Results for 'I. E. Vasil'

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  1. Fridrikh Ėngelʹs, myslitelʹ i revoli︠u︡t︠s︡ioner. Solodukhin, N. I︠U︡., [From Old Catalog], Sukhodeev, Vladimir Vasilʹevich, Kowalczyk & Józef (eds.) - 1970
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  2. Ėsteticheskoe nasledie V.I. Lenina i khudozhestvennai︠a︡ kulʹtura.I︠U︡ Lukin & Vasiliĭ Vasilʹevich Novikov (eds.) - 1980 - Moskva: "Myslʹ".
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  3.  4
    Dialektika abstraktnogo i konkretnogo v nauchno-teoreticheskom myshlenii.Ėvalʹd Vasilʹevich Ilʹenkov - 1997 - Moskva: ROSSPĖN.
  4. Pedagogicheskie vzgli︠a︡dy Sharli︠a︡ Furʹe.I︠U︡. V. Vasilʹkova - 1986 - Moskva: "Pedagogika".
     
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  5. Iskusstvo i kommunisticheskiĭ ideal: izbrannye statʹi po filosofii i ėstetike.Ėvalʹd Vasilʹevich Ilʹenkov - 1984 - Moskva: "Iskusstvo". Edited by A. G. Novokhatʹko.
     
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  6.  5
    Dar blagorodstva: germenevtika, politika.G. E. Vasilʹev - 2008 - Moskva: Progress-Tradit︠s︡ii︠a︡.
    Kniga "Dar Blagorodstva" posvyaschena problemam vlasti i Upravleniya, dovol'no spetsificheski ponimaemym avtorom, kotoryj protivopolagaet ih drug drugu prezhde vsego v ih "germenevticheskih" i "politicheskih" aspektah. Pri etom, odnako, on ukorenyaet dannuyu problematiku v ekzistentsial'nom, "edinichnom" izmerenii, poskol'ku problema vlasti est', po mysli avtora, ekzistentsial'naya problema. Kniga "Dar Blagorodstva" est' neposredstvennoe prodolzhenie knigi "Filosofiya Bazilevsa" i yavlyaetsya ee svoeobraznym "vtorym tomom.".
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  7. Dialektika abstraktnogo i konkretnogo v "Kapitale" Marksa.Ėvalʹd Vasilʹevich Ilʹenkov - 1960 - [Moskva]: Izd-vo Akademii︠a︡ nauk SSSR.
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  8. Filosofii︠a︡ i kulʹtura.Ėvalʹd Vasilʹevich Ilʹenkov - 1991 - Moskva: Izd-vo polit. lit-ry.
     
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  9. Ob idolakh i idealakh.Ėvalʹd Vasilʹevich Ilʹenkov - 1968
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  10. Dialekticheskai︠a︡ logika: ocherki istorii i teorii.Ėvalʹd Vasilʹevich Ilʹenkov - 1984 - Moskva: Izd-vo polit. lit-ry.
     
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  11. A Formal Model of Metaphor in Frame Semantics.Vasil Penchev - 2015 - In Proceedings of the 41st Annual Convention of the Society for the Study of Artificial Intelligence and the Simulation of Behaviour. New York: Curran Associates, Inc.. pp. 187-194.
    A formal model of metaphor is introduced. It models metaphor, first, as an interaction of “frames” according to the frame semantics, and then, as a wave function in Hilbert space. The practical way for a probability distribution and a corresponding wave function to be assigned to a given metaphor in a given language is considered. A series of formal definitions is deduced from this for: “representation”, “reality”, “language”, “ontology”, etc. All are based on Hilbert space. A few statements about a (...)
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  12. Metodologicheskie problemy literaturovedenii︠a︡ i ėstetiki i ideologicheskai︠a︡ borʹba.Vasil Kolevski (ed.) - 1988 - Sofii︠a︡: Izd-vo Bolgarskoĭ akademii nauk.
     
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  13. The Kochen - Specker theorem in quantum mechanics: a philosophical comment (part 2).Vasil Penchev - 2013 - Philosophical Alternatives 22 (3):74-83.
    The text is a continuation of the article of the same name published in the previous issue of Philosophical Alternatives. The philosophical interpretations of the Kochen- Specker theorem (1967) are considered. Einstein's principle regarding the,consubstantiality of inertia and gravity" (1918) allows of a parallel between descriptions of a physical micro-entity in relation to the macro-apparatus on the one hand, and of physical macro-entities in relation to the astronomical mega-entities on the other. The Bohmian interpretation ( 1952) of quantum mechanics proposes (...)
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  14. From The Principle Of Least Action To The Conservation Of Quantum Information In Chemistry: Can One Generalize The Periodic Table?Vasil Penchev - 2019 - Chemistry: Bulgarian Journal of Science Education 28 (4):525-539.
    The success of a few theories in statistical thermodynamics can be correlated with their selectivity to reality. These are the theories of Boltzmann, Gibbs, end Einstein. The starting point is Carnot’s theory, which defines implicitly the general selection of reality relevant to thermodynamics. The three other theories share this selection, but specify it further in detail. Each of them separates a few main aspects within the scope of the implicit thermodynamic reality. Their success grounds on that selection. Those aspects can (...)
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  15. God's Dice.Vasil Penchev - 2015 - In S. Oms, J. Martínez, M. García-Carpintero & J. Díez (eds.), Actas: VIII Conference of the Spanish Society for Logic, Methodology, and Philosophy of Sciences. Barcelona: Universitat de Barcelona. pp. 297-303.
    Einstein wrote his famous sentence "God does not play dice with the universe" in a letter to Max Born in 1920. All experiments have confirmed that quantum mechanics is neither wrong nor “incomplete”. One can says that God does play dice with the universe. Let quantum mechanics be granted as the rules generalizing all results of playing some imaginary God’s dice. If that is the case, one can ask how God’s dice should look like. God’s dice turns out to be (...)
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  16. The Symmetries of Quantum and Classical Information. The Ressurrected “Ether" of Quantum Information.Vasil Penchev - 2021 - Philosophy of Science eJournal (Elsevier: SSRN) 14 (41):1-36.
    The paper considers the symmetries of a bit of information corresponding to one, two or three qubits of quantum information and identifiable as the three basic symmetries of the Standard model, U(1), SU(2), and SU(3) accordingly. They refer to “empty qubits” (or the free variable of quantum information), i.e. those in which no point is chosen (recorded). The choice of a certain point violates those symmetries. It can be represented furthermore as the choice of a privileged reference frame (e.g. that (...)
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  17. This Year's Nobel Prize (2022) in Physics for Entanglement and Quantum Information: the New Revolution in Quantum Mechanics and Science.Vasil Penchev - 2023 - Philosophy of Science eJournal (Elsevier: SSRN) 18 (33):1-68.
    The paper discusses this year’s Nobel Prize in physics for experiments of entanglement “establishing the violation of Bell inequalities and pioneering quantum information science” in a much wider, including philosophical context legitimizing by the authority of the Nobel Prize a new scientific area out of “classical” quantum mechanics relevant to Pauli’s “particle” paradigm of energy conservation and thus to the Standard model obeying it. One justifies the eventual future theory of quantum gravitation as belonging to the newly established quantum information (...)
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  18. A Model of Causal and Probabilistic Reasoning in Frame Semantics.Vasil Penchev - 2020 - Semantics eJournal (Elsevier: SSRN) 2 (18):1-4.
    Quantum mechanics admits a “linguistic interpretation” if one equates preliminary any quantum state of some whether quantum entity or word, i.e. a wave function interpret-able as an element of the separable complex Hilbert space. All possible Feynman pathways can link to each other any two semantic units such as words or term in any theory. Then, the causal reasoning would correspond to the case of classical mechanics (a single trajectory, in which any next point is causally conditioned), and the probabilistic (...)
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  19. The Indeterminist Objectivity of Quantum Mechanics Versus the Determinist Subjectivity of Classical Physics.Vasil Penchev - 2020 - Cosmology and Large-Scale Structure eJournal (Elsevier: SSRN) 2 (18):1-5.
    Indeterminism of quantum mechanics is considered as an immediate corollary from the theorems about absence of hidden variables in it, and first of all, the Kochen – Specker theorem. The base postulate of quantum mechanics formulated by Niels Bohr that it studies the system of an investigated microscopic quantum entity and the macroscopic apparatus described by the smooth equations of classical mechanics by the readings of the latter implies as a necessary condition of quantum mechanics the absence of hidden variables, (...)
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  20. Reality in a Few Thermodynamic Reference Frames: Statistical Thermodynamics From Boltzmann via Gibbs to Einstein.Vasil Penchev - 2020 - Philosophy of Science eJournal (Elsevier: SSRN) 13 (33):1-14.
    The success of a few theories in statistical thermodynamics can be correlated with their selectivity to reality. These are the theories of Boltzmann, Gibbs, and Einstein. The starting point is Carnot’s theory, which defines implicitly the general selection of reality relevant to thermodynamics. The three other theories share this selection, but specify it further in detail. Each of them separates a few main aspects within the scope of the implicit thermodynamic reality. Their success grounds on that selection. Those aspects can (...)
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  21. Неразрешимост на първата теорема за непълнотата. Гьоделова и Хилбертова математика.Vasil Penchev - 2010 - Philosophical Alternatives 19 (5):104-119.
    Can the so-ca\led first incompleteness theorem refer to itself? Many or maybe even all the paradoxes in mathematics are connected with some kind of self-reference. Gбdel built his proof on the ground of self-reference: а statement which claims its unprovabllity. So, he demonstrated that undecidaЬle propositions exist in any enough rich axiomatics (i.e. such one which contains Peano arithmetic in some sense). What about the decidabllity of the very first incompleteness theorem? We can display that it fulfills its conditions. That's (...)
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  22. Quantum Invariance.Vasil Penchev - 2020 - Epistemology eJournal (Elsevier: SSRN) 13 (22):1-6.
    Quantum invariance designates the relation of any quantum coherent state to the corresponding statistical ensemble of measured results. The adequate generalization of ‘measurement’ is discussed to involve the discrepancy, due to the fundamental Planck constant, between any quantum coherent state and its statistical representation as a statistical ensemble after measurement. A set-theory corollary is the curious invariance to the axiom of choice: Any coherent state excludes any well-ordering and thus excludes also the axiom of choice. It should be equated to (...)
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  23. Na rubezhe tretʹego tysi︠a︡chiletii︠a︡ [i.e. tysi︠a︡cheletii︠a︡]: k 125-letii︠u︡ izdanii︠a︡ "Istoricheskikh pisem" Petra Lavrovicha Lavrova.A. V. Vasilʹev - 1995 - Mariupolʹ: Rossiĭsko-ukrainskiĭ in-t ėkonomiko-sot︠s︡iokulʹturnykh issledovaniĭ. Edited by P. A. Lavrov.
     
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  24. Representation and Reality by Language: How to make a home quantum computer?Vasil Penchev - 2020 - Philosophy of Science eJournal (Elsevier: SSRN) 13 (34):1-14.
    A set theory model of reality, representation and language based on the relation of completeness and incompleteness is explored. The problem of completeness of mathematics is linked to its counterpart in quantum mechanics. That model includes two Peano arithmetics or Turing machines independent of each other. The complex Hilbert space underlying quantum mechanics as the base of its mathematical formalism is interpreted as a generalization of Peano arithmetic: It is a doubled infinite set of doubled Peano arithmetics having a remarkable (...)
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  25. The Frontier of Time: The Concept of Quantum Information.Vasil Penchev - 2020 - Cosmology and Large-Scale Structure eJournal (Elsevier: SSRN) 2 (17):1-5.
    The concept of formal transcendentalism is utilized. The fundamental and definitive property of the totality suggests for “the totality to be all”, thus, its externality (unlike any other entity) is contained within it. This generates a fundamental (or philosophical) “doubling” of anything being referred to the totality, i.e. considered philosophically. Thus, that doubling as well as transcendentalism underlying it can be interpreted formally as an elementary choice such as a bit of information and a quantity corresponding to the number of (...)
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  26. Cognition according to Quantum Information: Three Epistemological Puzzles Solved.Vasil Penchev - 2020 - Epistemology eJournal (Elsevier: SSRN) 13 (20):1-15.
    The cognition of quantum processes raises a series of questions about ordering and information connecting the states of one and the same system before and after measurement: Quantum measurement, quantum in-variance and the non-locality of quantum information are considered in the paper from an epistemological viewpoint. The adequate generalization of ‘measurement’ is discussed to involve the discrepancy, due to the fundamental Planck constant, between any quantum coherent state and its statistical representation as a statistical ensemble after measurement. Quantum in-variance designates (...)
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  27. Superhumans: Super-Language?Vasil Penchev - 2016 - Dialogue and Universalism 26 (1):79-89.
    The paper questions the scientific rather than ideological problem of an eventual biological successor of the mankind. The concept of superhumans is usually linked to Nietzsche or to Heidegger’s criticism or even to the ideology of Nazism. However, the superhuman can be also viewed as that biological species who will originate from humans eventually in the course of evolution.While the society is reached a natural limitation of globalism, technics depends on the amount of utilized energy, and the mind is restricted (...)
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  28. The generalization of the Periodic table. The "Periodic table" of dark matter.Vasil Penchev - 2021 - Computational and Theoretical Chemistry eJournal (Elsevier: SSRN) 4 (4):1-12.
    The thesis is: the “periodic table” of “dark matter” is equivalent to the standard periodic table of the visible matter being entangled. Thus, it is to consist of all possible entangled states of the atoms of chemical elements as quantum systems. In other words, an atom of any chemical element and as a quantum system, i.e. as a wave function, should be represented as a non-orthogonal in general (i.e. entangled) subspace of the separable complex Hilbert space relevant to the system (...)
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  29. Natural Cybernetics of Time, or about the Half of any Whole.Vasil Penchev - 2021 - Information Systems eJournal (Elsevier: SSRN) 4 (28):1-55.
    Norbert Wiener’s idea of “cybernetics” is linked to temporality as in a physical as in a philosophical sense. “Time orders” can be the slogan of that natural cybernetics of time: time orders by itself in its “screen” in virtue of being a well-ordering valid until the present moment and dividing any totality into two parts: the well-ordered of the past and the yet unordered of the future therefore sharing the common boundary of the present between them when the ordering is (...)
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  30. Cyclic Mechanics: the Principle of Cyclicity.Vasil Penchev - 2020 - Cosmology and Large-Scale Structure eJournal (Elsevier: SSRN) 2 (16):1-35.
    Cyclic mechanic is intended as a suitable generalization both of quantum mechanics and general relativity apt to unify them. It is founded on a few principles, which can be enumerated approximately as follows: 1. Actual infinity or the universe can be considered as a physical and experimentally verifiable entity. It allows of mechanical motion to exist. 2. A new law of conservation has to be involved to generalize and comprise the separate laws of conservation of classical and relativistic mechanics, and (...)
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  31. Natural Cybernetics and Mathematical History: The Principle of Least Choice in History.Vasil Penchev - 2020 - Cultural Anthropology (Elsevier: SSRN) 5 (23):1-44.
    The paper follows the track of a previous paper “Natural cybernetics of time” in relation to history in a research of the ways to be mathematized regardless of being a descriptive humanitarian science withal investigating unique events and thus rejecting any repeatability. The pathway of classical experimental science to be mathematized gradually and smoothly by more and more relevant mathematical models seems to be inapplicable. Anyway quantum mechanics suggests another pathway for mathematization; considering the historical reality as dual or “complimentary” (...)
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  32. What Is Quantum Information? Information Symmetry and Mechanical Motion.Vasil Penchev - 2020 - Information Theory and Research eJournal (Elsevier: SSRN) 1 (20):1-7.
    The concept of quantum information is introduced as both normed superposition of two orthogonal sub-spaces of the separable complex Hilbert space and in-variance of Hamilton and Lagrange representation of any mechanical system. The base is the isomorphism of the standard introduction and the representation of a qubit to a 3D unit ball, in which two points are chosen. The separable complex Hilbert space is considered as the free variable of quantum information and any point in it (a wave function describing (...)
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  33. Хегеловата диря в "Онто-теологическият строеж на метафизиката" по Хайдегер.Vasil Penchev - 2008 - In Димитър Цацов, Иван Колев, Панчо Русев, Саркис Саркисян & Цветина Рачева (eds.), ФИЛОСОФИЯТА НА НЕМСКИЯ ИДЕАЛИЗЪМ В БЪЛГАРИЯ. Юбилеен сборник по случай 80-годишнината на Генчо Дончев. pp. 120-134.
    Тhе question which animates Heidegger's paper (''Die onto-theo-logische Verfassung der Metaphysik:) is: "How are God coming in phi1osophy?"; and it is only а sharpening of "th.e question of the onto-theologic character of philosophy". Hegel and Heidegger are bothunited and opposed as identity and difference. Both being and existing descend from difference. Equilibrium (Aпstrag) arranges the unit of being and existing.
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  34.  53
    Human Dignity as the Essence of Nussbaum’s Ethics of Human Development.Vasil Gluchman - 2019 - Philosophia 47 (4):1127-1140.
    Martha C. Nussbaum, in the context of ancient philosophy, formulated ethics of human development based on 10 basic human capabilities as a precondition of meaningful human development, i.e. the ability to live a dignified human life. The paper, thus, deals with a capabilities approach with the aim of analysing the content of the idea of human dignity in Nussbaum’s understanding and its place in the conception of ethics of human development, since human dignity is the very core of the conception (...)
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  35. Ėtika i ritual v tradit︠s︡ionnom Kitae: sbornik stateĭ.L. S. Vasilʹev (ed.) - 1988 - Moskva: Izd-vo "Nauka," Glav. red. vostochnoĭ lit-ry.
     
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  36.  4
    Nation and language: Magyar and Slovak ideas of common good (The first half of the 19th century).Vasil Gluchman - 2022 - Ethics and Bioethics (in Central Europe) 12 (3-4):128-144.
    The author studies the Magyar and Slovak ideas of common good that concerned the inhabitants of Hungary in the first half of the 19th century. The Magyar model was based on the rights of an individual, their civic duties, and virtues. Its realisation, however, lay in preferring the interests of the Magyar nation and required the adoption of full Magyar national identity, i.e. assimilation and ethnocide of the non-Magyar inhabitants of Hungary. The author characterises this model as exclusive, chauvinist, and (...)
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  37. Logic, mathematics, physics: from a loose thread to the close link: Or what gravity is for both logic and mathematics rather than only for physics.Vasil Penchev - 2023 - Astrophysics, Cosmology and Gravitation Ejournal 2 (52):1-82.
    Gravitation is interpreted to be an “ontomathematical” force or interaction rather than an only physical one. That approach restores Newton’s original design of universal gravitation in the framework of “The Mathematical Principles of Natural Philosophy”, which allows for Einstein’s special and general relativity to be also reinterpreted ontomathematically. The entanglement theory of quantum gravitation is inherently involved also ontomathematically by virtue of the consideration of the qubit Hilbert space after entanglement as the Fourier counterpart of pseudo-Riemannian space. Gravitation can be (...)
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  38. Gödel mathematics versus Hilbert mathematics. I. The Gödel incompleteness (1931) statement: axiom or theorem?Vasil Penchev - 2022 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 14 (9):1-56.
    The present first part about the eventual completeness of mathematics (called “Hilbert mathematics”) is concentrated on the Gödel incompleteness (1931) statement: if it is an axiom rather than a theorem inferable from the axioms of (Peano) arithmetic, (ZFC) set theory, and propositional logic, this would pioneer the pathway to Hilbert mathematics. One of the main arguments that it is an axiom consists in the direct contradiction of the axiom of induction in arithmetic and the axiom of infinity in set theory. (...)
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  39. Uchebnik ėnt︠s︡iklopedīi prava.Fedor Vasilʹevich Taranovsḳiĭ - 1917 - I︠U︡rʹev,:
     
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  40. Gödel Mathematics Versus Hilbert Mathematics. II Logicism and Hilbert Mathematics, the Identification of Logic and Set Theory, and Gödel’s 'Completeness Paper' (1930).Vasil Penchev - 2023 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 15 (1):1-61.
    The previous Part I of the paper discusses the option of the Gödel incompleteness statement (1931: whether “Satz VI” or “Satz X”) to be an axiom due to the pair of the axiom of induction in arithmetic and the axiom of infinity in set theory after interpreting them as logical negations to each other. The present Part II considers the previous Gödel’s paper (1930) (and more precisely, the negation of “Satz VII”, or “the completeness theorem”) as a necessary condition for (...)
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  41. Tak nazyvaemai︠a︡ "religīi︠a︡ chelovi︠e︡chestva" i ei︠a︡ nereligīoznostʹ.N. Vasilʹkov - 1897
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  42.  2
    Leninskai︠a︡ dialektika i metafizika pozitivizma: Razmyshlenii︠a︡ nad knigoĭ V.I. Lenina "Materializm i ėmpiriokritit︠s︡izm".Ėvalʹd Vasilʹevich Ilʹenkov - 1980 - Moskva: Izd-vo polit. lit-ry.
  43. Stanovlenie i razvitie ėsteticheskoĭ kulʹtury v sfere materialʹnogo proizvodstva: na primere respublik Sredneĭ Azii.Alekseĭ Vasilʹevich T︠S︡aĭ - 1983 - Tashkent: Izd-vo "FAN" Uzbekskoĭ SSR.
     
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  44. What the Tortoise Said to Achilles: Lewis Carroll’s paradox in terms of Hilbert arithmetic.Vasil Penchev - 2021 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 13 (22):1-32.
    Lewis Carroll, both logician and writer, suggested a logical paradox containing furthermore two connotations (connotations or metaphors are inherent in literature rather than in mathematics or logics). The paradox itself refers to implication demonstrating that an intermediate implication can be always inserted in an implication therefore postponing its ultimate conclusion for the next step and those insertions can be iteratively and indefinitely added ad lib, as if ad infinitum. Both connotations clear up links due to the shared formal structure with (...)
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  45. The Homeomorphism of Minkowski Space and the Separable Complex Hilbert Space: The physical, Mathematical and Philosophical Interpretations.Vasil Penchev - 2021 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 14 (3):1-22.
    A homeomorphism is built between the separable complex Hilbert space (quantum mechanics) and Minkowski space (special relativity) by meditation of quantum information (i.e. qubit by qubit). That homeomorphism can be interpreted physically as the invariance to a reference frame within a system and its unambiguous counterpart out of the system. The same idea can be applied to Poincaré’s conjecture (proved by G. Perelman) hinting at another way for proving it, more concise and meaningful physically. Furthermore, the conjecture can be generalized (...)
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  46. The isomorphism of Minkowski space and the separable complex Hilbert space and its physical interpretation.Vasil Penchev - 2020 - Philosophy of Science eJournal (Elsevier:SSRN) 13 (31):1-3.
    An isomorphism is built between the separable complex Hilbert space (quantum mechanics) and Minkowski space (special relativity) by meditation of quantum information (i.e. qubit by qubit). That isomorphism can be interpreted physically as the invariance between a reference frame within a system and its unambiguous counterpart out of the system. The same idea can be applied to Poincaré’s conjecture (proved by G. Perelman) hinting another way for proving it, more concise and meaningful physically. Mathematically, the isomorphism means the invariance to (...)
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  47. From the four-color theorem to a generalizing “four-letter theorem”: A sketch for “human proof” and the philosophical interpretation.Vasil Penchev - 2020 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 12 (21):1-10.
    The “four-color” theorem seems to be generalizable as follows. The four-letter alphabet is sufficient to encode unambiguously any set of well-orderings including a geographical map or the “map” of any logic and thus that of all logics or the DNA plan of any alive being. Then the corresponding maximally generalizing conjecture would state: anything in the universe or mind can be encoded unambiguously by four letters. That admits to be formulated as a “four-letter theorem”, and thus one can search for (...)
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  48. Sovetskai︠a︡ ėtika i sovremennai︠a︡ ideologicheskai︠a︡ borʹba.Li︠u︡dmila Vasilʹevna Konovalova - 1977
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  49.  19
    Envisioning Intention-Oriented Brain-to-Speech Decoding.L. Li, J. Vasil & S. Negoita - 2019 - Journal of Consciousness Studies 27 (1-2):71-93.
    The typical approach to decoding speech from the brain (using brain-machine interfaces) is to decode low-level linguistic units (e.g. phonemes, syllables) from motor articulation areas (e.g. Premotor cortex) with the aim of assembling these low-level units into higher-level discourse. We propose that brain-to-speech decoding may benefit from adopting a functional view of language, which conceives of language as an instrumental tool for interacting with others' intentions in order to fulfil one's own intentions. This functional view of language motivates adopting usability (...)
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  50.  6
    Fenomen i︠e︡vropeĭsʹkoho nihilizmu: tradyt︠s︡iï i novat︠s︡iï.Natalii︠a︡ Mykolaïvna I︠E︡melʹi︠a︡nova - 2002 - Donet︠s︡ʹk: TOV "Lebidʹ".
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