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| {{issue/data | | {{issue/data |
| | conference = 8<sup>th</sup> [[IWIFS]], Sofia, 9 October 2012 | | | conference = 8<sup>th</sup> [[IWIFS]], Sofia, 9 October 2012 |
| | issue = Conference proceedings, [[Notes on Intuitionistic Fuzzy Sets/18/4|"Notes on IFS", Volume 18 (2012) Number 4]], pages 1—7 | | | issue = Conference proceedings, [[Notes on Intuitionistic Fuzzy Sets/18/4|"Notes on Intuitionistic Fuzzy Sets", Volume 18 (2012) Number 4]], pages 1—7 |
| | file = NIFS-18-4-01-07.pdf | | | file = NIFS-18-4-01-07.pdf |
| | format = PDF | | | format = PDF |
Revision as of 17:58, 28 August 2024
shortcut
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http://ifigenia.org/wiki/issue:nifs/18/4/1-7
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Title of paper:
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Intuitionistic fuzzy implication →C and negation ¬C
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Author(s):
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Krassimir Atanassov
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Bioinformatics and Mathematical Modelling Department, Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, 105 Acad. G. Bonchev Str., Sofia 1113, Bulgaria
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krat@bas.bg
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Presented at:
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8th IWIFS, Sofia, 9 October 2012
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Published in:
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Conference proceedings, "Notes on Intuitionistic Fuzzy Sets", Volume 18 (2012) Number 4, pages 1—7
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Download:
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PDF (132 Kb, File info)
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Abstract:
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A new type of intuitionistic fuzzy implication →C and negation ¬C are introduced in intuitionistic fuzzy logic and some of their properties are discussed. These new operations are extensions of the operations →ε,η and ¬ε,η
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Keywords:
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Intuitionistic fuzzy logic, Quantifier, Topological operator.
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AMS Classification:
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03E72
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References:
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- Atanassov, K., On intuitionistic fuzzy implication →ε and intuitionistic fuzzy negation ¬ε. Issues in Intuitionistic Fuzzy Sets and Generalized Nets, Vol. 6, 2008, 6–19.
- Atanassov, K., Intuitionistic fuzzy implication →ε,μC(x) and intuitionistic fuzzy negation ¬ε,η. Developments in Fuzzy Sets, Intuitionistic Fuzzy Sets, Generalized Nets and Related Topics, Vol. 1, 2008, 1–10.
- Atanassov, K. Intuitionistic Fuzzy Sets, Springer, Heidelberg, 1999.
- Atanassov, K. T., On Intuitionistic Fuzzy Sets Theory, Springer, Berlin, 2012.
- Klir, G. and Bo Yuan, Fuzzy Sets and Fuzzy Logic, Prentice Hall, New Jersey, 1995.
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Citations:
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