having distance Laplacian eigenvalues $ \rho ^...
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
The D-eigenvalues of a graph G are the eigenvalues of its distance matrix D, and the D-energy ED(G) ...
The distance energy of a graph is defined as the sum of absolute values of distance eigenvalues of t...
Let G be a simple undirected connected graph, then DαG=αTrG+1−αDG is called the α-distance matrix of...
The energy of a graph began with German physicist, Erich H¨uckel’s 1931 paper, Quantenttheoretische ...
The topic of graph energy was first introduced by Ian Gutman in 1978 and arose as a problem in chemi...
The generalized distance matrix D α ( G ) of a connected graph G is defined as D α ( G ) = α T r ( G...