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1

L, Wilson Richard. Logic, values & ethical analysis. 2nd ed. Kendall/Hunt Pub., 1997.

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2

Cohen, Elliot D. Making value judgements: Principles of sound reasoning. Krieger, 1985.

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3

Heinrich, Wansing, and SpringerLink (Online service), eds. Truth and Falsehood: An Inquiry into Generalized Logical Values. Springer Science+Business Media B.V., 2012.

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4

Cho, Sŏng-min. Nolli wa kachʻi tʻamgu. Chʻŏrhak kwa Hyŏnsilsa, 1993.

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5

Cho, Sŏng-min. Nolli wa kachʻi tʻamgu. Chʻŏrhak kwa Hyŏnsilsa, 1993.

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6

Rounds, William C. Set values for unification-based grammar formalisms and logic programming. Center for the Study of Language and Information, 1988.

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7

Magnani, Lorenzo. Model-Based Reasoning: Science, Technology, Values. Springer US, 2002.

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8

Muhr, Dieter. Ich-Nicht-Gewicht: Wertwirklichkeit. Verlag Die Blaue Eule, 1993.

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9

1952-, Kühne-Bertram Gudrun, ed. Logik und Wert: Späte Vorlesungen, Entwürfe und Fragmente zur Strukturpsychologie, Logik und Wertlehre (ca. 1904-1911). Vandenhoeck & Ruprecht, 2004.

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10

Ironia e Sokratit: Studime. Botart, 2009.

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11

Czeżowski, Tadeusz. Knowledge, science, and values: A program for scientific philosophy. Rodopi, 2000.

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12

Gheorghe, Adrian V. Risk Engineering: Bridging Risk Analysis with Stakeholders Values. Springer Netherlands, 1999.

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13

Daya, Krishna. The art of the conceptual: Explorations in a conceptual maze over three decades. Indian Council of Philosophical Research in association with Munshiram Manoharlal Publishers, 1989.

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14

Xu, Yang, Keyun Qin, Da Ruan, and Jun Liu. Lattice-Valued Logic. Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/978-3-540-44847-1.

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15

Malinowski, Grzegorz. Many-valued logics. Clarendon Press, 1993.

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16

Bolc, Leonard. Many-valued logics. Springer-Verlag, 1992.

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17

Bolc, Leonard, and Piotr Borowik. Many-Valued Logics. Springer Berlin Heidelberg, 1992. http://dx.doi.org/10.1007/978-3-662-08494-6.

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18

Gottwald, Siegfried. A treatise on many-valued logic. Research Studies Press, 2000.

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19

1934-, Epstein George. Multiple-valued logic design: An introduction. Institute of Physics Pub., 1993.

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20

Ciungu, Lavinia Corina. Non-commutative Multiple-Valued Logic Algebras. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-01589-7.

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21

Guiașu, Silviu. Relative logic for intelligence-based systems. Advanced Knowledge International, 2003.

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22

Cignoli, Roberto. Algebraic foundations of many-valued reasoning. Kluwer Academic, 2000.

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23

D'Ottaviano, Itala M. L., 1944- and Mundici Daniele 1946-, eds. Algebraic foundations of many-valued reasoning. Kluwer Academic Publishers, 1999.

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24

Fitting, Melvin. Beyond two: Theory and applications of multiple-valued logic. Edited by Orlowska Ewa. Physica-Verlag, 2003.

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25

Bergmann, Merrie. An introduction to many-valued and fuzzy logic: Semantics, algebras, and derivation systems. Cambridge University Press, 2008.

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26

Clarke, Christopher Turrall. The implementation and applications of multiple-valued logic. typescript, 1993.

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27

Van Fraassen, Bas C., 1941-, ed. Possibilities and paradox: An introduction to modal and many-valued logic. Oxford University Press, 2003.

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28

Duo zhi luo ji de fang fa he li lun: Fei zheng gui duo zhi luo ji yan jiu. Ke xue chu ban she, 2009.

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29

Jianquan, Ouyang, ed. Duo zhi luo ji han shu jie gou li lun yan jiu. Ke xue chu ban she, 2010.

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30

Bolc, Leonard. Many-Valued Logics: 1: Theoretical Foundations. Springer Berlin Heidelberg, 1992.

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31

Hähnle, Reiner. Automated deduction in multiple-valued logics. Clarendon Press, 1993.

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32

Attribute-value logic and the theory of grammar. Center for the Study of Language and Information, 1988.

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33

Fitting, Melvin, and Ewa Orłowska, eds. Beyond Two: Theory and Applications of Multiple-Valued Logic. Physica-Verlag HD, 2003. http://dx.doi.org/10.1007/978-3-7908-1769-0.

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34

International, Symposium on Multiple-Valued Logic (31st 2001 Warsaw Poland). Proceedings: 31st IEEE International Symposium on Multiple-Valued Logic. IEEE Computer Society, 2001.

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35

Cignoli, Roberto L. O. Algebraic Foundations of Many-Valued Reasoning. Springer Netherlands, 2000.

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36

International Symposium on Multiple-Valued Logic (24th 1994 Boston, Mass.). The twenty-fourth International Symposium on Multiple-Valued Logic: Proceedings, May 25-27, 1994, Boston, Massachusetts. IEEE Computer Society Press, 1994.

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37

Oral, Sabri Onur. The minimization of multiple valued logic expressions using parallel processors. Naval Postgraduate School, 1991.

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38

Earle, Robert C. Minimization of multiple-valued programmable logic array using simulated annealing. Naval Postgraduate School, 1991.

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39

Ho, Hsu Liang. Switched-capacitor circuits in the implementation of multiple-valued logic. National Library of Canada, 1990.

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40

The Logic of Spiritual Values. Minerva Press, 1996.

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41

Wansing, Heinrich, and Yaroslav Shramko. Truth and Falsehood: An Inquiry into Generalized Logical Values. Springer, 2013.

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42

Progressive Logic: Framing a Unified Field Theory of Values for Progressives. William J. Kelleher, Ph.D., 2005.

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43

Livne, Roi. Values at the End of Life - the Logic of Palliative Care. Harvard University Press, 2019.

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44

Livne, Roi. Values at the End of Life: The Logic of Palliative Care. Harvard University Press, 2019.

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45

Tennant, Neil. Core Logic. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198777892.001.0001.

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Core Logic has unusual philosophical, proof-theoretic, metalogical, computational, and revision-theoretic virtues. It is an elegant kernel lying deep within Classical Logic, a canon for constructive and relevant deduction furnishing faithful formalizations of informal constructive mathematical proofs. Its classicized extension provides likewise for non-constructive mathematical reasoning. Confining one’s search to core proofs affords automated reasoners great gains in efficiency. All logico-semantical paradoxes involve only core reasoning. Core proofs are in normal form, and relevant in a high
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46

Belohlavek, Radim, Joseph W. Dauben, and George J. Klir. Fuzzy Logic and Mathematics. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780190200015.001.0001.

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The term “fuzzy logic” (FL) is a generic one, which stands for a broad variety of logical systems. Their common ground is the rejection of the most fundamental principle of classical logic—the principle of bivalence—according to which each declarative sentence has exactly two possible truth values—true and false. Each logical system subsumed under FL allows for additional, intermediary truth values, which are interpreted as degrees of truth. These systems are distinguished from one another by the set of truth degrees employed, its algebraic structure, truth functions chosen for logical connect
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47

Tennant, Neil. The Road to Core Logic. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198777892.003.0002.

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We situate Core Logic and Classical Core Logic within a wider logical landscape. Core Logic lies at the intersection of two orthogonal lines of reform of Classical Logic—constructivization and relevantization. We explain the genesis of Core Logic and describe its carefully formulated rules of inference. We reveal how Core Logic arises as a smooth generalization of the proto-logic involved in working out the truth values of sentences under particular interpretations; and the case for the complete methodological adequacy of Core Logic for constructive deductive reasoning, and of Classical Core L
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48

(Editor), Didier Dubois, Henri Prade (Editor), and E. P. Klement (Editor), eds. Fuzzy Sets, Logics and Reasoning about Knowledge (APPLIED LOGIC SERIES Volume 15) (Applied Logic Series). Springer, 1999.

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49

Mahajan, Gautam. Value Dominant Logic. Productivity Press, 2018. http://dx.doi.org/10.4324/9780367030582.

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50

Gottwald, Siegfried. A Treatise on Many-Valued Logics (Studies in Logic and Computation). Taylor & Francis Group, 2001.

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