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  1. Timelines: Short Essays and Verse in the Philosophy of Time.Edward A. Francisco - forthcoming - Morrisville, North Carolina: Lulu Press.
    Timelines is an inquiry into the nature of time, both as an apparent feature of the external physical world and as a fundamental feature of our experience of ourselves in the world. The principal argument of Timelines is that our coventional ideas about time are largely mistaken and that what we think of as independent physical time is actually our calibration of a certain relation between events. Namely, the relation between time-keeping events and the causal sequential differences of physical processes (...)
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  • Causality.Jessica M. Wilson - 2005 - In Sahotra Sarkar & Jessica Pfeifer (eds.), The Philosophy of Science: An Encyclopedia. New York: Routledge. pp. 90--100.
    Arguably no concept is more fundamental to science than that of causality, for investigations into cases of existence, persistence, and change in the natural world are largely investigations into the causes of these phenomena. Yet the metaphysics and epistemology of causality remain unclear. For example, the ontological categories of the causal relata have been taken to be objects (Hume 1739), events (Davidson 1967), properties (Armstrong 1978), processes (Salmon 1984), variables (Hitchcock 1993), and facts (Mellor 1995). (For convenience, causes and effects (...)
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  • Autonomous Systems and the Place of Biology Among Sciences. Perspectives for an Epistemology of Complex Systems.Leonardo Bich - 2021 - In Gianfranco Minati (ed.), Multiplicity and Interdisciplinarity. Essays in Honor of Eliano Pessa. Springer. pp. 41-57.
    This paper discusses the epistemic status of biology from the standpoint of the systemic approach to living systems based on the notion of biological autonomy. This approach aims to provide an understanding of the distinctive character of biological systems and this paper analyses its theoretical and epistemological dimensions. The paper argues that, considered from this perspective, biological systems are examples of emergent phenomena, that the biological domain exhibits special features with respect to other domains, and that biology as a discipline (...)
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  • Nihilism, But Not Necessarily.Naomi Dershowitz - 2020 - Erkenntnis:1-16.
    It’s widely accepted that we have most reason to accept theories that best fulfill the following naturalistically respectable criteria: internal consistency, consistency with the facts, and exemplification of the theoretical virtues. It’s also widely accepted that metaphysical theories are necessarily true. I argue that if you accept the aforementioned criteria, you have most reason to reject that metaphysical theories are necessarily true. By applying the criteria to worlds that are all prima facie possible, I show that contingent local matters of (...)
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  • Nihilism, But Not Necessarily.Naomi Dershowitz - 2022 - Erkenntnis 87 (5):2441-2456.
    It’s widely accepted that we have most reason to accept theories that best fulfill the following naturalistically respectable criteria: (1) internal consistency, (2) consistency with the facts, and (3) exemplification of the theoretical virtues. It’s also widely accepted that metaphysical theories are necessarily true. I argue that if you accept the aforementioned criteria, you have most reason to reject that metaphysical theories are necessarily true. By applying the criteria to worlds that are all prima facie possible, I show that contingent (...)
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  • A Non-Spatial Reality.Massimiliano Sassoli de Bianchi - 2020 - Foundations of Science 26 (1):143-170.
    It is generally assumed, and usually taken for granted, that reality is fully contained in space. However, when taking a closer look at the strange behavior of the entities of the micro-world, we are forced to abandon such a prejudice and recognize that space is just a temporary crystallization of a small theatre for reality, where the material entities can take a place and meet with each other. More precisely, phenomena like quantum entanglement, quantum interference effects and quantum indistinguishability, when (...)
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  • Social Forecasting and Elusive Reality: Our World as a Social Construct.T. V. Danylova - 2022 - Anthropological Measurements of Philosophical Research 22:67-79.
    _Purpose._ The paper attempts to investigate the constructivist approach to the social world and its implications for social forecasting. _Theoretical basis._ Social forecasting is mainly based on the idea that a human is "determined ontologically". Using the methodology of the natural sciences, most predictions and forecasts fail to encompass all the multiplicity and variability of the future. The postmodern interpretation of reality gave impetus to the development of the new approaches to it. A constructivist approach to social reality began to (...)
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  • Quantum tunneling times: A crucial test for the causal program? [REVIEW]James T. Cushing - 1995 - Foundations of Physics 25 (2):269-280.
    It is generally believed that Bohm's version of quantum mechanics is observationally equivalent to standard quantum mechanics. A more careful statement is that the two theories will always make the same predictions for any question or problem that is well posed in both interpretations. The transit time of a “particle” between two points in space is not necessarily well defined in standard quantum mechanics, whereas it is in Bohm's theory since there is always a particle following a definite trajectory. For (...)
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  • Conversations Across Meaning Variance.Alberto Cordero - 2013 - Science & Education 22 (6):1305-1313.
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  • El problema interpretativo de la mecánica cuántica. Interpretación minimal e interpretaciones totales.Alejandro Cassini - 2016 - Revista de Humanidades de Valparaíso 8:9-42.
    In this paper I contend that standard quantum theory has a minimal interpretation, on which all physicists agree. That interpretation is sufficient for every application of quantum theory and it has been confirmed by a countless number of experiments. However, it provides neither an overall picture of the quantum world nor an intended ontology for quantum theory. For those reasons, several full interpretations have been proposed in order to complete the minimal interpretation. I then argue that those interpretations –which are (...)
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  • Who Wants a Postmodern Physics?Cathryn Carson - 1995 - Science in Context 8 (4):635-655.
    The ArgumentTheorists of science and culture, seeking to explicate the implications of chaos theory, quantum mechanics, or special and general relativity, have drawn parallels to the constellation of intellectual and social phenomena collected in the concept of postmodernism. The notion thereby invoked of a postmodern physics is suggestive and worth exploring. But it remains ungrounded so long as the argument moves in the realm of parallels. Moreover, these discussions prove to be tacitly constrained by a preexisting genre of physicists' own (...)
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  • Quantum Cognition: Key Issues and Discussion.Jerome R. Busemeyer & Zheng Wang - 2014 - Topics in Cognitive Science 6 (1):43-46.
    Quantum cognition is an emerging field that uses mathematical principles of quantum theory to help formalize and understand cognitive systems and processes. The topic on the potential of using quantum theory to build models of cognition (Volume 5, issue 4) introduces and synthesizes its new development through an introduction and six core articles. The current issue presents 14 commentaries on the core articles. Five key issues surface, some of which are interestingly controversial and debatable as expected for a new emerging (...)
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  • Causality: A rejoinder.Mario Bunge - 1962 - Philosophy of Science 29 (3):306-317.
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  • Under the spell of Bohr. [REVIEW]Jeffrey Bub - 1973 - British Journal for the Philosophy of Science 24 (1):78-90.
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  • Quantum computation and the untenability of a “No fundamental mentality” constraint on physicalism.Christopher Devlin Brown - 2022 - Synthese 201 (1):1-18.
    Though there is yet no consensus on the right way to understand ‘physicalism’, most philosophers agree that, regardless of whatever else is required, physicalism cannot be true if there exists fundamental mentality. I will follow Jessica Wilson (Philosophical Studies 131:61–99, 2006) in calling this the 'No Fundamental Mentality' (NFM) constraint on physicalism. Unfortunately for those who wish to constrain physicalism in this way, NFM admits of a counterexample: an artificially intelligent quantum computer which employs quantum properties as part of its (...)
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  • Quantum Mechanics and 3 N - Dimensional Space.Bradley Monton - 2006 - Philosophy of Science 73 (5):778-789.
    I maintain that quantum mechanics is fundamentally about a system of N particles evolving in three-dimensional space, not the wave function evolving in 3N-dimensional space.
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  • A new theory of the relationship of mind and matter.David J. Bohm - 1986 - Journal of the American Society for Psychical Research 80 (2 & 3):113-35.
    The relationship of mind and matter is approached in a new way in this article. This approach is based on the causal interpretation of the quantum theory, in which an electron, for example, is regarded as an inseparable union of a particle and afield. This field has, however, some new properties that can be seen to be the main sources of the differences between the quantum theory and the classical (Newtonian) theory. These new properties suggest that the field may be (...)
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  • The Identification of Mean Quantum Potential with Fisher Information Leads to a Strong Uncertainty Relation.Yakov Bloch & Eliahu Cohen - 2022 - Foundations of Physics 52 (6):1-11.
    The Cramér–Rao bound, satisfied by classical Fisher information, a key quantity in information theory, has been shown in different contexts to give rise to the Heisenberg uncertainty principle of quantum mechanics. In this paper, we show that the identification of the mean quantum potential, an important notion in Bohmian mechanics, with the Fisher information, leads, through the Cramér–Rao bound, to an uncertainty principle which is stronger, in general, than both Heisenberg and Robertson–Schrödinger uncertainty relations, allowing to experimentally test the validity (...)
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  • Quantum Mechanics and the Plight of Physicalism.Fernando Birman - 2009 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 40 (2):207-225.
    The literature on physicalism often fails to elucidate, I think, what the word physical in physical ism precisely means. Philosophers speak at times of an ideal set of fundamental physical facts, or they stipulate that physical means non-mental , such that all fundamental physical facts are fundamental facts pertaining to the non-mental. In this article, I will probe physicalism in the very much tangible framework of quantum mechanics. Although this theory, unlike “ideal physics” or some “final theory of non-mentality”, is (...)
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  • Passive Knowledge: How to Make Sense of Kant's A Priori——Or How Not to Be “Too Busily Subsuming”.Constantin Antonopoulos - 2011 - Open Journal of Philosophy 1 (2):39.
    Subjectivists, taking the “collapse” of the observation-interpretation contrast much too seriously, are led to imagine that even perceptual knowledge is active. And therefore subject dependent. Turning the tables on this popular trend, I argue that even conceptual knowledge is passive. Kant’s epistemology is conceptual. But if also active, then incoherent. If synthetic a priori truths are to follow upon our mental activity, they were neither true nor, far less, a priori before that activity. “A priori” and “active” are contradictory attributes (...)
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  • A Gaussian revolution in logic?J. Almog - 1982 - Erkenntnis 17 (1):47 - 84.
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  • Speculations and theories.Peter Alexander - 1963 - Synthese 15 (1):187 - 203.
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  • Many-Measurements or Many-Worlds? A Dialogue.Diederik Aerts & Massimiliano Sassoli de Bianchi - 2015 - Foundations of Science 20 (4):399-427.
    Many advocates of the Everettian interpretation consider that theirs is the only approach to take quantum mechanics really seriously, and that this approach allows to deduce a fantastic scenario for our reality, one that consists of an infinite number of parallel worlds that branch out continuously. In this article, written in dialogue form, we suggest that quantum mechanics can be taken even more seriously, if the many-worlds view is replaced by a many-measurements view. This allows not only to derive the (...)
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  • The British Journal for the Philosophy of Science | Vol 74, No 4. [REVIEW] Various - 1998 - British Journal for the Philosophy of Science 49 (3):527-529.
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  • Why Bohm was never a determinist.Marij Van Strien - 2023 - In Andrea Oldofredi (ed.), Guiding Waves In Quantum Mechanics: 100 Years of de Broglie-Bohm Pilot-Wave Theory. Oxford University Press.
    Bohm’s interpretation of quantum mechanics has generally been received as an attempt to restore the determinism of classical physics. However, although this interpretation, as Bohm initially proposed it in 1952, does indeed have the feature of being deterministic, for Bohm this was never the main point. In fact, in other publications and in correspondence from this period, he argued that the assumption that nature is deterministic is unjustified and should be abandoned. Whereas it has been argued before that Bohm’s commitment (...)
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  • Reason, causation and compatibility with the phenomena.Basil Evangelidis - 2020 - Wilmington, Delaware, USA: Vernon Press.
    'Reason, Causation and Compatibility with the Phenomena' strives to give answers to the philosophical problem of the interplay between realism, explanation and experience. This book is a compilation of essays that recollect significant conceptions of rival terms such as determinism and freedom, reason and appearance, power and knowledge. This title discusses the progress made in epistemology and natural philosophy, especially the steps that led from the ancient theory of atomism to the modern quantum theory, and from mathematization to analytic philosophy. (...)
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  • The meaning of the wave function: in search of the ontology of quantum mechanics.Shan Gao - 2017 - New York, NY, USA: Cambridge University Press.
    The meaning of the wave function has been a hot topic of debate since the early days of quantum mechanics. Recent years have witnessed a growing interest in this long-standing question. Is the wave function ontic, directly representing a state of reality, or epistemic, merely representing a state of knowledge, or something else? If the wave function is not ontic, then what, if any, is the underlying state of reality? If the wave function is indeed ontic, then exactly what physical (...)
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  • Supervenience-based formulations of physicalism.Jessica Wilson - 2005 - Noûs 39 (3):426-459.
    The physicalist thesis that all entities are nothing over and above physical entities is often interpreted as appealing to a supervenience-based account of "nothing over and aboveness”, where, schematically, the A-entities are nothing over and above the B-entities if the A-entities supervene on the B-entities. The main approaches to filling in this schema correspond to different ways of characterizing the modal strength, the supervenience base, or the supervenience connection at issue. I consider each approach in turn, and argue that the (...)
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  • The economic organization of science, the firm, and the marketplace.James R. Wible - 1995 - Philosophy of the Social Sciences 25 (1):35-68.
    Among the various institutional structures of an economy like the firm and the marketplace is one that is like no other. Science is unique. This uniqueness raises an important question: why does science exist? From an economic perspective, there are two potentially meaningful approaches to the existence of science. They both encompass institutional pluralism. A substitutes theory of comparative institutions presupposes the primacy of the commercial marketplace over firms—that firms substitute for the market when markets fail. This theory has not (...)
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  • Theories, Models and Constraints.Friedel Weinert - 1999 - Studies in History and Philosophy of Science Part A 30 (2):303-333.
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  • Three Views concerning Human Freedom.John Watkins - 1974 - Royal Institute of Philosophy Lectures 8:200-228.
    Ultimately, the only good reason for restricting the freedom of responsible adults is to protect other people's freedom, to increase the overall enjoyment of freedom.
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  • Three Views concerning Human Freedom.John Watkins - 1974 - Royal Institute of Philosophy Lectures 8:200-228.
    Ultimately, the only good reason for restricting the freedom of responsible adults is to protect other people's freedom, to increase the overall enjoyment of freedom.
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  • Metaphysics and the advancement of science.J. W. N. Watkins - 1975 - British Journal for the Philosophy of Science 26 (2):91-121.
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  • On Holism and The Contextual Character of Natural Qualities.Vuk Uskoković - 2012 - World Futures 68 (6):406 - 429.
    Presented is a discourse on the contextual nature of physical qualities. The realistic and observational contexts in which a system exists are demonstrated as equally involved in defining its qualities. Each quality could be consequently considered as natural and experiential at the same time. The subsequently proposed thesis of the contextual co-definition of natural/experiential qualities in the relationship between the human mind and Nature is shown to possess numerous favorable ethical and aesthetical implications. The contextual nature of experiential qualities is (...)
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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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  • Continuum and discretum—Unified field theory and elementary constants.Hans-Jürgen Treder - 1992 - Foundations of Physics 22 (3):395-420.
    Unitary field theories and “SUPER-GUT” theories work with an universal continuum, the structured spacetime of R. Descartes, B. Spinoza, B. Riemann, and A. Einstein, or a (Machian (1–3) ) structured vacuum according the quantum theory of unitary fields (Dirac, (4,5) and Heisenberg (6–8) ). The atomistic aspect of the substantial world is represented by the fundamental constants which are invariant against “all transformations” and which “depend on nothings” (Planck (9–11) ). A satisfactory unitary theory has to involve these constants like (...)
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  • Debating Realism (s): Marxism and Nyaya-Vaisesika.Manindra Thakur - 2002 - Journal of Critical Realism 5 (1):50-55.
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  • No-Thing and Causality in Realistic Non-Standard Interpretations of the Quantum Mechanical Wave Function: Ex Nihilo Aliquid?Gino Tarozzi & Giovanni Macchia - 2023 - Foundations of Science 28 (1):159-184.
    It has been shown that quantum mechanics in its orthodox interpretation violates four different formulations of causality principle endowed with empirical meaning. The present work aims to highlight how even a realistic non-standard interpretation of the theory conflicts with causality in its Cartesian formulation of the principle of the non-inferiority of causes over effects. Such an interpretation, which attributes some form of weak physical reality to the wave function (called empty wave, regarded as a zero-energy wave-like phenomenon), is a sort (...)
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  • Lagrangian Description for Particle Interpretations of Quantum Mechanics: Entangled Many-Particle Case.Roderick I. Sutherland - 2017 - Foundations of Physics 47 (2):174-207.
    A Lagrangian formulation is constructed for particle interpretations of quantum mechanics, a well-known example of such an interpretation being the Bohm model. The advantages of such a description are that the equations for particle motion, field evolution and conservation laws can all be deduced from a single Lagrangian density expression. The formalism presented is Lorentz invariant. This paper follows on from a previous one which was limited to the single-particle case. The present paper treats the more general case of many (...)
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  • Looking at the Arrow of Time and Loschmidt’s Paradox Through the Magnifying Glass of Mathematical-Billiard.Mario Stefanon - 2019 - Foundations of Physics 49 (10):1231-1251.
    The contrast between the past-future symmetry of mechanical theories and the time-arrow observed in the behaviour of real complex systems doesn’t have nowadays a fully satisfactory explanation. If one confides in the Laplace-dream that everything be exactly and completely describable by the known mechanical differential equations, the whole experimental evidence of the irreversibility of real complex processes can only be interpreted as an illusion due to the limits of human brain and shortness of human history. In this work it is (...)
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  • Nonmonotonic Reasoning and Causation.Yoav Shoham - 1990 - Cognitive Science 14 (2):213-252.
    It is suggested that taking into account considerations that traditionally fall within the scope of computer science in general, and artificial intelligence in particular, sheds new light on the subject of causation. It is argued that adopting causal notions con be viewed as filling a computational need: They allow reasoning with incomplete information, facilitate economical representations, and afford relatively efficient methods for reasoning about those representations. Specifically, it is proposed that causal reasoning is intimately bound to nonmonotonic reasoning. An account (...)
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  • Monism: The Priority of the Whole.Jonathan Schaffer - 2010 - Philosophical Review 119 (1):31-76.
    Consider a circle and a pair of its semicircles. Which is prior, the whole or its parts? Are the semicircles dependent abstractions from their whole, or is the circle a derivative construction from its parts? Now in place of the circle consider the entire cosmos (the ultimate concrete whole), and in place of the pair of semicircles consider the myriad particles (the ultimate concrete parts). Which if either is ultimately prior, the one ultimate whole or its many ultimate parts?
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  • Is there a fundamental level?Jonathan Schaffer - 2003 - Noûs 37 (3):498–517.
    ‘‘Thus I believe that there is no part of matter which is not—I do not say divisible—but actually divided; and consequently the least particle ought to be considered as a world full of an infinity of different creatures.’’ (Leibniz, letter to Foucher).
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  • Ontological Emergence: How is That Possible? Towards a New Relational Ontology.Gil C. Santos - 2015 - Foundations of Science 20 (4):429-446.
    In this article I address the issue of the ontological conditions of possibility for a naturalistic notion of emergence, trying to determine its fundamental differences from the atomist, vitalist, preformationist and potentialist alternatives. I will argue that a naturalistic notion of ontological emergence can only succeed if we explicitly refuse the atomistic fundamental ontological postulate that asserts that every entity is endowed with a set of absolutely intrinsic properties, being qualitatively immutable through its extrinsic relations. Furthermore, it will be shown (...)
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  • Integrated-structure emergence and its mechanistic explanation.Gil Santos - 2020 - Synthese 198 (9):8687-8711.
    This paper proposes an integrated-structure notion of interlevel emergence, from a dynamic relational ontological perspective. First, I will argue that only the individualist essentialism of atomistic metaphysics can block the possibility of interlevel emergence. Then I will show that we can make sense of emergence by recognizing the formation of structures of transformative and interdependent causal relations in the generation and development of a particular class of mereological complexes called integrated systems. Finally, I shall argue that even though the emergent (...)
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  • Soliton model of atom.Yu P. Rybakov & B. Saha - 1995 - Foundations of Physics 25 (12):1723-1731.
    The Einstein-de Broglie soliton concept is applied to simulate stationary states of an electron in a hydrogen atom. According to this concept, the electron is described by the localized regular solutions to some nonlinear equations. It is shown that the electron-solilon center travels along some stationary orbit around the Coulomb center. The electromagnetic radiation is absent as the Poynting vector has non-wave asymptote O(r −3)after averaging over angles.
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  • The physics of David Bohm and its relevance to philosophy and theology.Robert John Russell - 1985 - Zygon 20 (2):135-158.
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  • Reflections on the deBroglie–Bohm Quantum Potential.Peter J. Riggs - 2008 - Erkenntnis 68 (1):21-39.
    The deBroglie–Bohm quantum potential is the potential energy function of the wave field. The quantum potential facilitates the transference of energy from wave field to particle and back again which accounts for energy conservation in isolated quantum systems. Factors affecting energy exchanges and the form of the quantum potential are discussed together with the related issues of the absence of a source term for the wave field and the lack of a classical back reaction.
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  • Short-time stochastic electron.Paul D. Raskin - 1978 - Foundations of Physics 8 (1-2):31-44.
    As in previous stochastic interpretations of quantum mechanics, the electron is treated as a modified Brownian particle. Here, however, the analysis is based on extensions of the short-time Ornstein-Uhlenbeck description of classical Brownian motion, rather than the approximate, long-time Einstein-Smoluchowski treatment utilized in the earlier work. It is shown that Schrödinger's equation with its proper probabilistic interpretation emerges as an asymptotic description of such a system. After reviewing relevant aspects of Brownian motion, the appropriate equation for the displacement distribution in (...)
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  • The Shrew Environment.Juval Portugali - 1994 - Science in Context 7 (2):307-326.
    The ArgumentThe paper begins by addressing the notions of technological pessimism, society and environment from the point of view of geography and planning. It identifies two pessimistic waves in the recent history of geography and planning thought: “technological or explanational pessimism” in the late 1960s and early 1970s, and “understanding pessimism” in the late 1980s. The first is a distrust of positivist geography and rational planning to explain and control the environment; the second adds to the first a distrust of (...)
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