Results for 'ontic conception of mechanisms'

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  1. The Concept of Mechanism in Biology.Daniel J. Nicholson - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):152-163.
    The concept of mechanism in biology has three distinct meanings. It may refer to a philosophical thesis about the nature of life and biology (‘mechanicism’), to the internal workings of a machine-like structure (‘machine mechanism’), or to the causal explanation of a particular phenomenon (‘causal mechanism’). In this paper I trace the conceptual evolution of ‘mechanism’ in the history of biology, and I examine how the three meanings of this term have come to be featured in the philosophy of biology, (...)
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  2. In Search of Mechanisms in Neuroscience.Sasan Haghighi - manuscript
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  3. The Ontic-Epistemic Debates of Explanation Revisited: The Three-Dimensional Approach.Jinyeong Gim - 2024 - Philosophical Problems in Science (Zagadnienia Filozoficzne W Nauce) 74:99-169.
    After Wesley Salmon’s causal-mechanical stance on explanation in the 1980s, the ontic-epistemic debate of scientific explanations appeared to be resolved in the philosophy of science. However, since the twenty-first century, this debate has been rekindled among philosophers who focus on mechanistic explanations. Nevertheless, its issues have evolved, necessitating scrutiny of the new trends in this debate and a comparison with the original controversy between Carl Hempel and Salmon. The primary objective of this paper is to elucidate three categorical dimensions (...)
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  4. Merleau-Ponty’s implicit critique of the new mechanists.Benjamin Sheredos - 2018 - Synthese (Suppl 9):1-25.
    I argue (1) that what (ontic) New Mechanistic philosophers of science call mechanisms would be material Gestalten, and (2) that Merleau-Ponty’s engagement with Gestalt theory can help us frame a standing challenge against ontic conceptions of mechanisms. In short, until the (ontic) New Mechanist can provide us with a plausible account of the organization of mechanisms as an objective feature of mind-independent ontic structures in the world which we might discover – and no (...)
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  5. Probabilities in Statistical Mechanics.Wayne C. Myrvold - 2016 - In Alan Hájek & Christopher Hitchcock (eds.), The Oxford Handbook of Probability and Philosophy. Oxford: Oxford University Press. pp. 573-600.
    This chapter will review selected aspects of the terrain of discussions about probabilities in statistical mechanics (with no pretensions to exhaustiveness, though the major issues will be touched upon), and will argue for a number of claims. None of the claims to be defended is entirely original, but all deserve emphasis. The first, and least controversial, is that probabilistic notions are needed to make sense of statistical mechanics. The reason for this is the same reason that convinced Maxwell, Gibbs, and (...)
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  6. Minimal Models and the Generalized Ontic Conception of Scientific Explanation.Mark Povich - 2018 - British Journal for the Philosophy of Science 69 (1):117-137.
    Batterman and Rice ([2014]) argue that minimal models possess explanatory power that cannot be captured by what they call ‘common features’ approaches to explanation. Minimal models are explanatory, according to Batterman and Rice, not in virtue of accurately representing relevant features, but in virtue of answering three questions that provide a ‘story about why large classes of features are irrelevant to the explanandum phenomenon’ ([2014], p. 356). In this article, I argue, first, that a method (the renormalization group) they propose (...)
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  7. Mechanistic explanation without the ontic conception.Cory Wright - 2012 - European Journal of Philosophy of Science 2 (3):375-394.
    The ontic conception of scientific explanation has been constructed and motivated on the basis of a putative lexical ambiguity in the term explanation. I raise a puzzle for this ambiguity claim, and then give a deflationary solution under which all ontically-rendered talk of explanation is merely elliptical; what it is elliptical for is a view of scientific explanation that altogether avoids the ontic conception. This result has revisionary consequences for New Mechanists and other philosophers of science, (...)
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  8. Mechanizmy predykcyjne i ich normatywność [Predictive mechanisms and their normativity].Michał Piekarski - 2020 - Warszawa, Polska: Liberi Libri.
    The aim of this study is to justify the belief that there are biological normative mechanisms that fulfill non-trivial causal roles in the explanations (as formulated by researchers) of actions and behaviors present in specific systems. One example of such mechanisms is the predictive mechanisms described and explained by predictive processing (hereinafter PP), which (1) guide actions and (2) shape causal transitions between states that have specific content and fulfillment conditions (e.g. mental states). Therefore, I am guided (...)
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  9. A New Logic, a New Information Measure, and a New Information-Based Approach to Interpreting Quantum Mechanics.David Ellerman - 2024 - Entropy Special Issue: Information-Theoretic Concepts in Physics 26 (2).
    The new logic of partitions is dual to the usual Boolean logic of subsets (usually presented only in the special case of the logic of propositions) in the sense that partitions and subsets are category-theoretic duals. The new information measure of logical entropy is the normalized quantitative version of partitions. The new approach to interpreting quantum mechanics (QM) is showing that the mathematics (not the physics) of QM is the linearized Hilbert space version of the mathematics of partitions. Or, putting (...)
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  10. The Concept of Entropy in Statistical Mechanics and Stochastic Music Theory.Ivano Zanzarella - manuscript
    Originally appeared in the field of thermodynamics, the concept of entropy, especially in its statistical acceptation, has found applications in many different disciplines, both inside and outside science. In this work we focus on the possibility of drawing an isomorphism between the entropy of Boltzmann’s statistical mechanics and that of Xenakis’s stochastic music theory. We expose the major technical aspects of the two entropies and then consider affinities and differences between them, both at syntactic and at semantic level, hereto particularly (...)
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  11. Concepts of physical directionality of time Part 2 The interpretation of the quantum mechanical time reversal operator.Andrew Thomas Holster - manuscript
    This is Part 2 of a four part paper, intended as an introduction to the key concepts and issues of time directionality for physicists and philosophers. It redresses some fundamental confusions in the subject. These need to be corrected in introductory courses for physics and philosophy of physics students. Here we analyze the quantum mechanical time reversal operator and the reversal of the deterministic Schrodinger equation. It is argued that quantum mechanics is anti-symmetric w.r.t. time reversal in its deterministic laws. (...)
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  12. Fiction As a Vehicle for Truth: Moving Beyond the Ontic Conception.Alisa Bokulich - 2016 - The Monist 99 (3):260-279.
    Despite widespread evidence that fictional models play an explanatory role in science, resistance remains to the idea that fictions can explain. A central source of this resistance is a particular view about what explanations are, namely, the ontic conception of explanation. According to the ontic conception, explanations just are the concrete entities in the world. I argue this conception is ultimately incoherent and that even a weaker version of the ontic conception fails. Fictional (...)
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  13. The Ontic Account of Scientific Explanation.Carl F. Craver - 2014 - In Marie I. Kaiser, Oliver R. Scholz, Daniel Plenge & Andreas Hüttemann (eds.), Explanation in the special science: The case of biology and history. Dordrecht: Springer. pp. 27-52.
    According to one large family of views, scientific explanations explain a phenomenon (such as an event or a regularity) by subsuming it under a general representation, model, prototype, or schema (see Bechtel, W., & Abrahamsen, A. (2005). Explanation: A mechanist alternative. Studies in History and Philosophy of Biological and Biomedical Sciences, 36(2), 421–441; Churchland, P. M. (1989). A neurocomputational perspective: The nature of mind and the structure of science. Cambridge: MIT Press; Darden (2006); Hempel, C. G. (1965). Aspects of scientific (...)
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  14. Can (quantum) information be sorted out from quantum mechanics?Michele Caponigro & Stefano Mancini - 2009 - NQ Journal.
    We shall draw an affirmative answer to the question posed in the title. The key point will be a quantum description of physical reality. Once fixed at ontic level two basic elements, namely the laws of physics and the matter, we argue that the underlying physical reality emerges from the interconnection between these two elements. We consider any physical process, including measurement, modeled by unitary evolution. In this context, we will deduce quantum random- ness as a consequence of inclusion (...)
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  15. The Cognitive Mechanisms Underlying the Concept of ‫سرعة‬ (Speed) in Arabic.Hicham Lahlou - 2023 - Awej 7 (1):21-32.
    Despite the wide range of studies on how students’ past knowledge influences their understanding of scientific terminology, few studies were conducted to compare non-scientific language with scientific language, or rather everyday language with scientific language, from a cognitive linguistic perspective. The present paper aims to determine the cognitive mechanisms, i.e., image schemas, conceptual metaphor, and conceptual metonymy, which underpin the conceptualisation of the Arabic term سرعة (speed), using a conceptual metaphor theory framework. Thus, the research question guiding this study (...)
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  16. Representing and Explaining: The Eikonic Conception of Scientific Explanation.Alisa Bokulich - 2018 - Philosophy of Science (5):793-805.
    The ontic conception of explanation, according to which explanations are "full-bodied things in the world," is fundamentally misguided. I argue instead for what I call the eikonic conception, according to which explanations are the product of an epistemic activity involving representations of the phenomena to be explained. What is explained in the first instance is a particular conceptualization of the explanandum phenomenon, contextualized within a given research program or explanatory project. I conclude that this eikonic conception (...)
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  17. The Concept of a Substance and its Linguistic Embodiment.Henry Laycock - 2023 - Philosophies 8 (6):114.
    My objective is a better comprehension of two theoretically fundamental concepts. One, the concept of a substance in an ordinary (non-Aristotelian) sense, ranging over such things as salt, carbon, copper, iron, water, and methane – kinds of stuff that now count as (chemical) elements and compounds. The other I’ll call the object-concept in the abstract sense of Russell, Wittgenstein, and Frege in their logico-semantical enquiries. The material object-concept constitutes the heart of our received logico / ontic system, still massively (...)
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  18. The Concept of Accountability in AI Ethics and Governance.Theodore Lechterman - 2023 - In Justin B. Bullock, Yu-Che Chen, Johannes Himmelreich, Valerie M. Hudson, Anton Korinek, Matthew M. Young & Baobao Zhang (eds.), The Oxford Handbook of AI Governance. Oxford University Press.
    Calls to hold artificial intelligence to account are intensifying. Activists and researchers alike warn of an “accountability gap” or even a “crisis of accountability” in AI. Meanwhile, several prominent scholars maintain that accountability holds the key to governing AI. But usage of the term varies widely in discussions of AI ethics and governance. This chapter begins by disambiguating some different senses and dimensions of accountability, distinguishing it from neighboring concepts, and identifying sources of confusion. It proceeds to explore the idea (...)
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  19. Three concepts of decidability for general subsets of uncountable spaces.Matthew W. Parker - 2003 - Theoretical Computer Science 351 (1):2-13.
    There is no uniquely standard concept of an effectively decidable set of real numbers or real n-tuples. Here we consider three notions: decidability up to measure zero [M.W. Parker, Undecidability in Rn: Riddled basins, the KAM tori, and the stability of the solar system, Phil. Sci. 70(2) (2003) 359–382], which we abbreviate d.m.z.; recursive approximability [or r.a.; K.-I. Ko, Complexity Theory of Real Functions, Birkhäuser, Boston, 1991]; and decidability ignoring boundaries [d.i.b.; W.C. Myrvold, The decision problem for entanglement, in: R.S. (...)
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  20. Is the Statistical Interpretation of Quantum Mechanics ψ-Ontic or ψ-Epistemic?Mario Hubert - 2023 - Foundations of Physics 53 (16):1-23.
    The ontological models framework distinguishes ψ-ontic from ψ-epistemic wave- functions. It is, in general, quite straightforward to categorize the wave-function of a certain quantum theory. Nevertheless, there has been a debate about the ontological status of the wave-function in the statistical interpretation of quantum mechanics: is it ψ-epistemic and incomplete or ψ-ontic and complete? I will argue that the wave- function in this interpretation is best regarded as ψ-ontic and incomplete.
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  21. Two concepts of "form" and the so-called computational theory of mind.John-Michael Kuczynski - 2006 - Philosophical Psychology 19 (6):795-821.
    According to the computational theory of mind , to think is to compute. But what is meant by the word 'compute'? The generally given answer is this: Every case of computing is a case of manipulating symbols, but not vice versa - a manipulation of symbols must be driven exclusively by the formal properties of those symbols if it is qualify as a computation. In this paper, I will present the following argument. Words like 'form' and 'formal' are ambiguous, as (...)
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  22. Aesthetics of mechanical reproduction; Changing values of meaning, representation and reality; an overview.Shafi S. Muhammed - 2019 - Paripex-Indian Journal of Research 8 (8):56-58.
    It is truly critical and crucial to analyze the revolutionary and radical role of technology in defining the aesthetic experience of modern man. Printmaking has initiated mass communication of visuals, and photography has re-defined realism, creating an alternate possibility of ‘seeing’ other than physically being with the object itself. Virtual reality and other artificial platforms are further facilitating this change in unpredictable ways. Inevitably, the criteria for aesthetic appreciation has transcended its traditional norms, related to concepts like ‘originality’ and asks (...)
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  23. Epistemic vs Ontic Classification of quantum entangled states?Michele Caponigro & Enrico Giannetto - 2012 - Discusiones Filosóficas 13 (20):137 - 145.
    In this brief paper, starting from recent works, we analyze from conceptual point of view this basic question: can be the nature of quantum entangled states interpreted ontologically or epistemologically? According some works, the degrees of freedom of quantum systems permit us to establish a possible classification between factorizables and entangled states. We suggest, that the "choice" of degree of freedom, even if mathematically justified introduces epistemic element, not only in the systems but also in their classification. We retain, instead, (...)
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  24. Evolving Concepts of 'Hierarchy' in Systems Neuroscience.Philipp Haueis & Daniel Burnston - 2020 - In Fabrizio Calzavarini & Marco Viola (eds.), Neural Mechanisms: New Challenges in the Philosophy of Neuroscience. Springer.
    The notion of “hierarchy” is one of the most commonly posited organizational principles in systems neuroscience. To this date, however, it has received little philosophical analysis. This is unfortunate, because the general concept of hierarchy ranges over two approaches with distinct empirical commitments, and whose conceptual relations remain unclear. We call the first approach the “representational hierarchy” view, which posits that an anatomical hierarchy of feed-forward, feed-back, and lateral connections underlies a signal processing hierarchy of input-output relations. Because the representational (...)
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  25. Einstein's Revolution: Reconciliation of Mechanics, Electrodynamics and Thermodynamics.Rinat M. Nugayev - 2000 - Physis.Rivista Internazionale Di Storia Della Scienza (1):181-207.
    The aim of this paper is to make a step towards a complete description of Special Relativity genesis and acceptance, bringing some light on the intertheoretic relations between Special Relativity and other physical theories of the day. I’ll try to demonstrate that Special Relativity and the Early Quantum Theory were created within the same programme of statistical mechanics, thermodynamics and Maxwellian electrodynamics reconciliation, i.e. elimination of the contradictions between the consequences of this theories. The approach proposed enables to explain why (...)
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  26. Armstrong's Conception of Supervenience.Markku Keinänen - 2008 - In Tim de Mey & Markku Keinänen (eds.), Problems From Armstrong. Acta Philosophica Fennica 84. pp. 51.
    In this article, I will focus on the notion of supervenience introduced and deployed by Armstrong. The aim is to settle the issue of whether it has any fruitful applications. My conclusions are negative. Armstrong gives to his notion of supervenience a major explanatory role of telling why one need not consider certain beings as a genuine ontic expansion, if one already assumes a certain meagre set of more basic entities. On closer inspection, however, Armstrong’s notion does not clarify (...)
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  27. The time asymmetry of quantum mechanics and concepts of physical directionality of time Part 1.Andrew Thomas Holster - manuscript
    This is Part 1 of a four part paper, intended to redress some of the most fundamental confusions in the subject of physical time directionality, and represent the concepts accurately. There are widespread fallacies in the subject that need to be corrected in introductory courses for physics students and philosophers. We start in Part 1 by analysing the time reversal symmetry of quantum probability laws. Time reversal symmetry is defined as the property of invariance under the time reversal transformation, T: (...)
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  28. Cartesianism and the Kinematics of Mechanisms: Or, How to find Fixed Reference Frames in a Cartesian Space-time.Edward Slowik - 1998 - Noûs 32 (3):364-385.
    In De gravitatione, Newton contends that Descartes' physics is fundamentally untenable since the "fixed" spatial landmarks required to ground the concept of inertial motion cannot be secured in the constantly changing Cartesian plenum. Likewise, it is has often been alleged that the collision rules in Descartes' Principles of Philosophy undermine the "relational" view of space and motion advanced in this text. This paper attempts to meet these challenges by investigating the theory of connected gears (or "kinematics of mechanisms") for (...)
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  29. Philosophical reflections on the concept of Innovation.Vincent Blok - 2021 - In Handbook on Alternative Theories of Innovation. Northampton, Verenigd Koninkrijk: pp. 354-367.
    In this chapter, we philosophically reflect on the concept of innovation. To this end, we distinguish between the innovation process and outcome dimension, and between the ontic and ontological dimension of innovation. The ontic dimension of innovation concerns beings like new artefacts, and the ontological dimension concerns the being of these beings. These distinctions lead to four characteristics of our understanding of innovation with several implications for the object of innovation and its novelty, as well as for the (...)
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  30. The concept of probability in physics: an analytic version of von Mises’ interpretation.Louis Vervoort - manuscript
    In the following we will investigate whether von Mises’ frequency interpretation of probability can be modified to make it philosophically acceptable. We will reject certain elements of von Mises’ theory, but retain others. In the interpretation we propose we do not use von Mises’ often criticized ‘infinite collectives’ but we retain two essential claims of his interpretation, stating that probability can only be defined for events that can be repeated in similar conditions, and that exhibit frequency stabilization. The central idea (...)
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  31. The Directionality of Topological Explanations.Daniel Kostić & Kareem Khalifa - 2021 - Synthese (5-6):14143-14165.
    Proponents of ontic conceptions of explanation require all explanations to be backed by causal, constitutive, or similar relations. Among their justifications is that only ontic conceptions can do justice to the ‘directionality’ of explanation, i.e., the requirement that if X explains Y , then not-Y does not explain not-X . Using topological explanations as an illustration, we argue that non-ontic conceptions of explanation have ample resources for securing the directionality of explanations. The different ways in which neuroscientists (...)
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  32. Beyond Conception: Ontic Reality, Pure Consciousness and Matter.Leanne Whitney - 2015 - Cosmos and History 11 (2):47-59.
    Our current scientific exploration of reality oftentimes appears focused on epistemic states and empiric results at the expense of ontological concerns. Any scientific approach without explicit ontological arguments cannot be deemed rational however, as our very Being can never be excluded from the equation. Furthermore, if, as many nondual philosophies contend, subject/object learning is to no avail in the attainment of knowledge of ontic reality, empiric science will forever bear out that limitation. Putting Jung's depth psychology in dialogue with (...)
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  33. Deconstructing the substantialist conception of God: recasting Heidegger's critique of Augustine.Nythamar de Oliveira - 2017 - Veritas – Revista de Filosofia da Pucrs 62 (2):330-353.
    In this paper, I argue that Augustine's conception of God as substance (substantia) has misleadingly been evoked by Martin Heidegger's deconstruction of onto-theological and substantialist variants of metaphysics as they mistook entities (Seienden, entia, beings) f r their very Being (Sein, ens, esse) which cannot be conceptualized or objectified by human thinking, but makes both their thought and reality possible. Even though Augustine sought somehow to reconcile a Neoplatonic, essentialist cosmology with a Judeo-Christian worldview of historical redemption, Heidegger not (...)
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  34. The Narrow Ontic Counterfactual Account of Distinctively Mathematical Explanation.Mark Povich - 2021 - British Journal for the Philosophy of Science 72 (2):511-543.
    An account of distinctively mathematical explanation (DME) should satisfy three desiderata: it should account for the modal import of some DMEs; it should distinguish uses of mathematics in explanation that are distinctively mathematical from those that are not (Baron [2016]); and it should also account for the directionality of DMEs (Craver and Povich [2017]). Baron’s (forthcoming) deductive-mathematical account, because it is modelled on the deductive-nomological account, is unlikely to satisfy these desiderata. I provide a counterfactual account of DME, the Narrow (...)
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  35. 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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  36. Beyond cognitive myopia: a patchwork approach to the concept of neural function.Philipp Haueis - 2018 - Synthese 195 (12):5373-5402.
    In this paper, I argue that looking at the concept of neural function through the lens of cognition alone risks cognitive myopia: it leads neuroscientists to focus only on mechanisms with cognitive functions that process behaviorally relevant information when conceptualizing “neural function”. Cognitive myopia tempts researchers to neglect neural mechanisms with noncognitive functions which do not process behaviorally relevant information but maintain and repair neural and other systems of the body. Cognitive myopia similarly affects philosophy of neuroscience because (...)
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  37. Phenomenological physiotherapy: extending the concept of bodily intentionality.Jan Halák & Petr Kříž - 2022 - Medical Humanities 48 (4):e14.
    This study clarifies the need for a renewed account of the body in physiotherapy to fill sizable gaps between physiotherapeutical theory and practice. Physiotherapists are trained to approach bodily functioning from an objectivist perspective; however, their therapeutic interactions with patients are not limited to the provision of natural-scientific explanations. Physiotherapists’ practice corresponds well to theorisation of the body as the bearer of original bodily intentionality, as outlined by Merleau-Ponty and elaborated upon by enactivists. We clarify how physiotherapeutical practice corroborates Merleau-Ponty’s (...)
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  38. The Governing Conception of the Wavefunction.Nina Emery - 2022 - In Valia Allori (ed.), Quantum Mechanics and Fundamentality: Naturalizing Quantum Theory between Scientific Realism and Ontological Indeterminacy. Cham: Springer. pp. 283-302.
    I distinguish between two different ways in which the wavefunction might play a role in explaining the behavior of quantum systems and argue that a satisfactory account of quantum ontology will make it possible for the wavefunction to explain the behavior of quantum systems in both of these way. I then show how this constraint has the potential to impact two quite different accounts of quantum ontology.
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  39.  20
    Werner Heisenberg’s Position on a Hypothetical Conception of Science.Gregor Schiemann - 2009 - In Michael Heidelberger & Gregor Schiemann (eds.), The Significance of the Hypothetical in Natural Science. De Gruyter. pp. 251-268.
    Werner Heisenberg made an important – and as yet insufficiently researched – contribution to the transformation of the modern conception of science. This transformation involved a reassessment of the status of scientific knowledge from certain to merely hypothetical – an assessment that is widely recognized today. I examine Heisenberg’s contribution in particular by taking his conception of “closed theories” as an example according to which the established physical theories have no universal and exclusive, but only a restricted validity. (...)
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  40. Ecological Hermeneutic Phenomenology: A Method to Explore the Ontic and Ontological Structures of Technologies in the World.Vincent Blok - 2024 - In Bas de Boer & Jochem Zwier (eds.), PHENOMENOLOGY AND THE PHILOSOPHY OF TECHNOLOGY. openbook publishers. pp. 27-51.
    In this chapter, we propose an ecological hermeneutic phenomenology to study both the ontic and ontological structures of new and emerging technologies. In section 2, we first consult the traditional concept of phenomenology to find an entry point for our methodological considerations. It will become clear that Heidegger provides a progressive concept of hermeneutic phenomenology, although we are critical of his essentialism and linguistic focus in which there seems to be no room for the phenomenological consideration of ontic (...)
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  41. Idea of Becoming & Educational Concepts of Freedom & Discipline.Baiju P. Anthony - manuscript
    Whitehead formulated his metaphysics of becoming (organism) in contrast to the materialistic outlook of nature. According to Whitehead, the philosophy of Locke influenced the formation of a static notion of reality. For Locke, one primary substance cannot be a component in constituting the nature of another primary being. Aristotle’s logic that emphasized metaphysics alone resulted in the bifurcation of nature. Scientific materialism concerns a scientific cosmological vision of the universe. What is fundamental in the cosmos is matter, mere brute. Matter (...)
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  42. The Loss of World in the Image. Origin and Development of the Concept of Image in the Thought of Hermann von Helmholtz and Heinrich Hertz.Gregor Schiemann - 1998 - In D. Baird (ed.), Heinrich Hertz. Classical Physicist, Modern Philosopher. Boston Studies in the Philosophy of Science. Kluwer Academic Publishers.
    In searching for the origins of current conceptions of science in the history of physics, one encounters a remarkable phenomenon. A typical view today is that theoretical knowledge-claims have only relativized validity. Historically, however, this thesis was supported by proponents of a conception of nature that today is far from typical, a mechanistic conception within which natural phenomena were to be explained by the action of mechanically moved matter. Two of these proponents, Hermann von Helmholtz and his pupil (...)
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  43. The Way of Nonacquisition: Jizang's Philosophy of Ontic Indeterminacy.Chien-Hsing Ho - 2014 - In Chen-Kuo Lin & Michael Radich (eds.), A Distant Mirror: Articulating Indic Ideas in Sixth and Seventh Century Chinese Buddhism. Hamburg University Press. pp. 397-418.
    For Jizang (549−623), a prominent philosophical exponent of Chinese Madhyamaka, all things are empty of determinate form or nature. Given anything X, no linguistic item can truly and conclusively be applied to X in the sense of positing a determinate form or nature therein. This philosophy of ontic indeterminacy is connected closely with his notion of the Way (dao), which seems to indicate a kind of ineffable principle of reality. However, Jizang also equates the Way with nonacquisition as a (...)
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  44. A natural concept of time 20210210.Jean-Louis Boucon - 2020 - Published.
    "The earth revolved around the sun long before man and all conscious beings appeared on its surface." Yes really, how could I imagine otherwise? The problem is precisely in the : "How could I imagine?" The difficulty is indeed twofold: 1) Whenever we represent the world without our presence, whether it is the earth a hundred million years ago or a Cartesian space only flanked by its 3 axes, we are in reality at the very center of this representation. 2) (...)
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  45. Concepts, strategies and mechanisms of economic systems management in the context of modern world challenges.Grigorii Vazov (ed.) - 2021 - VUZF Publishing House “St. Grigorii Bogoslov”.
    The results of the authors’ research in a scientific monograph are devoted to solving the problems of forming and improving new concepts and strategies for managing economic systems, and mechanisms for their implementation in the context of modern world challenges to society on the basis of models of managing economic entities. An important component of the scientific monograph is the formation of modern strategies for increasing the competitiveness of economic systems, improving corporate structures, innovative restructuring of enterprises, ensuring environmental (...)
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  46. Ontic Indeterminacy: Chinese Madhyamaka in the Contemporary Context.Chien-Hsing Ho - 2020 - Australasian Journal of Philosophy 98 (3):419-433.
    A number of analytical philosophers have recently endorsed the view that the world itself is indeterminate in some respect. Intriguingly, ideas similar to the view are expressed by thinkers from Chinese Madhyamaka Buddhism, which may shed light on the current discussion of worldly indeterminacy. Using as a basis Chinese Madhyamaka thought, together with Jessica Wilson’s account of indeterminacy, I develop an ontological conception of indeterminacy, termed ontic indeterminacy, which centres on two complementary ideas—conclusive indeterminability and provisional determinability. I (...)
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  47. What is a Number? Re-Thinking Derrida's Concept of Infinity.Joshua Soffer - 2007 - Journal of the British Society for Phenomenology 38 (2):202-220.
    Iterability, the repetition which alters the idealization it reproduces, is the engine of deconstructive movement. The fact that all experience is transformative-dissimulative in its essence does not, however, mean that the momentum of change is the same for all situations. Derrida adapts Husserl's distinction between a bound and a free ideality to draw up a contrast between mechanical mathematical calculation, whose in-principle infinite enumerability is supposedly meaningless, empty of content, and therefore not in itself subject to alteration through contextual change, (...)
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  48. On Heidegger's Concept of Freedom: Dasein's Essence and the Determinism of Technology.Vincent Casil - 2015 - Lux Veritatis: Journal of Interdisciplinary Studies 1 (1):137-149.
    The paper argues that Feenberg‘s critique of Heidegger is rather erroneous. Against his accusation that Heidegger is determinist, the Dasein rather exemplifies a radical freedom from technology‘s enframing. Dasein holds a freedom as it has the capacity to be free, not only from the technological devices and attitudes, but also from the ontology of enframing, which is founded to what Heidegger historically described as forgetfulness of Being, where Being is treated only as entities or beings. Feenberg rather misreads Heidegger‘s essence (...)
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  49. Heideggerian Epistemology as a Source of Kuhn's Concept of the Growth of Knowledge.Rinat Nugayev & Tanzilia Burganova - 2016 - Italian Science Review 1 (34):156-167.
    The claim that we want to put forward is that Thomas Kuhn ’s growth of knowledge concept is drawn upon Heidegger’s epistemology. To bolster the tenet the corresponding works of both thinkers are considered. As a result, the one-to-one correspondence between the key propositions of Heideggerian epistemology and the basic tenets of Kuhn ’s growth of knowledge model is dawned. The tenets under consideration include the holistic nature of a paradigm, the incommensurability thesis, conventional status of a paradigm caused by (...)
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  50. Ontic Explanation Is either Ontic or Explanatory, but Not Both.Cory Wright & Dingmar van Eck - 2018 - Ergo: An Open Access Journal of Philosophy 5:997–1029.
    What features will something have if it counts as an explanation? And will something count as an explanation if it has those features? In the second half of the 20th century, philosophers of science set for themselves the task of answering such questions, just as a priori conceptual analysis was generally falling out of favor. And as it did, most philosophers of science just moved on to more manageable questions about the varieties of explanation and discipline-specific scientific explanation. Often, such (...)
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