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1

Cho, Sang Yeop. "Reliability Analysis of Systems Using Single Valued Neutrosophic Multisets." Journal of Knowledge Information Technology and Systems 12, no. 2 (2017): 245–52. http://dx.doi.org/10.34163/jkits.2017.12.2.004.

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2

Fan, Changxing, En Fan, and Jun Ye. "The Cosine Measure of Single-Valued Neutrosophic Multisets for Multiple Attribute Decision-Making." Symmetry 10, no. 5 (2018): 154. http://dx.doi.org/10.3390/sym10050154.

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3

Zhang, Chao, Deyu Li, Said Broumi, and Arun Sangaiah. "Medical Diagnosis Based on Single-Valued Neutrosophic Probabilistic Rough Multisets over Two Universes." Symmetry 10, no. 6 (2018): 213. http://dx.doi.org/10.3390/sym10060213.

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4

Ye, Jun. "Correlation Coefficient between Dynamic Single Valued Neutrosophic Multisets and Its Multiple Attribute Decision-Making Method." Information 8, no. 2 (2017): 41. http://dx.doi.org/10.3390/info8020041.

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5

Hu, Qingqing, and Xiaohong Zhang. "New Similarity Measures of Single-Valued Neutrosophic Multisets Based on the Decomposition Theorem and Its Application in Medical Diagnosis." Symmetry 10, no. 10 (2018): 466. http://dx.doi.org/10.3390/sym10100466.

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Cut sets, decomposition theorem and representation theorem have a great influence on the realization of the transformation of fuzzy sets and classical sets, and the single-valued neutrosophic multisets (SVNMSs) as the generalization of fuzzy sets, which cut sets, decomposition theorem and representation theorem have the similar effects, so they need to be studied in depth. In this paper, the decomposition theorem, representation theorem and the application of a new similarity measures of SVNMSs are studied by using theoretical analysis and calculations. The following are the main results: (1)
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6

Alsharari, Fahad. "Single-Valued Neutrosophic Roughness via Ideals." International Journal of Analysis and Applications 22 (February 27, 2024): 38. http://dx.doi.org/10.28924/2291-8639-22-2024-38.

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In this paper, we connect the idea of single-valued neutrosophic ideal to the concept of single-valued neutrosophic approximation space to define the concept of single-valued neutrosophic ideal approximation spaces. We present the single-valued neutrosophic ideal approximation interior operator intψΦ and the single-valued neutrosophic ideal approximation closure operator clψΦ, and we present the single-valued neutrosophic ideal approximation preinterior operator pintψΦ and the single-valued neutrosophic ideal approximation pre-closure operator pclψΦ about this concerning single-valued neutroso
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7

Saber, Yaser, Mohamed Abusalih, Esam Bader, Tawfik Elmasry, Abdelaziz Babiker, and Florentin Smarandache. "Single-Valued Neutrosophic Ideal Approximation Spaces." International Journal of Analysis and Applications 22 (February 5, 2024): 26. http://dx.doi.org/10.28924/2291-8639-22-2024-26.

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In this paper, we defined the basic idea of the single-valued neutrosophic upper (αn)δ, single-valued neutrosophic lower (αn)δ and single-valued neutrosophic boundary sets (αn)B of a rough single-valued neutrosophic set αn in a single-valued neutrosophic approximation space (F˜, δ). Based on αn and δ, we introduced the single-valued neutrosophic ideal approximation interior operator intδαn and the single-valued neutrosophic ideal approximation closure operator Clδαn. We joined the single-valued neutrosophic ideal notion with the single-valued neutrosophic approximation spaces and then introduc
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8

Alsharari, Fahad. "On Single-Valued Neutrosophic Closure Spaces." Symmetry 13, no. 8 (2021): 1508. http://dx.doi.org/10.3390/sym13081508.

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This paper aims to mark out new terms of single-valued neutrosophic notions in a Šostak sense called single-valued neutrosophic semi-closure spaces. To achieve this, notions such as β£-closure operators and β£-interior operators are first defined. More precisely, these proposed contributions involve different terms of single-valued neutrosophic continuous mappings called single-valued neutrosophic (almost β£, faintly β£, weakly β£) and β£-continuous. Finally, for the purpose of symmetry, we define the single-valued neutrosophic upper, single-valued neutrosophic lower and single-valued neutroso
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9

Alsharari, Fahad, Hanan Alohali, Yaser Saber, and Florentin Smarandache. "An Introduction to Single-Valued Neutrosophic Primal Theory." Symmetry 16, no. 4 (2024): 402. http://dx.doi.org/10.3390/sym16040402.

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This article explores the interconnections among the single-valued neutrosophic grill, single-valued neutrosophic primal and their stratification, uncovering their fundamental characteristics and correlated findings. By introducing the notion of a single-valued neutrosophic primal, a broader framework including the fuzzy primal and intuitionistic fuzzy primal is established. Additionally, the concept of a single-valued neutrosophic open local function for a single-valued neutrosophic topological space is presented. We introduce an operator based on a single-valued neutrosophic primal, illustra
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10

Kim, Smarandache, Lee, and Hur. "Ordinary Single Valued Neutrosophic Topological Spaces." Symmetry 11, no. 9 (2019): 1075. http://dx.doi.org/10.3390/sym11091075.

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We define an ordinary single valued neutrosophic topology and obtain some of its basicproperties. In addition, we introduce the concept of an ordinary single valued neutrosophic subspace.Next, we define the ordinary single valued neutrosophic neighborhood system and we show thatan ordinary single valued neutrosophic neighborhood system has the same properties in a classicalneighborhood system. Finally, we introduce the concepts of an ordinary single valued neutrosophicbase and an ordinary single valued neutrosophic subbase, and obtain two characterizations of anordinary single valued neutrosop
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11

Vadiraja, Vadiraja, Prasanna Poojary, Vadiraja Bhatta G. R., and Sunny Kumar Sharma. "Single-Valued Pentapartitioned Neutrosophic Bi-Topological Spaces." International Journal of Neutrosophic Science 23, no. 4 (2024): 194–205. http://dx.doi.org/10.54216/ijns.230415.

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In this article, we present the notion of Single-Valued Pentapartitioned Neutrosophic Bi-Topological Space (SVPNBTS) as a generalization of Single-Valued Pentapartitioned Neutrosophic Topological Space (SVPNTS) and Neutrosophic Bi-Topological Space (NBTS). Besides, we study the different types of open set and closed set namely single-valued pentapartitioned neutrosophic bi-open set (SVPNBOS), single-valued pentapartitioned neutrosophic bi-closed set (SVPNBCS), single-valued pentapartitioned neutrosophic bi-semi-open set (SVPNBSOS), single-valued pentapartitioned neutrosophic bi-semi-closed set
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12

Saber, Yaser, Hanan Alohali, Tawfik Elmasry, and Florentin Smarandache. "On single-valued neutrosophic soft uniform spaces." AIMS Mathematics 9, no. 1 (2023): 412–39. http://dx.doi.org/10.3934/math.2024023.

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<abstract><p>In this paper, we introduce the notion of single-valued neutrosophic soft uniform spaces as a view point of the entourage approach. We investigate the relationship among single-valued neutrosophic soft uniformities, single-valued neutrosophic soft topologies and single-valued neutrosophic soft interior operators. Also, we study several single-valued neutrosophic soft topologies induced by a single-valued neutrosophic soft uniform space.</p></abstract>
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13

Akram, Muhammad. "Single-valued Neutrosophic planar graphs." International Journal of Algebra and Statistics 5, no. 2 (2016): 157. http://dx.doi.org/10.20454/ijas.2016.1207.

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We apply the concept of single-valued neutrosophic sets to multigraphs, planar graphs and dual graphs. We introduce the notions of single-valued neutrosophic multigraphs, single-valued neutrosophic planar graphs, and single-valued neutrosophic dual graphs. We illustrate these concepts with examples. We also investigate some of their properties.
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14

Hamidi, Mohammad, and Arsham Borumand Saeid. "Achievable Single-Valued Neutrosophic Graphs in Wireless Sensor Networks." New Mathematics and Natural Computation 14, no. 02 (2018): 157–85. http://dx.doi.org/10.1142/s1793005718500114.

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This paper considers wireless sensor (hyper) networks by single-valued neutrosophic (hyper)graphs. It tries to extend the notion of single-valued neutrosophic graphs to single-valued neutrosophic hypergraphs and it is derived single-valued neutrosophic graphs from single-valued neutrosophic hypergraphs via positive equivalence relation. We use single-valued neutrosophic hypergraphs and positive equivalence relation to create the sensor clusters and access to cluster heads. Finally, the concept of (extended) derivable single-valued neutrosophic graph is considered as the energy clustering of wi
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15

Saber, Yaser. "Connectedness in Single-Valued Neutrosophic Soft Grill Topological Spaces." International Journal of Analysis and Applications 21 (December 18, 2023): 137. http://dx.doi.org/10.28924/2291-8639-21-2023-137.

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The incentive of this article is to continue discovering more interesting results and concepts related to the single-valued neutrosophic soft topological spaces. The concept of the single-valued neutrosophic soft operator φ created from a single-valued neutrosophic soft grill (Kσ, Kτ, Kδ) and a single-valued neutrosophic soft topological space (B, ~T~σ, ~T~ς, ~T~δ) is presented. Connectedness of single-valued neutrosophic soft topological spaces with single-valued neutrosophic soft grills is given. Moreover, the concept of γ-connectedness associated with a single-valued neutrosophic soft opera
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16

Alsharari, Fahad. "£-Single Valued Extremally Disconnected Ideal Neutrosophic Topological Spaces." Symmetry 13, no. 1 (2020): 53. http://dx.doi.org/10.3390/sym13010053.

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This paper aims to mark out new concepts of r-single valued neutrosophic sets, called r-single valued neutrosophic £-closed and £-open sets. The definition of £-single valued neutrosophic irresolute mapping is provided and its characteristic properties are discussed. Moreover, the concepts of £-single valued neutrosophic extremally disconnected and £-single valued neutrosophic normal spaces are established. As a result, a useful implication diagram between the r-single valued neutrosophic ideal open sets is obtained. Finally, some kinds of separation axioms, namely r-single valued neutrosophic
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17

Saber, Yaser, Fahad Alsharari, Florentin Smarandache, and Mohammed Abdel-Sattar. "Connectedness and Stratification of Single-Valued Neutrosophic Topological Spaces." Symmetry 12, no. 9 (2020): 1464. http://dx.doi.org/10.3390/sym12091464.

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This paper aims to introduce the notion of r-single-valued neutrosophic connected sets in single-valued neutrosophic topological spaces, which is considered as a generalization of r-connected sets in Šostak’s sense and r-connected sets in intuitionistic fuzzy topological spaces. In addition, it introduces the concept of r-single-valued neutrosophic separated and obtains some of its basic properties. It also tries to show that every r-single-valued neutrosophic component in single-valued neutrosophic topological spaces is an r-single-valued neutrosophic component in the stratification of it. Fi
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18

Hamidi, M., and F. Smarandache. "Single-Valued Neutro Hyper BCK-Subalgebras." Journal of Mathematics 2021 (September 22, 2021): 1–11. http://dx.doi.org/10.1155/2021/6656739.

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The purpose of this paper is to introduce the notation of single-valued neutrosophic hyper BCK-subalgebras and a novel concept of neutro hyper BCK-algebras as a generalization and alternative of hyper BCK-algebras, that have a larger applicable field. In order to realize the article’s goals, we construct single-valued neutrosophic hyper BCK-subalgebras and neutro hyper BCK-algebras on a given nonempty set. The result of the research is the generalization of single-valued neutrosophic BCK-subalgebras and neutro BCK-algebras to single-valued neutrosophic hyper BCK-subalgebras and neutro hyper BC
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19

Jin, Qiu, Kai Hu, Chunxin Bo, and Lingqiang Li. "A New Single-Valued Neutrosophic Rough Sets and Related Topology." Journal of Mathematics 2021 (July 17, 2021): 1–14. http://dx.doi.org/10.1155/2021/5522021.

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(Fuzzy) rough sets are closely related to (fuzzy) topologies. Neutrosophic rough sets and neutrosophic topologies are extensions of (fuzzy) rough sets and (fuzzy) topologies, respectively. In this paper, a new type of neutrosophic rough sets is presented, and the basic properties and the relationships to neutrosophic topology are discussed. The main results include the following: (1) For a single-valued neutrosophic approximation space U , R , a pair of approximation operators called the upper and lower ordinary single-valued neutrosophic approximation operators are defined and their propertie
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20

Das, Suman, Rakhal Das, Prasanna Poojary, and Vadiraja Bhatta G. R. "Single-Valued Quadripartitioned Neutrosophic Minimal Structure Space." International Journal of Neutrosophic Science 20, no. 2 (2023): 15–23. http://dx.doi.org/10.54216/ijns.200302.

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The main objective of this article is to procure the notion of single-valued quadripartitioned neutrosophic minimal structure space (SVQNMSS) and introduce the notion of single-valued quadripartitioned neutrosophic minimal open set and single-valued quadripartitioned neutrosophic minimal continuous function in it. Further, we study several fundamental properties of continuity in SVQNMSS, such as the composition of single-valued quadripartitioned neutrosophic minimal continuous functions and the product of single-valued quadripartitioned neutrosophic minimal functions in product SVQNMSS.
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21

Mehra, Seema, and Manjeet Singh. "Single Valued Neutrosophic Signedgraphs." International Journal of Computer Applications 157, no. 9 (2017): 31–34. http://dx.doi.org/10.5120/ijca2017912813.

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22

Jun Hui Kim, Jeonggon Lee, Kul Hur, and 임평기. "Single valued neutrosophic relations." ANNALS OF FUZZY MATHEMATICS AND INFORMATICS 16, no. 2 (2018): 201–21. http://dx.doi.org/10.30948/afmi.2018.16.2.201.

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23

Changxing, Fan, and Ye Jun. "The Cosine Measure of Single Valued Neutrosophic Multisets for Multiple Attribute Decision-Making." September 12, 2018. https://doi.org/10.5281/zenodo.1413982.

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24

Changxing, Fan, Fan En, and Ye Jun. "The Cosine Measure of Single-Valued Neutrosophic Multisets for Multiple Attribute Decision-Making." May 11, 2018. https://doi.org/10.5281/zenodo.1413988.

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Based on the multiplicity evaluation in some real situations, this paper firstly introduces a single-valued neutrosophic multiset (SVNM) as a subclass of neutrosophic multiset (NM) to express the multiplicity information and the operational relations of SVNMs. Then, a cosine measure between SVNMs and weighted cosine measure between SVNMs are presented to measure the cosine degree between SVNMs, and their properties are investigated
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25

Shan, Ye, and Ye Jun. "Dice Similarity Measure between Single Valued Neutrosophic Multisets and Its Application in Medical Diagnosis." July 1, 2015. https://doi.org/10.5281/zenodo.22448.

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This paper introduces the concept of a single valued neutrosophic multiset (SVNM) as a generalization of an intuitionistic fuzzy multiset (IFM) and some basic operational relations of SVNMs, and then proposes the Dice similarity measure and the weighted Dice similarity measure for SVNMs and investigates their properties. Finally, the Dice similarity measure is applied to a medical diagnosis problem with SVNM information. This diagnosis method can deal with the medical diagnosis problem with indeterminate and inconsistent information which cannot be
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26

Shan, Ye, and Ye Jun. "Dice Similarity Measure between Single Valued Neutrosophic Multisets and Its Application in Medical Diagnosis." Neutrosophic Sets and Systems 6, 2014 (May 4, 2014). https://doi.org/10.5281/zenodo.571361.

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This paper introduces the concept of a single valued neutrosophic multiset (SVNM) as a generalization of an intuitionistic fuzzy multiset (IFM) and some basic operational relations of SVNMs, and then proposes the Dice similarity measure and the weighted Dice similarity measure for SVNMs and investigates their properties. Finally, the Dice similarity measure is applied to a medical diagnosis problem with SVNM information.
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27

Rajashi, Chatterjee, Majumdar P., and K. Samanta S. "Single valued neutrosophic multisets." April 16, 2015. https://doi.org/10.5281/zenodo.23186.

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In this paper, we have investigated single valued neutrosophic multisets in detail. Several operations have been de ned on them and their important algebraic properties are studied.We have further introduced the notion of distance and similarity measures between two single valued neutrosophic multisets. An application of single valued neutrosophic multisets in medical diagnosis has been discussed.
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28

Jun, Ye. "Correlation Coefficient between Dynamic Single Valued Neutrosophic Multisets and Its Multiple Attribute Decision-Making Method." April 7, 2017. https://doi.org/10.5281/zenodo.1041473.

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Based on dynamic information collected from different time intervals in some real situations, this paper firstly proposes a dynamic single valued neutrosophic multiset (DSVNM) to express dynamic information and operational relations of DSVNMs.
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29

Qingqing, Hu, and Zhang Xiaohong. "New Similarity Measures of Single-Valued Neutrosophic Multisets Based on the Decomposition Theorem and Its Application in Medical Diagnosis." May 21, 2019. https://doi.org/10.5281/zenodo.3079888.

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Cut sets, decomposition theorem and representation theorem have a great influence on the realization of the transformation of fuzzy sets and classical sets, and the single-valued neutrosophic multisets (SVNMSs) as the generalization of fuzzy sets, which cut sets, decomposition theorem and representation theorem have the similar effects, so they need to be studied in depth.
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30

Shan, Ye, Fu Jing, and Ye Jun. "Medical Diagnosis Using Distance-Based Similarity Measures of Single Valued Neutrosophic Multisets." July 1, 2015. https://doi.org/10.5281/zenodo.22565.

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This paper proposes a generalized distance measure and its similarity measures between single valued neutrosophic multisets (SVNMs). Then, the similarity measures are applied to a medical diagnosis problem with incomplete, indeterminate and inconsistent information. This diagnosis method can deal with the diagnosis problem with indeterminate and inconsistent information which cannot be handled by the diagnosis method based on intuitionistic fuzzy multisets (IFMs).
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31

Chao, Zhang, Li Deyu, Broumi Said, and Kumar Sangaiah Arun. "Medical Diagnosis Based on Single-Valued Neutrosophic Probabilistic Rough Multisets over Two Universes." May 20, 2019. https://doi.org/10.5281/zenodo.3054770.

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In real-world diagnostic procedures, due to the limitation of human cognitive competence, a medical expert may not conveniently use some crisp numbers to express the diagnostic information, and plenty of research has indicated that generalized fuzzy numbers play a significant role in describing complex diagnostic information.
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32

Chao, Zhang, Li Deyu, Broumi Said, and Kumar Sangaiah Arun. "Medical Diagnosis Based on Single-Valued Neutrosophic Probabilistic Rough Multisets over Two Universes." May 1, 2018. https://doi.org/10.5281/zenodo.1413101.

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In real-world diagnostic procedures, due to the limitation of human cognitive competence, a medical expert may not conveniently use some crisp numbers to express the diagnostic information, and plenty of research has indicated that generalized fuzzy numbers play a significant role in describing complex diagnostic information.
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33

D., Preethi, Rajareega S., J.Vimala, Selvachandran Ganeshsree, and Smarandache Florentin. "Single-Valued Neutrosophic Hyperrings and Single-Valued Neutrosophic Hyperideals." October 20, 2019. https://doi.org/10.5281/zenodo.3514413.

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In this paper, we introduced the concepts of Single-valued neutrosophic hyperring and Single-valued neutrosophic hyperideal. The algebraic properties and structural characteristics of the single-val-ued neutrosophic hyperrings and hyperideals are investigated and verified.
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34

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By REVERSE CONNECTIVE DOMINATION As Hyper Decoration On Super Density." August 2, 2023. https://doi.org/10.5281/zenodo.8206877.

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311 [HG311] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By REVERSE CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8206877). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8206877 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsf
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35

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By EQUAL CONNECTIVE DOMINATION As Hyper Decoration On Super Density." July 31, 2023. https://doi.org/10.5281/zenodo.8201319.

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308 [HG308] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By EQUAL CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8201319). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8201319 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfon
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36

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By REVERSE CONNECTIVE DOMINATION As Hyper Decoration On Super Density." August 1, 2023. https://doi.org/10.5281/zenodo.8206773.

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309 [HG309] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By REVERSE CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8206773). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8206773 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, ams
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37

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By REVERSE CONNECTIVE DOMINATION As Hyper Decoration On Super Density." August 2, 2023. https://doi.org/10.5281/zenodo.8206834.

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310 [HG310] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By REVERSE CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8206834). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8206834 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd,
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38

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By STABLE As Hyper Decoration On Super Density." September 2, 2023. https://doi.org/10.5281/zenodo.8310454.

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314 [HG314] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By STABLE As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8310454). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8310454 @academia: https://www.academia.edu/- —   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssy
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39

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By CONNECTIVE DOMINATION As Hyper Decoration On Super Density." July 29, 2023. https://doi.org/10.5281/zenodo.8196147.

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305 [HG305] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8196147). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8196147 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts
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40

Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By EQUAL CONNECTIVE DOMINATION As Hyper Decoration On Super Density." July 31, 2023. https://doi.org/10.5281/zenodo.8201165.

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306 [HG306] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By EQUAL CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8201165). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8201165 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By EQUAL CONNECTIVE DOMINATION As Hyper Decoration On Super Density." July 31, 2023. https://doi.org/10.5281/zenodo.8201255.

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307 [HG307] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By EQUAL CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8201255). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8201255 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, am
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By DOMINATION As Hyper Decoration On Super Density." July 19, 2023. https://doi.org/10.5281/zenodo.8161878.

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301 [HG301] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Star and Wheel By DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8161878). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8161878 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, grap
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By CONNECTIVE DOMINATION As Hyper Decoration On Super Density." July 29, 2023. https://doi.org/10.5281/zenodo.8196099.

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303 [HG303] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8196099). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8196099 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsf
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By CONNECTIVE DOMINATION As Hyper Decoration On Super Density." July 29, 2023. https://doi.org/10.5281/zenodo.8196132.

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304 [HG304] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By CONNECTIVE DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8196132). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8196132 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By DOMINATION As Hyper Decoration On Super Density." July 23, 2023. https://doi.org/10.5281/zenodo.8176262.

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300 [HG300] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Multipartite and Cycle By DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8176262). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8176262 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssy
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By DOMINATION As Hyper Decoration On Super Density." July 26, 2023. https://doi.org/10.5281/zenodo.8187955.

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302 [HG302] Henry Garrett, “New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph With Bipartite and Path By DOMINATION As Hyper Decoration On Super Density”, Zenodo 2023, (doi: 10.5281/zenodo.8187955). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8187955 @academia: https://www.academia.edu/-   \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb,
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Suman, Das, Das Rakhal, and Pramanik Surapati. "Single Valued Pentapartitioned Neutrosophic Graphs." June 29, 2022. https://doi.org/10.5281/zenodo.6774779.

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Background: The notion of single valued pentapartitioned neutrosophic set is the extension of single valued neutrosophic set and quadripartitioned single valued neutrosophic set. The single valued pentapartitioned neutrosophic set is a powerful mathematical tool that comprehensively deals with indeterminacy by splitting it into three independent components, namely, unknown, contradiction, ignorance. We apply the concept of single valued pentapartitioned neutrosophic set to graph theory. Findings: We develop the notions of Single-Valued Pentapartitioned Neutrosophic graph (SVPN-graph) as an ext
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M., Hamidi, and Borumand Saeid A. "Accessible single-valued neutrosophic graphs." March 27, 2017. https://doi.org/10.5281/zenodo.1041062.

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This paper derived single-valued neutrosophic graphs from single-valued neutrosophic hypergraphs via strong equivalence relation. We show that any weak single-valued neutrosophic graph is a derived single-valued neutrosophic graph and any linear weak single-valued neutrosophic tree is an extendable linear single-valued neutrosophic tree.
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M., Hamidi, and Borumand Saeid A. "Accessible single-valued neutrosophic graphs." September 10, 2018. https://doi.org/10.5281/zenodo.1412355.

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This paper derived single-valued neutrosophic graphs from single-valued neutrosophic hypergraphs via strong equivalence relation. We show that any weak single-valued neutrosophic graph is a derived single-valued neutrosophic graph and any linear weak single-valued neutrosophic tree is an extendable linear single-valued neutrosophic tree.
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M., Hamidi, and Borumand Saeid A. "Accessible single-valued neutrosophic graphs." May 22, 2018. https://doi.org/10.5281/zenodo.1412552.

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This paper derived single-valued neutrosophic graphs from single-valued neutrosophic hypergraphs via strong equivalence relation. We show that any weak single-valued neutrosophic graph is a derived single-valued neutrosophic graph and any linear weak single-valued neutrosophic tree is an extendable linear single-valued neutrosophic tree.
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