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  1. The role of imagination in creativity.Dustin Stokes - 2014 - In Elliot Samuel Paul & Scott Barry Kaufman (eds.), The Philosophy of Creativity. New York: Oxford University Press.
  • The Routledge Handbook of the Philosophy of Imagination.Amy Kind (ed.) - 2016 - New York: Routledge.
    Imagination occupies a central place in philosophy, going back to Aristotle. However, following a period of relative neglect there has been an explosion of interest in imagination in the past two decades as philosophers examine the role of imagination in debates about the mind and cognition, aesthetics and ethics, as well as epistemology, science and mathematics. This outstanding _Handbook_ contains over thirty specially commissioned chapters by leading philosophers organised into six clear sections examining the most important aspects of the philosophy (...)
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  • Imagination.Tamar Szabó Gendler - 2012 - In Peter Adamson (ed.), Stanford Encyclopedia of Philosophy. Stanford Encyclopedia of Philosophy.
  • Capturing the scientific imagination.Fiora Salis & Roman Frigg - 2019 - In Arnon Levy & Peter Godfrey-Smith (eds.), The Scientific Imagination. New York, US: Oup Usa.
  • On the Identity of Thought Experiments: Thought Experiments Rethought.Alisa Bokulich & Mélanie Frappier - 2018 - In Michael T. Stuart, Yiftach Fehige & James Robert Brown (eds.), The Routledge Companion to Thought Experiments. London: Routledge.
  • Recreative Minds: Imagination in Philosophy and Psychology.Gregory Currie & Ian Ravenscroft - 2002 - Oxford, GB: Oxford University Press. Edited by Christoph Hoerl.
    Recreative Minds develops a philosophical theory of imagination that draws upon the latest work in psychology. This theory illuminates the use of imagination in coming to terms with art, its role in enabling us to live as social beings, and the psychological consequences of disordered imagination. The authors offer a lucid exploration of a fascinating subject.
  • The theory of relativity and a priori knowledge.Hans Reichenbach - 1965 - Berkeley,: University of California Press. Edited by Maria Reichenbach.
    The Theory of Relativity and A Priori Knowledge will hereafter be cited as "RAK. " The German edition is out of print. 2 H. Reichenbach, The Philosophy of ...
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  • Thought Experiment in the Natural Sciences. An Operational and Reflective-Transcendental Conception.Marco Buzzoni - 2008 - Würzburg, Germany: Königshausen+Neumann.
    This work interprets the notion of thought experiment (TE) from the viewpoint of a functional reading of the a priori, that is, an a priori that is devoid of any particular content. It is true that Kant ascribes some content to the (synthetic) a priori, but only a functional reading of the a priori agrees with the spirit of Kant's philosophy and can be used for developing a consistent account of TEs. On the basis of this concept of the a (...)
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  • Metaphysics and measurement.Alexandre Koyré - 1968 - Langhorne, Pa.: Gordon and Breach Science Publishers.
    This collection of six essays centers on Professor Koyre;'s great theme: the relative importance of metaphysics and observation, with controlled experiment a kind of marriage between the two. Professor Koyre;'s thesis might be summed up as a claim that when one is seeking to explain the scientific revolution, attention must be concentrated on the philosophical outlook of the scientist and away from speculative theories. At the time of his death, Alexandre Koyre; was a professor at the Ecole Pratique des Hautes (...)
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  • From Earth to Heaven: Using ‘Newton’s Cannon’ Thought Experiment for Teaching Satellite Physics.Athanasios Velentzas & Krystallia Halkia - 2013 - Science & Education 22 (10):2621-2640.
  • The roles of one thought experiment in interpreting quantum mechanics. Werner Heisenberg meets Thomas Kuhn.Maarten van Dyck - 2003 - Philosophica 72 (3):79-103.
    Recent years saw the rise of an interest in the roles and significance of thought experiments in different areas of human thinking. Heisenberg's gamma ray microscope is no doubt one of the most famous examples of a thought experiment in physics. Nevertheless, this particular thought experiment has not received much detailed attention in the philosophical literature on thought experiments up to date, maybe because of its often claimed inadequacies. In this paper, I try to do two things: to provide an (...)
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  • Scientific Representation: Paradoxes of Perspective.B. C. van Fraassen - 2010 - Analysis 70 (3):511-514.
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  • Scientific Representation: Paradoxes of Perspective.Bas C. Van Fraassen - 2008 - Oxford, GB: Oxford University Press UK.
  • Introduction: Knowledge through imagination.René van Woudenberg - 2006 - Metaphilosophy 37 (2):151–161.
    This introduction presents an overview of the articles in this special issue, within the framework of an argument for the conclusion that there are various roads leading from imagination to knowledge.
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  • “What if…”: The Use of Conceptual Simulations in Scientific Reasoning.Susan Bell Trickett & J. Gregory Trafton - 2007 - Cognitive Science 31 (5):843-875.
    The term conceptual simulation refers to a type of everyday reasoning strategy commonly called “what if” reasoning. It has been suggested in a number of contexts that this type of reasoning plays an important role in scientific discovery; however, little direct evidence exists to support this claim. This article proposes that conceptual simulation is likely to be used in situations of informational uncertainty, and may be used to help scientists resolve that uncertainty. We conducted two studies to investigate the relationship (...)
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  • Connecting internal and external representations: Spatial transformations of scientific visualizations. [REVIEW]J. Gregory Trafton, Susan B. Trickett & Farilee E. Mintz - 2005 - Foundations of Science 10 (1):89-106.
    Many scientific discoveries have depended on external diagrams or visualizations. Many scientists also report to use an internal mental representation or mental imagery to help them solve problems and reason. How do scientists connect these internal and external representations? We examined working scientists as they worked on external scientific visualizations. We coded the number and type of spatial transformations (mental operations that scientists used on internal or external representations or images) and found that there were a very large number of (...)
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  • Are theories of imagery theories of imagination? An active perception approach to conscious mental content.Nigel J. T. Thomas - 1999 - Cognitive Science 23 (2):207-245.
    Can theories of mental imagery, conscious mental contents, developed within cognitive science throw light on the obscure (but culturally very significant) concept of imagination? Three extant views of mental imagery are considered: quasi‐pictorial, description, and perceptual activity theories. The first two face serious theoretical and empirical difficulties. The third is (for historically contingent reasons) little known, theoretically underdeveloped, and empirically untried, but has real explanatory potential. It rejects the “traditional” symbolic computational view of mental contents, but is compatible with recentsituated (...)
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  • The AHA! Experience: Creativity Through Emergent Binding in Neural Networks.Paul Thagard & Terrence C. Stewart - 2011 - Cognitive Science 35 (1):1-33.
    Many kinds of creativity result from combination of mental representations. This paper provides a computational account of how creative thinking can arise from combining neural patterns into ones that are potentially novel and useful. We defend the hypothesis that such combinations arise from mechanisms that bind together neural activity by a process of convolution, a mathematical operation that interweaves structures. We describe computer simulations that show the feasibility of using convolution to produce emergent patterns of neural activity that can support (...)
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  • Taming theory with thought experiments: Understanding and scientific progress.Michael T. Stuart - 2016 - Studies in History and Philosophy of Science Part A 58:24-33.
    I claim that one way thought experiments contribute to scientific progress is by increasing scientific understanding. Understanding does not have a currently accepted characterization in the philosophical literature, but I argue that we already have ways to test for it. For instance, current pedagogical practice often requires that students demonstrate being in either or both of the following two states: 1) Having grasped the meaning of some relevant theory, concept, law or model, 2) Being able to apply that theory, concept, (...)
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  • Heisenberg's microscope—A misleading illustration.Chandrasekhar Roychoudhuri - 1978 - Foundations of Physics 8 (11-12):845-849.
    According to the Rayleigh criterion of classical optics, the finite resolving power of a microscope is due to the width of the central peak of the Fraunhofer diffraction pattern produced by the microscope's finite lens aperture. During the last few decades, theories and techniques for superresolution beyond the Rayleigh criterion have been developed in classical optics. Thus, Heisenberg's microscope could also in principle be made to give superresolution and thereby appear to violate the uncertainty relation. We believe that this paradox (...)
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  • In and About the World: Philosophical Studies of Science and Technology.Hans Radder - 1996 - State University of New York Press.
    Offers a new approach to a number of central issues concerning the theoretical interpretation and normative evaluation of contemporary science and technology.
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  • Furnishing the Mind: Concepts and Their Perceptual Basis.Jesse J. Prinz - 2002 - MIT Press.
  • Furnishing the Mind: Concepts and Their Perceptual Basis.Andrew Woodfield - 2004 - Mind 113 (449):210-214.
  • An Integrative Theory of Prefrontal Cortex Function.Earl K. Miller & Jonathan D. Cohen - 2001 - Annual Review of Neuroscience 24 (1):167-202.
    The prefrontal cortex has long been suspected to play an important role in cognitive control, in the ability to orchestrate thought and action in accordance with internal goals. Its neural basis, however, has remained a mystery. Here, we propose that cognitive control stems from the active maintenance of patterns of activity in the prefrontal cortex that represent goals and the means to achieve them. They provide bias signals to other brain structures whose net effect is to guide the flow of (...)
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  • Mindsight: Image, Dream, Meaning.Colin McGinn - 2004 - Cambridge, Mass.: Harvard University Press.
    The guiding thread of this book is the distinction Colin McGinn draws between perception and imagination.
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  • Colin McGinn, Mindsight: Image, Dream, Meaning. [REVIEW]Dominic Mclver Lopes - 2006 - Philosophical Review 115 (4):543-545.
  • The Value of Knowledge and the Pursuit of Understanding.Michael Huemer - 2004 - Mind 113 (452):763-766.
  • Scientific understanding.Peter Kosso - 2006 - Foundations of Science 12 (2):173-188.
    Knowledge of many facts does not amount to understanding unless one also has a sense of how the facts fit together. This aspect of coherence among scientific observations and theories is usually overlooked in summaries of scientific method, since the emphasis is on justification and verification rather than on understanding. I argue that the inter-theoretic coherence, as the hallmark of understanding, is an essential and informative component of any accurate description of science.
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  • The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1989 - Journal of Aesthetics and Art Criticism 47 (4):400-401.
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  • Conceivability and Possibility.J. Divers - 2004 - Mind 113 (450):347-351.
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  • Conceivability and Possibility.Tamar Gendler & John Hawthorne (eds.) - 2002 - New York: Oxford University Press.
    The capacity to represent things to ourselves as possible plays a crucial role both in everyday thinking and in philosophical reasoning; this volume offers much-needed philosophical illumination of conceivability, possibility, and the relations between them.
  • On the method of theoretical physics.Albert Einstein - 1934 - Philosophy of Science 1 (2):163-169.
    If you wish to learn from the theoretical physicist anything about the methods which he uses, I would give you the following piece of advice: Don't listen to his words, examine his achievements. For to the discoverer in that field, the constructions of his imagination appear so necessary and so natural that he is apt to treat them not as the creations of his thoughts but as given realities.
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  • Recreative Minds.S. Nichols - 2004 - Journal of Aesthetics and Art Criticism 62 (4):406-407.
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  • Indeterminacy and the limits of classical concepts: The transformation of Heisenberg's thought.Kristian Camilleri - 2007 - Perspectives on Science 15 (2):178-201.
    : This paper examines the transformation which occurs in Heisenberg's understanding of indeterminacy in quantum mechanics between 1926 and 1928. After his initial but unsuccessful attempt to construct new quantum concepts of space and time, in 1927 Heisenberg presented an operational definition of concepts such as 'position' and 'velocity'. Yet, after discussions with Bohr, he came to the realisation that classical concepts such as position and momentum are indispensable in quantum mechanics in spite of their limited applicability. This transformation in (...)
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  • Thought Experiments in Philosophy: A Neo-Kantian and Experimentalist Point of View.Marco Buzzoni - 2019 - Topoi 38 (4):771-779.
    The paper addresses the question of the nature and limits of philosophical thought experiments. On the one hand, experimental philosophers are right to claim that we need much more laboratory work in order to have more reliable thought experiments, but on the other hand a naturalism that is too radical is incapable of clarifying the peculiarity of thought experiments in philosophy. Starting from a historico-critical reconstruction of Kant’s concept of the “experiments of pure reason”, this paper outlines an account of (...)
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  • The Role of Conscious Attention in Perception: Immanuel Kant, Alonzo Church, and Neuroscience.Hermann G. W. Burchard - 2011 - Foundations of Science 16 (1):67-99.
    Impressions, energy radiated by phenomena in the momentary environmental scene, enter sensory neurons, creating in afferent nerves a data stream. Following Kant, by our inner sense the mind perceives its own thoughts as it ties together sense data into an internalized scene. The mind, residing in the brain, logically a Language Machine, processes and stores items as coded grammatical entities. Kantian synthetic unity in the linguistic brain is able to deliver our experience of the scene as we appear to see (...)
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  • Mara Beller, Quantum Dialogue – The Making of a Revolution. [REVIEW]Henk W. de Regt - 2002 - Erkenntnis 56 (2):247-252.
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  • Quantum Dialogue: The Making of a Revolution.Mara Beller - 1999 - University of Chicago Press.
    "Science is rooted in conversations," wrote Werner Heisenberg, one of the twentieth century's great physicists. In Quantum Dialogue, Mara Beller shows that science is rooted not just in conversation but in disagreement, doubt, and uncertainty. She argues that it is precisely this culture of dialogue and controversy within the scientific community that fuels creativity. Beller draws her argument from her radical new reading of the history of the quantum revolution, especially the development of the Copenhagen interpretation. One of several competing (...)
  • Cognitive penetration, hypnosis and imagination.Valtteri Arstila - 2017 - Analysis 77 (1):3-10.
    The thesis of cognitive penetrability, according to which cognitive states can affect perceptual experiences, remains the topic of intense debate among philosophers. A new candidate for a case of cognitive penetration is presented and defended. The candidate is based on studies involving suggestions that something is a certain way, which are usually given under hypnosis, rather than mere request to imagine that things are a certain way.
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  • A Teaching–Learning Sequence for the Special Relativity Theory at High School Level Historically and Epistemologically Contextualized.Irene Arriassecq & Ileana María Greca - 2012 - Science & Education 21 (6):827-851.
  • The Routledge Companion to Thought Experiments.Michael T. Stuart, Yiftach Fehige & James Robert Brown (eds.) - 2018 - London: Routledge.
    Thought experiments are a means of imaginative reasoning that lie at the heart of philosophy, from the pre-Socratics to the modern era, and they also play central roles in a range of fields, from physics to politics. The Routledge Companion to Thought Experiments is an invaluable guide and reference source to this multifaceted subject. Comprising over 30 chapters by a team of international contributors, the Companion covers the following important areas: -/- · the history of thought experiments, from antiquity to (...)
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  • Philosophy in the Flesh: the Embodied Mind & its Challenge to Western Thought.George Lakoff (ed.) - 1999 - Basic Books.
    Reexamines the Western philosophical tradition, looking at the basic concepts of the mind, time, causation, morality, and the self.
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  • Geometrie und Erfahrung.Albert Einstein - 1921 - Akademie der Wissenschaften, in Kommission Bei W. De Gruyter.
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  • The mathematician's mind: the psychology of invention in the mathematical field.Jacques Hadamard - 1945 - Princeton, N.J.: Princeton University Press.
    Fifty years ago when Jacques Hadamard set out to explore how mathematicians invent new ideas, he considered the creative experiences of some of the greatest thinkers of his generation, such as George Polya, Claude Le;vi-Strauss, and Albert Einstein. It appeared that inspiration could strike anytime, particularly after an individual had worked hard on a problem for days and then turned attention to another activity. In exploring this phenomenon, Hadamard produced one of the most famous and cogent cases for the existence (...)
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  • Knowledge Through Imagination.Amy Kind & Peter Kung (eds.) - 2016 - Oxford, United Kingdom: Oxford University Press UK.
    Imagination is celebrated as our vehicle for escape from the mundane here and now. It transports us to distant lands of magic and make-believe, and provides us with diversions during boring meetings or long bus rides. Yet the focus on imagination as a means of escape from the real world minimizes the fact that imagination seems also to furnish us with knowledge about it. Imagination seems an essential component in our endeavor to learn about the world in which we live--whether (...)
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  • The Rational Imagination: How People Create Alternatives to Reality.Ruth M. J. Byrne - 2005 - MIT Press.
    A leading scholar in the psychology of thinking and reasoning argues that the counterfactual imagination—the creation of "if only" alternatives to ...
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  • The Brain and the Meaning of Life.Paul Thagard - 2010 - Princeton University Press.
    The book integrates decades of multidisciplinary research, but its clear explanations and humor make it accessible to the general reader.
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  • The Value of Knowledge and the Pursuit of Understanding.Jonathan L. Kvanvig - 2003 - Cambridge University Press.
    Epistemology has for a long time focused on the concept of knowledge and tried to answer questions such as whether knowledge is possible and how much of it there is. Often missing from this inquiry, however, is a discussion on the value of knowledge. In The Value of Knowledge and the Pursuit of Understanding Jonathan Kvanvig argues that epistemology properly conceived cannot ignore the question of the value of knowledge. He also questions one of the most fundamental assumptions in epistemology, (...)
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  • The Laboratory of the Mind: Thought Experiments in the Natural Sciences.James Robert Brown - 1991 - New York: Routledge.
    Newton's bucket, Einstein's elevator, Schrödinger's cat – these are some of the best-known examples of thought experiments in the natural sciences. But what function do these experiments perform? Are they really experiments at all? Can they help us gain a greater understanding of the natural world? How is it possible that we can learn new things just by thinking? In this revised and updated new edition of his classic text _The Laboratory of the Mind_, James Robert Brown continues to defend (...)
  • Thought Experimenting as Mental Modeling.Nancy J. Nersessian - 2007 - Croatian Journal of Philosophy 7 (2):125-161.
    The paper argues that the practice of thought experintenting enables scientists to follow through the implications of a way of representing nature by simulating an exemplary or representative situation that is feasible within that representation. What distinguishes thought experimenting from logical argument and other forms of propositional reasoning is that reasoning by means of a thought experiment involves constructing and simulating a mental model of a representative situation. Although thought experimenting is a creative part of scientific practice, it is a (...)
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