ROOT SQUARE MEAN LABELING OF ARROW GRAPHS WITH ENCODING AND DECODING
A graph G with p vertices and q edges is called a Root Square mean labeling if it is possible to label the vertices x [member of] v with distinct labels p(x) from 1, 2, ***, q + 1 in such a way that each edge e = ab is labeled with [Please download the PDF to view the mathematical expression] then t...
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| Published in: | TWMS journal of applied and engineering mathematics Vol. 15; no. 6; p. 1496 |
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| Main Authors: | , |
| Format: | Journal Article |
| Language: | English |
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Turkic World Mathematical Society
01.06.2025
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| ISSN: | 2146-1147 |
| Online Access: | Get full text |
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| Abstract | A graph G with p vertices and q edges is called a Root Square mean labeling if it is possible to label the vertices x [member of] v with distinct labels p(x) from 1, 2, ***, q + 1 in such a way that each edge e = ab is labeled with [Please download the PDF to view the mathematical expression] then the edge labels are distinct. In this case p is called Root Square mean(RSM) labeling of G. In this paper we prove Arrow graphs [A.sup.2.sub.n],[A.sup.2.sub.n],[A.sup.2.sub.n] admits Root Square mean (RSM) labeling.In today's world, digital data transfer is becoming more and more common in all industries. Data security plays a critical role in the delivery and storage of data. Labeling is an essential component of the cryptosystem. A new approach in the encoding and decoding process on the Root Square Mean Labeling is applied in this paper through an algorithm for encoding and decoding of secured message. Keywords: Root Square mean (RSM) labeling, Arrow graphs AMS Subject Classification:05078 |
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| AbstractList | A graph G with p vertices and q edges is called a Root Square mean labeling if it is possible to label the vertices x [member of] v with distinct labels p(x) from 1, 2, ***, q + 1 in such a way that each edge e = ab is labeled with [Please download the PDF to view the mathematical expression] then the edge labels are distinct. In this case p is called Root Square mean(RSM) labeling of G. In this paper we prove Arrow graphs [A.sup.2.sub.n],[A.sup.2.sub.n],[A.sup.2.sub.n] admits Root Square mean (RSM) labeling.In today's world, digital data transfer is becoming more and more common in all industries. Data security plays a critical role in the delivery and storage of data. Labeling is an essential component of the cryptosystem. A new approach in the encoding and decoding process on the Root Square Mean Labeling is applied in this paper through an algorithm for encoding and decoding of secured message. A graph G with p vertices and q edges is called a Root Square mean labeling if it is possible to label the vertices x [member of] v with distinct labels p(x) from 1, 2, ***, q + 1 in such a way that each edge e = ab is labeled with [Please download the PDF to view the mathematical expression] then the edge labels are distinct. In this case p is called Root Square mean(RSM) labeling of G. In this paper we prove Arrow graphs [A.sup.2.sub.n],[A.sup.2.sub.n],[A.sup.2.sub.n] admits Root Square mean (RSM) labeling.In today's world, digital data transfer is becoming more and more common in all industries. Data security plays a critical role in the delivery and storage of data. Labeling is an essential component of the cryptosystem. A new approach in the encoding and decoding process on the Root Square Mean Labeling is applied in this paper through an algorithm for encoding and decoding of secured message. Keywords: Root Square mean (RSM) labeling, Arrow graphs AMS Subject Classification:05078 |
| Audience | Academic |
| Author | Palani, G Christy, T |
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| Snippet | A graph G with p vertices and q edges is called a Root Square mean labeling if it is possible to label the vertices x [member of] v with distinct labels p(x)... |
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| Title | ROOT SQUARE MEAN LABELING OF ARROW GRAPHS WITH ENCODING AND DECODING |
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