A Study on Complex t-Neutrosophic Graph with Intention to Preserve Biodiversity

Author:

Kaviyarasu Murugan1ORCID,Cotîrlă Luminița-Ioana2ORCID,Breaz Daniel3,Rajeshwari Murugesan4,Rapeanu Eleonora5ORCID

Affiliation:

1. Department of Mathematics, Vel Tech Rangarajan Dr Sagunthala R & D Institute of Science and Technology, Chennai 600062, India

2. Department of Mathematics, Technical University of Cluj Napoca, 400114 Cluj-Napoca, Romania

3. Department of Mathematics, “1 Decembrie 1918” University of Alba Iulia, 510009 Alba Iulia, Romania

4. Department of Mathematics, Presidency University, Bangalore 560064, India

5. Academia Navala Mircea cel Batran, 900218 Constanta, Romania

Abstract

This study introduces the notion of complex t-neutrosophic graphs (CTNGs) as a powerful tool for understanding and displaying complex interactions that are sometimes difficult to understand. It demonstrates that CTNGs may accurately reflect complicated interactions involving several components or dimensions within a particular scenario. It also instructs the basic set operations of CTNGs and analyzes notions like homomorphism and isomorphism within this framework. Furthermore, the research describes a practical application of CTNGs. It illustrates their value in addressing biodiversity conservation by taking into account a variety of relevant factors. The paper uses this application to highlight the flexibility and effectiveness of CTNGs as a tool for decision-makers to visualize and prioritize activities targeted at improving biodiversity conservation.

Publisher

MDPI AG

Reference41 articles.

1. Fuzzy sets;Zadeh;Inf. Control,1965

2. Kandel, A. (1986). Fuzzy Mathematical Techniques with Applications 325, Addison-Wesley Educational Publishers Inc.

3. Klir, G.J., and Yuan, B. (1995). Fuzzy Sets and Fuzzy Logic: Theory and Applications 1–12, Prentice-Hall.

4. Fuzzy logic systems for engineering: A tutorial;Mendel;Proc. IEEE,1995

5. Zimmermann, L.A. (1991). Fuzzy Set Theory and Its Applications, Kluwer. [2nd ed.].

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