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  1. Topological structures of complex belief systems.Josué-Antonio Nescolarde-Selva & José-Luis Usó-Doménech - 2014 - Complexity 19 (1):46-62.
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  • Mathematics, Philosophical and Semantic Considerations on Infinity : Dialectical Vision.José-Luis Usó-Doménech, Josué Antonio Nescolarde-Selva, Mónica Belmonte-Requena & L. Segura-Abad - 2017 - Foundations of Science 22 (3):655-674.
    Human language has the characteristic of being open and in some cases polysemic. The word “infinite” is used often in common speech and more frequently in literary language, but rarely with its precise meaning. In this way the concepts can be used in a vague way but an argument can still be structured so that the central idea is understood and is shared with to the partners. At the same time no precise definition is given to the concepts used and (...)
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  • Textual Theory and Complex Belief Systems: Topological Theory.J. Nescolarde-Selva & J. L. Usó-Doménech - 2016 - Foundations of Science 21 (1):153-175.
    In order to establish patterns of materialization of the beliefs we are going to consider that these have defined mathematical structures. It will allow us to understand better processes of the textual, architectonic, normative, educative, etc., materialization of an ideology. The materialization is the conversion by means of certain mathematical correspondences, of an abstract set whose elements are beliefs or ideas, in an impure set whose elements are material or energetic. Text is a materialization of ideology and it is any (...)
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  • Explanation versus Understanding: On Two Roles of Dynamical Systems Theory in Extended Cognition Research.Katarzyna Kuś & Krzysztof Wójtowicz - forthcoming - Foundations of Science:1-26.
    It is widely believed that mathematics carries a substantial part of the explanatory burden in science. However, mathematics can also play important heuristic roles of a different kind, being a source of new ideas and approaches, allowing us to build toy models, enhancing expressive power and providing fruitful conceptualizations. In this paper, we focus on the application of dynamical systems theory (DST) within the extended cognition (EC) field of cognitive science, considering this case study to be a good illustration of (...)
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  • Paradoxical Aspects of the Russellian Conception of Existence.J. L. Usó-Doménech, J. A. Nescolarde-Selva & H. Gash - 2023 - Foundations of Science 28 (3):911-925.
    In this paper, the authors try to clarify the relations between Meinong’s and Russell's thoughts on the ontological ideas of existence. The Meinongian theory on non-existent objects does not in itself violate the principle of non-contradiction, since the problem that this hypothesis offers to the theory of definite descriptions is not so much a logical problem as an ontological problem. To demonstrate this we will establish what we believe are the two main theses basic to the theory of descriptions: the (...)
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  • Dialectical Hegelian Logic and Physical Quantity and Quality.J. L. Usó-Doménech, J. A. Nescolarde-Selva & H. Gash - 2022 - Foundations of Science 27 (2):555-572.
    In Ontology, quality determines beings. The quality-quantity bipolarity reveals that a conceptual logical comprehension that can include negation must be a dialectical logic. Quality is a precise characteristic of something capable of augmentation or diminution while remaining identical through differences or quantitative changes. Thus, quality and in opposition quantity are inextricably linked, giving definition to each other, so constituting a logical bipolarity. The theory is that a magnitude G is never separated from secondary qualities α and β, and therefore, a (...)
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  • Mathematical Logic of Notions and Concepts.J. L. Usó-Doménech & J. A. Nescolarde-Selva - 2019 - Foundations of Science 24 (4):641-655.
    In this paper the authors develop a logic of concepts within a mathematical linguistic theory. In the set of concepts defined in a belief system, the order relationship and Boolean algebra of the concepts are considered. This study is designed to obtain a tool, which is the metatheoretical base of this type of theory.
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  • Impure Systems and Ecological Models : Components and Thermodynamics.Josué-Antonio Nescolarde-Selva, José-Luis Usó-Doménech & Miguel Lloret-Climent - 2019 - Foundations of Science 24 (3):427-455.
    This paper refers to a subjective approach to Ecosystems, referred to as Impure Systems to capture a set of fundamental properties. There are four main phenomenological components: directionality, intensity, connection energy and volume. A fundamental question in this approach to Impure Systems is the intensity or forces of a relation. Concepts as the system volume, and propose a system thermodynamic theory based in the Law of Zipf and the temperature of information are introduced. It hints at the possibility of adapting (...)
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  • Ideological systems and its validation: a neutrosophic approach.Josue Nescolarde-Selva & Jose Luis Uso-Domenech - 2015 - Neutrosophic Sets and Systems 9:31-43.
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  • Semiotic open complex systems: Processes and behaviors.Josep Lluis Usó-Doménech, Josué Antonio Nescolarde-Selva, Miguel Lloret-Climent & Meng Fan - 2015 - Complexity 21 (S2):388-396.
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  • Impure Systems and Ecological Models : Axiomatization.José-Luis Usó-Doménech, Josué-Antonio Nescolarde-Selva & Miguel Lloret-Climent - 2018 - Foundations of Science 23 (2):297-321.
    sBuilding models as a practical aspect of ecological theory has as a principal purpose the determination of relations in formal language. In this paper, the authors provide a formalization of ecological models based on impure systems theory. Impure systems contain objects and subjects: subjects are human beings. We can distinguish a person as an observer that by definition is the subject himself and part of the system. In this case he acquires the category of object. Objects are significances, which are (...)
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  • Complex impure systems: Sheaves, freeways, and chains.Josep Lluis Usó-doménech, Josué Antonio Nescolarde-Selva & Miguel Lloret-Climent - 2016 - Complexity 21 (S1):387-400.
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  • “Unintended effects”: A theorem for complex systems.J. L. Usó-Doménech, J. Nescolarde-Selva & M. Lloret-Climent - 2016 - Complexity 21 (2):342-354.
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  • A logic-mathematical point of view of the truth: Reality, perception, and language.Josué Antonio Nescolarde-Selva, Josep-Lluis Usó-Doménech & Hugh Gash - 2015 - Complexity 20 (4):58-67.
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  • Revealing the Face of Isis.J. L. Usó-Doménech & J. Nescolarde-Selva - 2014 - Foundations of Science 19 (3):311-318.
    This reply to Gash’s (Found Sci 2014) commentary on Nescolarde-Selva and Usó-Doménech (Found Sci 2014b) answers the questions raised and at the same time opens up new questions.
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  • Constructivism, Truth and Reality.Hugh Gash - 2014 - Foundations of Science 19 (3):307-309.
    This commentary to Nescolarde-Selva and Usó-Doménech’s (Reality, systems and impure systems. Foundations of Science 2013) links ideas in their paper to radical constructivism and raises two questions. (1) Would it be helpful to substitute the constructivist notion of viability for the traditional notion of truth with its connotations of relating language and reality? (2) Is the link made to issues in ontological philosophy important since the implicit constructivist epistemology of the paper considers mathematical ideas are just as real as ideas (...)
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  • Linguistic Knowledge of Reality: A Metaphysical Impossibility?J. Nescolarde-Selva, J. L. Usó-Doménech & M. J. Sabán - 2015 - Foundations of Science 20 (1):27-58.
    Reality contains information that becomes significances in the mind of the observer. Language is the human instrument to understand reality. But is it possible to attain this reality? Is there an absolute reality, as certain philosophical schools tell us? The reality that we perceive, is it just a fragmented reality of which we are part? The work that the authors present is an attempt to address this question from an epistemological, linguistic and logical-mathematical point of view.
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  • Myth, language, and complex ideologies.Josué Antonio Nescolarde-Selva & Josep-Lluis Usó-Doménech - 2014 - Complexity 20 (2):63-81.
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  • Topological structures of complex belief systems (II): Textual materialization.J. Nescolarde-Selva & J. L. USÓ-Doménech - 2014 - Complexity 19 (2):50-62.
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