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arxiv: 1103.3588 · v1 · pith:2RC5KJSNnew · submitted 2011-03-18 · 🧮 math.CO

Characterization of n-Vertex Graphs with Metric Dimension n-3

classification 🧮 math.CO
keywords metricdimensionverticescalleddistinctgraphsorderedresolving
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For an ordered set $W=\{w_1,w_2,...,w_k\}$ of vertices and a vertex $v$ in a connected graph $G$, the ordered $k$-vector $r(v|W):=(d(v,w_1),d(v,w_2),...,d(v,w_k))$ is called the (metric) representation of $v$ with respect to $W$, where $d(x,y)$ is the distance between the vertices $x$ and $y$. The set $W$ is called a resolving set for $G$ if distinct vertices of $G$ have distinct representations with respect to $W$. The minimum cardinality of a resolving set for $G$ is its metric dimension. In this paper, we characterize all graphs of order $n$ with metric dimension $n-3$.

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