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  1. Wunder verletzen die Naturgesetze nicht.Daniel von Wachter - 2017 - In Benedikt Paul Göcke & Ruben Schneider (eds.), Gottes Handeln in der Welt. Regensburg: Verlag Friedrich Pustet. pp. 361-382.
    Einige versuchen, Wunder mit den Naturgesetzen vereinbar zu machen, indem sie „Wunder“ als etwas anderes als göttliche Eingriffe definieren. Dieser Aufsatz behauptet hin- gegen, daß Wunder die Naturgesetze nicht verletzen, obwohl sie göttliche Eingriffe sind. Wunder sind auch keine „Ausnah- men“ der Naturgesetze, noch treffen die Naturgesetze nicht auf sie zu. Naturgesetze haben nie Ausnahmen, sie werden nie verletzt oder ausgesetzt, sie sind wahrscheinlich notwen- dig und unveränderlich, und sie treffen auch auf göttliche Ein- griffe zu. Wir sollten nicht unsere (...)
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  • Inertial motion, explanation, and the foundations of classical spacetime theories.James Owen Weatherall - 2016 - In Dennis Lehmkuhl, Gregor Schiemann & Erhard Scholz (eds.), Towards a Theory of Spacetime Theories. New York, NY: Birkhauser. pp. 13-42.
    I begin by reviewing some recent work on the status of the geodesic principle in general relativity and the geometrized formulation of Newtonian gravitation. I then turn to the question of whether either of these theories might be said to ``explain'' inertial motion. I argue that there is a sense in which both theories may be understood to explain inertial motion, but that the sense of ``explain'' is rather different from what one might have expected. This sense of explanation is (...)
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  • Must the Fundamental Laws of Physics be Complete?Marc Lange - 2009 - Philosophy and Phenomenological Research 78 (2):312-345.
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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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  • Children can solve Bayesian problems: the role of representation in mental computation.Liqi Zhu & Gerd Gigerenzer - 2006 - Cognition 98 (3):287-308.
  • Einstein, Meyerson and the role of mathematics in physical discovery.Elie Zahar - 1980 - British Journal for the Philosophy of Science 31 (1):1-43.
  • The Role of Symmetry in Mathematics.Noson S. Yanofsky & Mark Zelcer - 2017 - Foundations of Science 22 (3):495-515.
    Over the past few decades the notion of symmetry has played a major role in physics and in the philosophy of physics. Philosophers have used symmetry to discuss the ontology and seeming objectivity of the laws of physics. We introduce several notions of symmetry in mathematics and explain how they can also be used in resolving different problems in the philosophy of mathematics. We use symmetry to discuss the objectivity of mathematics, the role of mathematical objects, the unreasonable effectiveness of (...)
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  • The return of the reinforcement theorists.C. D. L. Wynne - 1994 - Behavioral and Brain Sciences 17 (1):156-156.
  • Laws and causes. [REVIEW]James Woodward - 1990 - British Journal for the Philosophy of Science 41 (4):553-573.
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  • Interventionist Explanation and the Problem of Single Variable Boundary Constraints.Isaac Wilhelm - 2019 - Noûs 54 (4):945-955.
    According to Interventionism, explanations cite invariant relations which hold among multiple variables. Interventionism incorrectly implies, however, that many common scientific explanations—which cite single‐variable boundary constraints—are not actually explanatory. So I propose a different account of explanation, similar in spirit to Interventionism, which gets those cases of scientific explanation right.
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  • A mathematical theory of reinforcement: An unexpected place to find support for analogical memory coding.Donald M. Wilkie & Lisa M. Saksida - 1994 - Behavioral and Brain Sciences 17 (1):155-156.
  • Humeanism and Exceptions in the Fundamental Laws of Physics.Billy Wheeler - 2017 - Principia: An International Journal of Epistemology 21 (3):317-337.
    It has been argued that the fundamental laws of physics do not face a ‘problem of provisos’ equivalent to that found in other scientific disciplines (Earman, Roberts and Smith 2002) and there is only the appearance of exceptions to physical laws if they are confused with differential equations of evolution type (Smith 2002). In this paper I argue that even if this is true, fundamental laws in physics still pose a major challenge to standard Humean approaches to lawhood, as they (...)
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  • Anatomy of an Anomaly.Mark Owen Webb & Suzanne Clark - 1999 - Disputatio (6):3-18.
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  • Fifty years on: The new “principles of behavior”?J. H. Wearden - 1994 - Behavioral and Brain Sciences 17 (1):155-155.
  • How general is a general theory of reinforcement?Stephen F. Walker - 1994 - Behavioral and Brain Sciences 17 (1):154-155.
  • Relational Quantum Mechanics and Probability.M. Trassinelli - 2018 - Foundations of Physics 48 (9):1092-1111.
    We present a derivation of the third postulate of relational quantum mechanics from the properties of conditional probabilities. The first two RQM postulates are based on the information that can be extracted from interaction of different systems, and the third postulate defines the properties of the probability function. Here we demonstrate that from a rigorous definition of the conditional probability for the possible outcomes of different measurements, the third postulate is unnecessary and the Born’s rule naturally emerges from the first (...)
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  • Animal-centered models of reinforcement.William Timberlake - 1994 - Behavioral and Brain Sciences 17 (1):153-154.
  • Metaphysics of the principle of least action.Vladislav Terekhovich - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 62:189-201.
    Despite the importance of the variational principles of physics, there have been relatively few attempts to consider them for a realistic framework. In addition to the old teleological question, this paper continues the recent discussion regarding the modal involvement of the principle of least action and its relations with the Humean view of the laws of nature. The reality of possible paths in the principle of least action is examined from the perspectives of the contemporary metaphysics of modality and Leibniz's (...)
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  • Intrinsic, Extrinsic, and the Constitutive A Priori.László E. Szabó - 2019 - Foundations of Physics:1-13.
    On the basis of what I call physico-formalist philosophy of mathematics, I will develop an amended account of the Kantian–Reichenbachian conception of constitutive a priori. It will be shown that the features attributed to a real object are not possessed by the object as a “thing-in-itself”; they require a physical theory by means of which these features are constituted. It will be seen that the existence of such a physical theory implies that a physical object can possess a property only (...)
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  • Short-term memory in human operant conditioning.Frode Svartdal - 1994 - Behavioral and Brain Sciences 17 (1):152-153.
  • Hegel and the Humean Problem of Induction.W. A. Suchting - 1990 - Studies in History and Philosophy of Science Part A 21 (3):493.
  • Feynman Diagrams: Modeling between Physics and Mathematics.Michael Stöltzner - 2018 - Perspectives on Science 26 (4):482-500.
    Since its inception in the late 1920s and 30s, the main problem of quantum electrodynamics had been that any interaction or scattering event involved processes of a higher order that arose from vacuum polarization, the creation and subsequent annihilation of particle-antiparticle pairs, and the mutual interactions of all those short-lived entities.1 These processes posed two kinds of conceptual problems. First, they were not detectable individually, but had a measurable effect on the energy of the overall process. Even in simple quantum (...)
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  • The scale of nature: Fitted parameters and dimensional correctness.D. W. Stephens - 1994 - Behavioral and Brain Sciences 17 (1):150-152.
  • The applicabilities of mathematics.Mark Steiner - 1995 - Philosophia Mathematica 3 (2):129-156.
    Discussions of the applicability of mathematics in the natural sciences have been flawed by failure to realize that there are multiple senses in which mathematics can be ‘applied’ and, correspondingly, multiple problems that stem from the applicability of mathematics. I discuss semantic, metaphysical, descriptive, and and epistemological problems of mathematical applicability, dwelling on Frege's contribution to the solution of the first two types. As for the remaining problems, I discuss the contributions of Hartry Field and Eugene Wigner. Finally, I argue (...)
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  • Cartwright on laws and composition.David Spurrett - 2000 - International Studies in the Philosophy of Science 15 (3):253 – 268.
    Cartwright attempts to argue from an analysis of the composition of forces, and more generally the composition of laws, to the conclusion that laws must be regarded as false. A response to Cartwright is developed which contends that properly understood composition poses no threat to the truth of laws, even though agreeing with Cartwright that laws do not satisfy the "facticity" requirement. My analysis draws especially on the work of Creary, Bhaskar, Mill, and points towards a general rejection of Cartwright's (...)
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  • The current state of the metaphysics of science debate.Cristian Soto - 2015 - Philosophica 90 (1).
    I examine the current state of the debate on the metaphysics of science. In 1, I identify some of the main questions belonging to the MS, looking into the relationship between science and metaphysics. In 2, I expound the rise of the old wave in the MS, which endorses the belief that metaphysics is a guide to, or a heuristic for, science and outlines the stronger idea that metaphysics makes science possible. In 3, I examine the maximalist MS. This is (...)
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  • Nature's Longing for Beauty: Elegance as an Evolutionary Attractor, with Implications for Human Systems.Charles Smith - 2010 - World Futures 66 (7):504-510.
    (2010). Nature's Longing for Beauty: Elegance as an Evolutionary Attractor, with Implications for Human Systems. World Futures: Vol. 66, No. 7, pp. 504-510.
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  • Practical effects of response specification.Richard L. Shull - 1994 - Behavioral and Brain Sciences 17 (1):150-150.
  • Awareness and reinforcement.Charles P. Shimp - 1994 - Behavioral and Brain Sciences 17 (1):149-150.
  • Information vs. entropy vs. probability.Orly Shenker - 2019 - European Journal for Philosophy of Science 10 (1):1-25.
    Information, entropy, probability: these three terms are closely interconnected in the prevalent understanding of statistical mechanics, both when this field is taught to students at an introductory level and in advanced research into the field’s foundations. This paper examines the interconnection between these three notions in light of recent research in the foundations of statistical mechanics. It disentangles these concepts and highlights their differences, at the same time explaining why they came to be so closely linked in the literature. In (...)
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  • Foundation of statistical mechanics: The auxiliary hypotheses.Orly Shenker - 2017 - Philosophy Compass 12 (12):e12464.
    Statistical mechanics is the name of the ongoing attempt to explain and predict certain phenomena, above all those described by thermodynamics on the basis of the fundamental theories of physics, in particular mechanics, together with certain auxiliary assumptions. In another paper in this journal, Foundations of statistical mechanics: Mechanics by itself, I have shown that some of the thermodynamic regularities, including the probabilistic ones, can be described in terms of mechanics by itself. But in order to prove those regularities, in (...)
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  • Interfering with nomological necessity.Markus Schrenk - 2011 - Philosophical Quarterly 61 (244):577-597.
    Since causal processes can be prevented and interfered with, law-governed causation is a challenge for necessitarian theories of laws of nature. To show that there is a problematic friction between necessity and interference, I focus on David Armstrong's theory; with one proviso, his lawmaker, nomological necessity, is supposed to be instantiated as the causation of the law's second relatum whenever its first relatum is instantiated. His proviso is supposed to handle interference cases, but fails to do so. In order to (...)
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  • A Piecewise Aggregation of Philosophers’ and Biologists’ Perspectives: William C. Wimsatt: Re-Engineering Philosophy for Limited Beings: Piecewise Approximations to Reality; Harvard University Press, Cambridge, 2007, 472 pp., $65.50 hbk, ISBN 978-0-674-01545-6.Werner Callebaut, Martin Schlumpp, Julia Lang, Christoph Frischer, Stephan Handschuh, Miles MacLeod & Isabella Sarto-Jackson - 2016 - Biological Theory 11 (1):1-10.
    Re-Engineering Philosophy for Limited Beings is about new approaches to many of the big topics in philosophy of science today, but with a very different take. To begin with, we are urged to reject the received Cartesian-Laplacean myths: Descartes’ certainty and Laplace’s computational omniscience. Instead, Wimsatt re-engineers a philosophy for human beings with all their cognitive limitations. His approaches find their starting point in the actual practices of scientists themselves, which he strongly identifies with engineering practices as the source of (...)
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  • Memory and the integration of response sequences.Phil Reed - 1994 - Behavioral and Brain Sciences 17 (1):148-149.
  • From overt behavior to hypothetical behavior to memory: Inference in the wrong direction.Howard Rachlin - 1994 - Behavioral and Brain Sciences 17 (1):147-148.
  • Can quantum probability provide a new direction for cognitive modeling?Emmanuel M. Pothos & Jerome R. Busemeyer - 2013 - Behavioral and Brain Sciences 36 (3):255-274.
    Classical (Bayesian) probability (CP) theory has led to an influential research tradition for modeling cognitive processes. Cognitive scientists have been trained to work with CP principles for so long that it is hard even to imagine alternative ways to formalize probabilities. However, in physics, quantum probability (QP) theory has been the dominant probabilistic approach for nearly 100 years. Could QP theory provide us with any advantages in cognitive modeling as well? Note first that both CP and QP theory share the (...)
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  • Plerosis and Atomic Gestalts.Baingio Pinna, Andrea van Doorn & Jan Koenderink - 2017 - Gestalt Theory 39 (1):30-53.
    Summary Franz Brentano, 1838–1917, introduced the intriguing concept of “plerosis” in order to account for aspects of the continuum that were “explained” by formal mathematics in ways that he considered absurd from the perspective of intuition, especially visual awareness and imagery. In doing this, he pointed in directions later developed by the Dutch mathematician Luitzen Brouwer. Brentano’s notion of plerosis involves distinct though coincident points, which one might call “atomic entities with parts”. This notion fits the modern concepts of “receptive (...)
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  • Measures of Prägnanz?Baingio Pinna, Andrea van Doorn & Jan Koenderink - 2018 - Gestalt Theory 40 (1):7-28.
    Summary Prägnanz was suggested by Max Wertheimer in the 1920s as subsuming all “Laws of Gestalt” as they apply to visual awareness. Thus, it assumes a prominent position in any account of Gestalt phenomena. From a phenomenological perspective, some visual stimuli evidently “have more Prägnanz” than others, so Prägnanz seems to be an intensive quality. Here, we investigate the intricacies that need to be faced on the way to a definition of formal scales. Such measures naturally depend both upon the (...)
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  • Problems and pitfalls for Killeen's mathematical principles of reinforcement.Joseph J. Pear - 1994 - Behavioral and Brain Sciences 17 (1):146-147.
  • Making Knowledge in Synthetic Biology: Design Meets Kludge.Maureen A. O’Malley - 2009 - Biological Theory 4 (4):378-389.
    Synthetic biology is an umbrella term that covers a range of aims, approaches, and techniques. They are all brought together by common practices of analogizing, synthesizing, mechanicizing, and kludging. With a focus on kludging as the connection point between biology, engineering, and evolution, I show how synthetic biology’s successes depend on custom-built kludges and a creative, “make-it-work” attitude to the construction of biological systems. Such practices do not fit neatly, however, into synthetic biology’s celebration of rational design. Nor do they (...)
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  • A Rationale for Mixed Methods (Integrative) Research Programmes in Education.Mansoor Niaz - 2008 - Journal of Philosophy of Education 42 (2):287-305.
    Recent research shows that research programmes (quantitative, qualitative and mixed) in education are not displaced (as suggested by Kuhn) but rather lead to integration. The objective of this study is to present a rationale for mixed methods (integrative) research programs based on contemporary philosophy of science (Lakatos, Giere, Cartwright, Holton, Laudan). This historical reconstruction of episodes from physical science (spanning a period of almost 300 years, 17th to 20th century) does not agree with the positivist image of science. Quantitative data (...)
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  • Extension to multiple schedules: Some surprising (and accurate) predictions.John A. Nevin - 1994 - Behavioral and Brain Sciences 17 (1):145-146.
  • Measurement in biology is methodized by theory.Maël Montévil - 2019 - Biology and Philosophy 34 (3):35.
    We characterize access to empirical objects in biology from a theoretical perspective. Unlike objects in current physical theories, biological objects are the result of a history and their variations continue to generate a history. This property is the starting point of our concept of measurement. We argue that biological measurement is relative to a natural history which is shared by the different objects subjected to the measurement and is more or less constrained by biologists. We call symmetrization the theoretical and (...)
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  • A Stochastic Process Model for Free Agency under Indeterminism.Thomas Müller & Hans J. Briegel - 2018 - Dialectica 72 (2):219-252.
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  • Dimensions of scientific law.Sandra D. Mitchell - 2000 - Philosophy of Science 67 (2):242-265.
    Biological knowledge does not fit the image of science that philosophers have developed. Many argue that biology has no laws. Here I criticize standard normative accounts of law and defend an alternative, pragmatic approach. I argue that a multidimensional conceptual framework should replace the standard dichotomous law/ accident distinction in order to display important differences in the kinds of causal structure found in nature and the corresponding scientific representations of those structures. To this end I explore the dimensions of stability, (...)
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  • Killeen's theory provides an answer – and a question.Mary Ann Metzger & Terje Sagvolden - 1994 - Behavioral and Brain Sciences 17 (1):144-145.
  • Did the Universe Have a Chance?C. D. McCoy - 2019 - Philosophy of Science 86 (5):1262-1272.
    In a world awash in statistical patterns, should we conclude that the universe’s evolution or genesis is somehow subject to chance? I draw attention to alternatives that must be acknowledged if we are to have an adequate assessment of what chance the universe might have had.
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  • Fundamentality and Time’s Arrow.Christian Loew - 2018 - Philosophy of Science 85 (3):483-500.
    The distribution of matter in our universe is strikingly time asymmetric. Most famously, the Second Law of Thermodynamics says that entropy tends to increase toward the future but not toward the past. But what explains this time-asymmetric distribution of matter? In this paper, I explore the idea that time itself has a direction by drawing from recent work on grounding and metaphysical fundamentality. I will argue that positing such a direction of time, in addition to time-asymmetric boundary conditions, enables a (...)
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  • Typicality, Irreversibility and the Status of Macroscopic Laws.Dustin Lazarovici & Paula Reichert - 2015 - Erkenntnis 80 (4):689-716.
    We discuss Boltzmann’s probabilistic explanation of the second law of thermodynamics providing a comprehensive presentation of what is called today the typicality account. Countering its misconception as an alternative explanation, we examine the relation between Boltzmann’s H-theorem and the general typicality argument demonstrating the conceptual continuity between the two. We then discuss the philosophical dimensions of the concept of typicality and its relevance for scientific reasoning in general, in particular for understanding the reduction of macroscopic laws to microscopic laws. Finally, (...)
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  • Memories and functional response units.Kennon A. Lattal & Josele Abreu-Rodrigues - 1994 - Behavioral and Brain Sciences 17 (1):143-144.