• PhilPapers
  • PhilPeople
  • PhilArchive
  • PhilEvents
  • PhilJobs
  • Sign in
PhilPeople
 
  • Sign in
  • News Feed
  • Find Philosophers
  • Departments
  • Radar
  • Help
 
profile-cover
Drag to reposition
profile picture

Michael T. Stuart

University of York
  •  Home
  •  Publications
    64
    • Most Recent
    • Most Downloaded
    • Topics
  •  Recommended
    5
  •  Events
    9
  •  News and Updates
    46

 More details
  • University of York
    Department of Philosophy
    Lecturer
University of Toronto, St. George Campus
Institute for the History and Philosophy of Science
PhD, 2015
Email (login required)
Homepage
Heslington, York, United Kingdom of Great Britain and Northern Ireland
0000-0002-4165-2641
Areas of Specialization
Understanding
Theories of Imagination
Explanation in the Sciences
Varieties of Explanation
Theories of Explanation
Explanation
Conceivability, Imagination, and Possibility
Thought Experiments
Imaginative Resistance
Experimental Philosophy
Intuition
History of Physics
7 more
Areas of Interest
Understanding
Theories of Imagination
Explanation in the Sciences
Varieties of Explanation
Theories of Explanation
History of Biology
Explanation
Conceivability, Imagination, and Possibility
Thought Experiments
Experimental Philosophy
Evidence and Knowledge
Intuition
Imaginative Resistance
General Philosophy of Science
History of Physics
10 more
PhilPapers Editorships
Artificial Intelligence in Science
Scientific Imagination
  • All publications (64)
  •  114
    Feyerabend and the Philosophy of Physics
    with Jamie Shaw
    International Studies in the Philosophy of Science 35 (1): 1-4. 2022.
    In a reference letter for Feyerabend’s application to UC Berkeley, Carl Hempel writes that ‘Mr. Feyerabend combines a forceful and penetrating analytic mind with a remarkably thorough training and...
    Science, Logic, and MathematicsPaul Feyerabend
  •  194
    Inclusivity in the Education of Scientific Imagination
    with Hannah Sargeant
    In E. Hildt, K. Laas, C. Miller & E. Brey (eds.), Building Inclusive Ethical Cultures in STEM, Springer Verlag. pp. 267-288. 2024.
    Scientists imagine constantly. They do this when generating research problems, designing experiments, interpreting data, troubleshooting, drafting papers and presentations, and giving feedback. But when and how do scientists learn how to use imagination? Across 6 years of ethnographic research, it has been found that advanced career scientists feel comfortable using and discussing imagination, while graduate and undergraduate students of science often do not. In addition, members of marginalized…Read more
    Scientists imagine constantly. They do this when generating research problems, designing experiments, interpreting data, troubleshooting, drafting papers and presentations, and giving feedback. But when and how do scientists learn how to use imagination? Across 6 years of ethnographic research, it has been found that advanced career scientists feel comfortable using and discussing imagination, while graduate and undergraduate students of science often do not. In addition, members of marginalized and vulnerable groups tend to express negative views about the strength of their imaginations and the general usefulness of imagination in science. After introducing these findings and discussing the typical relationship between a scientist and their imagination across a career, we argue that reducing the number or power of active imaginations in science is epistemically counterproductive. We suggest several ways to bring imagination back into science in a more inclusive way, especially through courses on imagination for scientists, good role models, and exemplar-based learning.
    Feminist Philosophy of ScienceScience and Values, MiscScientific DiscoveryThe Aims of EducationPhilo…Read more
    Feminist Philosophy of ScienceScience and Values, MiscScientific DiscoveryThe Aims of EducationPhilosophy of Higher EducationPhilosophy of Science, General WorksMoral EducationScientific ImaginationEducational AuthorityPhilosophy of Teaching, Misc
  •  157
    Counterpossibles in science: an experimental study
    with Brian McLoone and Cassandra Grützner
    Synthese 201 (1): 1-20. 2023.
    A counterpossible is a counterfactual whose antecedent is impossible. The vacuity thesis says all counterpossibles are true solely because their antecedents are impossible. Recently, some have rejected the vacuity thesis by citing purported non-vacuous counterpossibles in science. One limitation of this work, however, is that it is not grounded in experimental data. Do scientists actually reason non-vacuously about counterpossibles? If so, what is their basis for doing so? We presented biologist…Read more
    A counterpossible is a counterfactual whose antecedent is impossible. The vacuity thesis says all counterpossibles are true solely because their antecedents are impossible. Recently, some have rejected the vacuity thesis by citing purported non-vacuous counterpossibles in science. One limitation of this work, however, is that it is not grounded in experimental data. Do scientists actually reason non-vacuously about counterpossibles? If so, what is their basis for doing so? We presented biologists (N = 86) with two counterfactual formulations of a well-known model in biology, the antecedents of which contain what many philosophers would characterize as a metaphysical impossibility. Participants consistently judged one counterfactual to be true, the other to be false, and they explained that they formed these judgments based on what they perceived to be the mathematical relationship between the antecedent and consequent. Moreover, we found no relationship between participants’ judgments about the (im)possibility of the antecedent and whether they judged a counterfactual to be true or false. These are the first experimental results on counterpossibles in science with which we are familiar. We present a modal semantics that can capture these judgments, and we deal with a host of potential objections that a defender of the vacuity thesis might make.
    Logical Consequence and EntailmentModal LogicPhilosophy of Biology, General WorksExplanation in Biol…Read more
    Logical Consequence and EntailmentModal LogicPhilosophy of Biology, General WorksExplanation in BiologyPossible-World Theories of CounterfactualsExperimental Philosophy of Science
  •  318
    Scientific Models and Thought Experiments: Same Same but Different
    with Rawad El Skaf
    In Tarja Knuuttila, Natalia Carrillo & Rami Koskinen (eds.), The Routledge Handbook of Philosophy of Scientific Modeling, Routledge. 2024.
    The philosophical literatures on models and thought experiments have been developing exponentially, and independently, for decades. This independence is surprising, given how similar models and thought experiments are. They each have “lives of their own,” they sit between theory and experience, they are important for both pedagogy and cutting-edge science, they galvanize conceptual changes and paradigm shifts, and they involve entertaining imaginary scenarios and working out what happens. Recent…Read more
    The philosophical literatures on models and thought experiments have been developing exponentially, and independently, for decades. This independence is surprising, given how similar models and thought experiments are. They each have “lives of their own,” they sit between theory and experience, they are important for both pedagogy and cutting-edge science, they galvanize conceptual changes and paradigm shifts, and they involve entertaining imaginary scenarios and working out what happens. Recently, philosophers have begun to highlight these similarities. This entry aims at taking the idea further, by trying to systematically identify places where insights from one literature can be taken up in the other. Along the way, important differences will also be highlighted.
    Scientific Method, MiscellaneousAnalogy in ScienceModels and ExplanationModeling PracticesThe Nature…Read more
    Scientific Method, MiscellaneousAnalogy in ScienceModels and ExplanationModeling PracticesThe Nature of ModelsScientific RepresentationScientific Practice, MiscScientific ImaginationThought ExperimentsSimulation in Science
  •  169
    Sharpening the tools of imagination
    Synthese 200 (6): 1-22. 2022.
    Thought experiments, models, diagrams, computer simulations, and metaphors can all be understood as tools of the imagination. While these devices are usually treated separately in philosophy of science, this paper provides a unified account according to which tools of the imagination are epistemically good insofar as they improve scientific imaginings. Improving scientific imagining is characterized in terms of epistemological consequences: more improvement means better consequences. A distincti…Read more
    Thought experiments, models, diagrams, computer simulations, and metaphors can all be understood as tools of the imagination. While these devices are usually treated separately in philosophy of science, this paper provides a unified account according to which tools of the imagination are epistemically good insofar as they improve scientific imaginings. Improving scientific imagining is characterized in terms of epistemological consequences: more improvement means better consequences. A distinction is then drawn between tools being good in retrospect, at the time, and in general. In retrospect, tools are evaluated straightforwardly in terms of the quality of their consequences. At the cutting edge, tools are evaluated positively insofar as there is reason to believe that using them will have good consequences. Lastly, tools can be generally good, insofar as their use encourages the development of epistemic virtues, which are good because they have good epistemic consequences.
    Epistemology of ImaginationSimulation in Science
  •  177
    Understanding metaphorical understanding (literally)
    with Daniel Wilkenfeld
    European Journal for Philosophy of Science 12 (3): 1-20. 2022.
    Metaphors are found all throughout science: in published papers, working hypotheses, policy documents, lecture slides, grant proposals, and press releases. They serve different functions, but perhaps most striking is the way they enable understanding, of a theory, phenomenon, or idea. In this paper, we leverage recent advances on the nature of metaphor and the nature of understanding to explore how they accomplish this feat. We attempt to shift the focus away from the epistemic value of the cont…Read more
    Metaphors are found all throughout science: in published papers, working hypotheses, policy documents, lecture slides, grant proposals, and press releases. They serve different functions, but perhaps most striking is the way they enable understanding, of a theory, phenomenon, or idea. In this paper, we leverage recent advances on the nature of metaphor and the nature of understanding to explore how they accomplish this feat. We attempt to shift the focus away from the epistemic value of the content of metaphors, to the epistemic value of the metaphor’s consequences. Many famous scientific metaphors are epistemically good, not primarily because of what they say about the world, but because of how they cause us to think. Specifically, metaphors increase understanding either by improving our sets of representations, or by making it easier for us to encode and process data about complex subjects by changing how we are disposed to conceptualize those subjects. This view hints towards new positions concerning testimonial understanding, factivity, abilities, discovery via metaphor, and the relation between metaphors and models.
    MetaphorScience, Logic, and Mathematics
  •  1479
    Scientists Are Epistemic Consequentialists about Imagination
    Philosophy of Science 90 (3): 518-538. 2023.
    Scientists imagine for epistemic reasons, and these imaginings can be better or worse. But what does it mean for an imagining to be epistemically better or worse? There are at least three metaepistemological frameworks that offer different answers to this question: epistemological consequentialism, deontic epistemology, and virtue epistemology. This paper presents empirical evidence that scientists adopt each of these different epistemic frameworks with respect to imagination, but argues that th…Read more
    Scientists imagine for epistemic reasons, and these imaginings can be better or worse. But what does it mean for an imagining to be epistemically better or worse? There are at least three metaepistemological frameworks that offer different answers to this question: epistemological consequentialism, deontic epistemology, and virtue epistemology. This paper presents empirical evidence that scientists adopt each of these different epistemic frameworks with respect to imagination, but argues that the way they do this is best explained if scientists are fundamentally epistemic consequentialists about imagination.
    Virtue EpistemologyPhilosophy of Physical ScienceEpistemology of PhilosophyEpistemological Sources, …Read more
    Virtue EpistemologyPhilosophy of Physical ScienceEpistemology of PhilosophyEpistemological Sources, MiscPhilosophy of BiologyScientific ImaginationPhilosophy, General WorksImaginationTheoretical Virtues, Misc
  •  181
    Holism and Reductionism in the Illness/Disease Debate
    with Marco Buzzoni and Luigi Tesio
    In Shyam Wuppuluri & Ian Stewart (eds.), From Electrons to Elephants and Elections: Exploring the Role of Content and Context, Springer Nature. pp. 743-778. 2022.
    In the last decades it has become clear that medicine must find some way to combine its scientific and humanistic sides. In other words, an adequate notion of medicine requires an integrative position that mediates between the analytic-reductionist and the normative-holistic tendencies we find therein. This is especially important as these different styles of reasoning separate “illness” (something perceived and managed by the whole individual in concert with their environment) and “disease” (a …Read more
    In the last decades it has become clear that medicine must find some way to combine its scientific and humanistic sides. In other words, an adequate notion of medicine requires an integrative position that mediates between the analytic-reductionist and the normative-holistic tendencies we find therein. This is especially important as these different styles of reasoning separate “illness” (something perceived and managed by the whole individual in concert with their environment) and “disease” (a “mechanical failure” of a biological element within the body). While the demand for an integrative view has typically been motivated by ethical concerns, we claim that it is also motivated, perhaps even more fundamentally, by epistemological and methodological reasons. Evidence-based bio-medicine employs experimental and statistical techniques which eliminate important differences in the ways that conscious humans evaluate, live with, and react to disease and illness. However, it is precisely these experiences that underpin the concepts and norms of bio-medicine. Humanistic disciplines, on the other hand, have the resources to investigate these experiences in an intersubjectively testable way. Medicine, therefore, cannot afford to ignore its nature as a human science; it must be concerned not only with disease and illness, but also with the ways in which patients as persons respond to malady. Insofar as attitudes and expectations influence the criteria of illness and disease, they must be studied as part of the genuine subject matter of medicine as a human science. In general, we urge that this is a necessary step to overcome today's trend to split evidence-based and clinical medicine.
    Philosophy of Social SciencePhilosophy of BiologyIllnessHealthThe Concept of DiseaseEvidence-Based M…Read more
    Philosophy of Social SciencePhilosophy of BiologyIllnessHealthThe Concept of DiseaseEvidence-Based MedicineMedical Epistemology
  •  23
    Correction to: Arnon Levy, Peter Godfrey‑Smith (Eds.): The Scientific Imagination: Philosophical and Psychological Perspectives: Oxford University Press: Oxford 2020, 344 pp., £55.00 (hardcover), ISBN 9780190212308
    Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (4): 617-617. 2021.
  •  64
    Correction to: Arnon Levy, Peter Godfrey‑Smith (Eds.): The Scientific Imagination: Philosophical and Psychological Perspectives (review)
    Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (4): 617-617. 2021.
    ImaginationScience, Logic, and Mathematics
  •  87
    Arnon Levy, Peter Godfrey-Smith (Eds.): The Scientific Imagination: Philosophical and Psychological Perspectives: Oxford University Press: Oxford 2020, 344 pp., £55.00 (hardcover), ISBN 9780190212308 (review)
    Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (3): 493-499. 2021.
    Epistemology of ImaginationImaginative ResistanceTheories of ImaginationScientific ImaginationConcei…Read more
    Epistemology of ImaginationImaginative ResistanceTheories of ImaginationScientific ImaginationConceivability, Imagination, and Possibility
  •  105
    Arnon Levy, Peter Godfrey-Smith (Eds.): The Scientific Imagination: Philosophical and Psychological Perspectives
    Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (3): 493-499. 2021.
    This is a review of Arnon Levy and Peter Godfrey-Smith's book, The Scientific Imagination
    Scientific Imagination
  •  1995
    The Role of Imagination in Social Scientific Discovery: Why Machine Discoverers Will Need Imagination Algorithms
    In Mark Addis, Fernand Gobet & Peter Sozou (eds.), Scientific Discovery in the Social Sciences, Springer Verlag. pp. 49-66. 2019.
    When philosophers discuss the possibility of machines making scientific discoveries, they typically focus on discoveries in physics, biology, chemistry and mathematics. Observing the rapid increase of computer-use in science, however, it becomes natural to ask whether there are any scientific domains out of reach for machine discovery. For example, could machines also make discoveries in qualitative social science? Is there something about humans that makes us uniquely suited to studying humans?…Read more
    When philosophers discuss the possibility of machines making scientific discoveries, they typically focus on discoveries in physics, biology, chemistry and mathematics. Observing the rapid increase of computer-use in science, however, it becomes natural to ask whether there are any scientific domains out of reach for machine discovery. For example, could machines also make discoveries in qualitative social science? Is there something about humans that makes us uniquely suited to studying humans? Is there something about machines that would bar them from such activity? A close look at the methodology of interpretive social science reveals several abilities necessary to make a social scientific discovery, and one capacity necessary to possess any of them is imagination. For machines to make discoveries in social science, therefore, they must possess imagination algorithms.
    Machine LearningScientific Method, MiscellaneousImplicit/Explicit Rules and RepresentationsPhilosoph…Read more
    Machine LearningScientific Method, MiscellaneousImplicit/Explicit Rules and RepresentationsPhilosophy of Sociology, MiscArtificial ConsciousnessScientific Imagination
  •  133
    Motivating the History of the Philosophy of Thought Experiments
    with Yiftach Fehige
    Hopos: The Journal of the International Society for the History of Philosophy of Science 11 (1): 212-221. 2021.
    This is the introduction to a special issue of HOPOS on the history of the philosophy of thought experiments.
    Thought ExperimentsHistory of Science, MiscErnst Mach20th Century PhilosophyGeneral Philosophy of Sc…Read more
    Thought ExperimentsHistory of Science, MiscErnst Mach20th Century PhilosophyGeneral Philosophy of Science, Misc
  •  161
    Telling Stories in Science: Feyerabend and Thought Experiments
    Hopos: The Journal of the International Society for the History of Philosophy of Science 11 (1): 262-281. 2021.
    The history of the philosophy of thought experiments has touched on the work of Kuhn, Popper, Duhem, Mach, Lakatos, and other big names of the 20th century, but so far, almost nothing has been written about Paul Feyerabend. His most influential work was Against Method, 8 chapters of which concern a case study of Galileo with a specific focus on Galileo’s thought experiments. In addition, the later Feyerabend was very interested in what might be called the epistemology of drama, including stories…Read more
    The history of the philosophy of thought experiments has touched on the work of Kuhn, Popper, Duhem, Mach, Lakatos, and other big names of the 20th century, but so far, almost nothing has been written about Paul Feyerabend. His most influential work was Against Method, 8 chapters of which concern a case study of Galileo with a specific focus on Galileo’s thought experiments. In addition, the later Feyerabend was very interested in what might be called the epistemology of drama, including stories and myths. This paper brings these different aspects of Feyerabend’s work together in an attempt to present what might have been his considered views on scientific thought experiments. I conclude by contrasting Feyerabend’s ideas with two modern currents in the debate surrounding thought experiments: 1) the claim that the epistemology of thought experiments is just the epistemology of deductive or inductive arguments, and 2) the claim that the specifically narrative quality of thought experiments must be taken into account if we want a complete epistemology of thought experiments.
    Aesthetic Virtues in ScienceSimplicity and ParsimonyScientific Method, MiscellaneousScientific Imagi…Read more
    Aesthetic Virtues in ScienceSimplicity and ParsimonyScientific Method, MiscellaneousScientific Imagination
  •  193
    The Productive Anarchy of Scientific Imagination
    Philosophy of Science 87 (5): 968-978. 2020.
    Imagination is important for many things in science: solving problems, interpreting data, designing studies, etc. Philosophers of imagination typically account for the productive role played by imagination in science by focusing on how imagination is constrained, e.g., by using self-imposed rules to infer logically, or model events accurately. But the constraints offered by these philosophers either constrain too much, or not enough, and they can never account for uses of imagination that are ne…Read more
    Imagination is important for many things in science: solving problems, interpreting data, designing studies, etc. Philosophers of imagination typically account for the productive role played by imagination in science by focusing on how imagination is constrained, e.g., by using self-imposed rules to infer logically, or model events accurately. But the constraints offered by these philosophers either constrain too much, or not enough, and they can never account for uses of imagination that are needed to break today’s constraints in order to make progress tomorrow. Thus, epistemology of imagination needs to make room for an element of epistemological anarchy.
    Scientific ImaginationEpistemology of Imagination
  •  1655
    The material theory of induction and the epistemology of thought experiments
    Studies in History and Philosophy of Science Part A 83 (C): 17-27. 2020.
    John D. Norton is responsible for a number of influential views in contemporary philosophy of science. This paper will discuss two of them. The material theory of induction claims that inductive arguments are ultimately justified by their material features, not their formal features. Thus, while a deductive argument can be valid irrespective of the content of the propositions that make up the argument, an inductive argument about, say, apples, will be justified (or not) depending on facts about …Read more
    John D. Norton is responsible for a number of influential views in contemporary philosophy of science. This paper will discuss two of them. The material theory of induction claims that inductive arguments are ultimately justified by their material features, not their formal features. Thus, while a deductive argument can be valid irrespective of the content of the propositions that make up the argument, an inductive argument about, say, apples, will be justified (or not) depending on facts about apples. The argument view of thought experiments claims that thought experiments are arguments, and that they function epistemically however arguments do. These two views have generated a great deal of discussion, although there hasn’t been much written about their combination. I argue that despite some interesting harmonies, there is a serious tension between them. I consider several options for easing this tension, before suggesting a set of changes to the argument view that I take to be consistent with Norton’s fundamental philosophical commitments, and which retain what seems intuitively correct about the argument view. These changes require that we move away from a unitary epistemology of thought experiments and towards a more pluralist position.
    Justification of InductionArgumentThought ExperimentsInference to the Best Explanation, MiscInductiv…Read more
    Justification of InductionArgumentThought ExperimentsInference to the Best Explanation, MiscInductive ReasoningEpistemology of Imagination
  •  244
    P-curving x-phi: Does experimental philosophy have evidential value?
    with David Colaço and Edouard Machery
    Analysis 79 (4): 669-684. 2019.
    In this article, we analyse the evidential value of the corpus of experimental philosophy. While experimental philosophers claim that their studies provide insight into philosophical problems, some philosophers and psychologists have expressed concerns that the findings from these studies lack evidential value. Barriers to evidential value include selection bias and p-hacking. To find out whether the significant findings in x-phi papers result from selection bias or p-hacking, we applied a p-cur…Read more
    In this article, we analyse the evidential value of the corpus of experimental philosophy. While experimental philosophers claim that their studies provide insight into philosophical problems, some philosophers and psychologists have expressed concerns that the findings from these studies lack evidential value. Barriers to evidential value include selection bias and p-hacking. To find out whether the significant findings in x-phi papers result from selection bias or p-hacking, we applied a p-curve analysis to a corpus of 365 x-phi chapters and articles. Our results suggest that this corpus has evidential value, although there are hints of p-hacking in a few parts of the x-phi corpus.
    Epistemology of Philosophy, MiscThe Value of PhilosophyGeneral Philosophy of Science, MiscCritiques …Read more
    Epistemology of Philosophy, MiscThe Value of PhilosophyGeneral Philosophy of Science, MiscCritiques of Experimental PhilosophyFoundations of Experimental Philosophy, Misc
  •  1504
    Everyday Scientific Imagination: A Qualitative Study of the Uses, Norms, and Pedagogy of Imagination in Science
    Science & Education 28 (6): 711-730. 2019.
    Imagination is necessary for scientific practice, yet there are no in vivo sociological studies on the ways that imagination is taught, thought of, or evaluated by scientists. This article begins to remedy this by presenting the results of a qualitative study performed on two systems biology laboratories. I found that the more advanced a participant was in their scientific career, the more they valued imagination. Further, positive attitudes toward imagination were primarily due to the perceived…Read more
    Imagination is necessary for scientific practice, yet there are no in vivo sociological studies on the ways that imagination is taught, thought of, or evaluated by scientists. This article begins to remedy this by presenting the results of a qualitative study performed on two systems biology laboratories. I found that the more advanced a participant was in their scientific career, the more they valued imagination. Further, positive attitudes toward imagination were primarily due to the perceived role of imagination in problem-solving. But not all problem-solving episodes involved clear appeals to imagination, only maximally specific problems did. This pattern is explained by the presence of an implicit norm governing imagination use in the two labs: only use imagination on maximally specific problems, and only when all other available methods have failed. This norm was confirmed by the participants, and I argue that it has epistemological reasons in its favour. I also found that its strength varies inversely with career stage, such that more advanced scientists do (and should) occasionally bring their imaginations to bear on more general problems. A story about scientific pedagogy explains the trend away from (and back to) imagination over the course of a scientific career. Finally, some positive recommendations are given for a more imagination-friendly scientific pedagogy.
    Science, Logic, and MathematicsTheories of ImaginationConceivability, Imagination, and PossibilityEx…Read more
    Science, Logic, and MathematicsTheories of ImaginationConceivability, Imagination, and PossibilityExperimental Philosophy of Science
  •  1520
    Peeking Inside the Black Box: A New Kind of Scientific Visualization
    with Nancy J. Nersessian
    Minds and Machines 29 (1): 87-107. 2018.
    Computational systems biologists create and manipulate computational models of biological systems, but they do not always have straightforward epistemic access to the content and behavioural profile of such models because of their length, coding idiosyncrasies, and formal complexity. This creates difficulties both for modellers in their research groups and for their bioscience collaborators who rely on these models. In this paper we introduce a new kind of visualization that was developed to add…Read more
    Computational systems biologists create and manipulate computational models of biological systems, but they do not always have straightforward epistemic access to the content and behavioural profile of such models because of their length, coding idiosyncrasies, and formal complexity. This creates difficulties both for modellers in their research groups and for their bioscience collaborators who rely on these models. In this paper we introduce a new kind of visualization that was developed to address just this sort of epistemic opacity. The visualization is unusual in that it depicts the dynamics and structure of a computer model instead of that model’s target system, and because it is generated algorithmically. Using considerations from epistemology and aesthetics, we explore how this new kind of visualization increases scientific understanding of the content and function of computer models in systems biology to reduce epistemic opacity.
    Philosophy of Artificial IntelligenceEpistemology, MiscMetaepistemologySystematic Biology, MiscSimul…Read more
    Philosophy of Artificial IntelligenceEpistemology, MiscMetaepistemologySystematic Biology, MiscSimulation in ScienceScientific Imagination
  •  1923
    Towards a dual process epistemology of imagination
    Synthese (2): 1-22. 2019.
    Sometimes we learn through the use of imagination. The epistemology of imagination asks how this is possible. One barrier to progress on this question has been a lack of agreement on how to characterize imagination; for example, is imagination a mental state, ability, character trait, or cognitive process? This paper argues that we should characterize imagination as a cognitive ability, exercises of which are cognitive processes. Following dual process theories of cognition developed in cognitiv…Read more
    Sometimes we learn through the use of imagination. The epistemology of imagination asks how this is possible. One barrier to progress on this question has been a lack of agreement on how to characterize imagination; for example, is imagination a mental state, ability, character trait, or cognitive process? This paper argues that we should characterize imagination as a cognitive ability, exercises of which are cognitive processes. Following dual process theories of cognition developed in cognitive science, the set of imaginative processes is then divided into two kinds: one that is unconscious, uncontrolled, and effortless, and another that is conscious, controlled, and effortful. This paper outlines the different epistemological strengths and weaknesses of the two kinds of imaginative process, and argues that a dual process model of imagination helpfully resolves or clarifies issues in the epistemology of imagination and the closely related epistemology of thought experiments.
    Thought ExperimentsImagination, MiscVisual Imagery and ImaginationTheories of ImaginationEpistemolog…Read more
    Thought ExperimentsImagination, MiscVisual Imagery and ImaginationTheories of ImaginationEpistemology of Imagination
  •  2655
    Thought Experiments: State of the Art
    with Yiftach Fehige and James Robert Brown
    In Michael T. Stuart, Yiftach Fehige & James Robert Brown (eds.), The Routledge Companion to Thought Experiments, Routledge. pp. 1-28. 2018.
    This is the introduction to the Routledge Companion to Thought Experiments
    Thought ExperimentsHistory of Western PhilosophyImaginationHistory of Science, MiscIntuitionPhilosop…Read more
    Thought ExperimentsHistory of Western PhilosophyImaginationHistory of Science, MiscIntuitionPhilosophy of Cognitive Science
  •  395
    The Routledge Companion to Thought Experiments (edited book)
    with Yiftach Fehige and James Robert Brown
    Routledge. 2018.
    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, fro…Read more
    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 the trolley problem and quantum non-locality; · Thought experiments in the humanities, arts, and sciences, including ethics, physics, theology, biology, mathematics, economics, and politics; · Theories about the nature of thought experiments; · New discussions concerning the impact of experimental philosophy, cross-cultural comparison studies, metaphilosophy, computer simulations, idealization, dialectics, cognitive science, the artistic nature of thought experiments, and metaphysical issues. This broad ranging Companion goes backwards through history and sideways across disciplines. It also engages with philosophical perspectives from empiricism, rationalism, naturalism, skepticism, pluralism, contextualism, and neo-Kantianism to phenomenology. This volume will be valuable for anyone studying the methods of philosophy or any discipline that employs thought experiments, as well as anyone interested in the power and limits of the mind.
    Thought ExperimentsPhilosophy of Science, MiscellaneousEpistemology of IntuitionHistory of Western P…Read more
    Thought ExperimentsPhilosophy of Science, MiscellaneousEpistemology of IntuitionHistory of Western Philosophy, MiscPhilosophical Methods, MiscExperimental Philosophy: Epistemology, MiscScientific Method, MiscellaneousMeta-EthicsScientific ImaginationEpistemology of Imagination
  •  1979
    The Content-Dependence of Imaginative Resistance
    with Hanna Kim and Markus Kneer
    In Florian Cova & Sébastien Réhault (eds.), Advances in Experimental Philosophy of Aesthetics, Bloomsbury Academic. pp. 143-166. 2018.
    An observation of Hume’s has received a lot of attention over the last decade and a half: Although we can standardly imagine the most implausible scenarios, we encounter resistance when imagining propositions at odds with established moral (or perhaps more generally evaluative) convictions. The literature is ripe with ‘solutions’ to this so-called ‘Puzzle of Imaginative Resistance’. Few, however, question the plausibility of the empirical assumption at the heart of the puzzle. In this paper, we …Read more
    An observation of Hume’s has received a lot of attention over the last decade and a half: Although we can standardly imagine the most implausible scenarios, we encounter resistance when imagining propositions at odds with established moral (or perhaps more generally evaluative) convictions. The literature is ripe with ‘solutions’ to this so-called ‘Puzzle of Imaginative Resistance’. Few, however, question the plausibility of the empirical assumption at the heart of the puzzle. In this paper, we explore empirically whether the difficulty we witness in imagining certain propositions is indeed due to claim type (evaluative v. non-evaluative) or whether it is much rather driven by mundane features of content. Our findings suggest that claim type plays but a marginal role, and that there might hence not be much of a ‘puzzle’ to be solved.
    Aesthetic ImaginationExperimental Aesthetics
  •  2227
    How Thought Experiments Increase Understanding
    In Michael T. Stuart, Yiftach Fehige & James Robert Brown (eds.), The Routledge Companion to Thought Experiments, Routledge. pp. 526-544. 2018.
    We might think that thought experiments are at their most powerful or most interesting when they produce new knowledge. This would be a mistake; thought experiments that seek understanding are just as powerful and interesting, and perhaps even more so. A growing number of epistemologists are emphasizing the importance of understanding for epistemology, arguing that it should supplant knowledge as the central notion. In this chapter, I bring the literature on understanding in epistemology to bear…Read more
    We might think that thought experiments are at their most powerful or most interesting when they produce new knowledge. This would be a mistake; thought experiments that seek understanding are just as powerful and interesting, and perhaps even more so. A growing number of epistemologists are emphasizing the importance of understanding for epistemology, arguing that it should supplant knowledge as the central notion. In this chapter, I bring the literature on understanding in epistemology to bear on explicating the different ways that thought experiments increase three important kinds of understanding: explanatory, objectual and practical.
    General Philosophy of Science, MiscExplanation and UnderstandingUnderstandingScientific ImaginationE…Read more
    General Philosophy of Science, MiscExplanation and UnderstandingUnderstandingScientific ImaginationEpistemology of Imagination
  •  1234
    Imagination: A Sine Qua Non of Science
    Croatian Journal of Philosophy 49 9-32. 2017.
    What role does the imagination play in scientific progress? After examining several studies in cognitive science, I argue that one thing the imagination does is help to increase scientific understanding, which is itself indispensable for scientific progress. Then, I sketch a transcendental justification of the role of imagination in this process.
    Simulation in ScienceScientific Practice, MiscThought ExperimentsScientific MetamethodologyExperimen…Read more
    Simulation in ScienceScientific Practice, MiscThought ExperimentsScientific MetamethodologyExperimentation in ScienceScientific ImaginationEpistemology of Imagination
  •  181
    Cognitive Science and Thought Experiments: A Refutation of Paul Thagard's Skepticism
    Perspectives on Science 22 (2): 264-287. 2014.
    Paul Thagard has recently argued that thought experiments are dangerous and misleading when we try to use them as evidence for claims. This paper refutes his skepticism. Building on Thagard’s own work in cognitive science, I suggest that Thagard has much that is positive to say about how thought experiments work. My last section presents some new directions for research on the intersection between thought experiments and cognitive science
    Rationality and Cognitive ScienceThought ExperimentsPhilosophy of Cognitive Science, Misc
  •  168
    Katerina Ierodiakonou and Sophie Roux, eds. Thought Experiments in Methodological and Historical Contexts. Leiden: Brill, 2011. Pp. vii+233. €99.00 (review)
    with James Robert Brown
    Hopos: The Journal of the International Society for the History of Philosophy of Science 3 (1): 154-157. 2013.
    Thought ExperimentsHistory of Western Philosophy, MiscScientific Practice, MiscGeneral Philosophy of…Read more
    Thought ExperimentsHistory of Western Philosophy, MiscScientific Practice, MiscGeneral Philosophy of Science, MiscScientific DiscoveryHistory of Science, MiscExperimentation in ScienceScientific Imagination
  •  140
    Norton and the Logic of Thought Experiments
    Axiomathes 26 (4): 451-466. 2016.
    John D. Norton defends an empiricist epistemology of thought experiments, the central thesis of which is that thought experiments are nothing more than arguments. Philosophers have attempted to provide counterexamples to this claim, but they haven’t convinced Norton. I will point out a more fundamental reason for reformulation that criticizes Norton’s claim that a thought experiment is a good one when its underlying logical form possesses certain desirable properties. I argue that by Norton’s em…Read more
    John D. Norton defends an empiricist epistemology of thought experiments, the central thesis of which is that thought experiments are nothing more than arguments. Philosophers have attempted to provide counterexamples to this claim, but they haven’t convinced Norton. I will point out a more fundamental reason for reformulation that criticizes Norton’s claim that a thought experiment is a good one when its underlying logical form possesses certain desirable properties. I argue that by Norton’s empiricist standards, no thought experiment is ever justified in any deep sense due to the properties of its logical form. Instead, empiricists should consider again the merits of evaluating thought experiments more like laboratory experiments, and less like arguments.
    Evidence and KnowledgeScientific Method, MiscellaneousEpistemology, MiscGeneral Philosophy of Scienc…Read more
    Evidence and KnowledgeScientific Method, MiscellaneousEpistemology, MiscGeneral Philosophy of Science, Misc
  •  154
    Introduction to Special Issue of Perspectives on Science
    with Yiftach Fehige
    Perspectives on Science 22 (2): 167-178. 2014.
    This is an introduction to a special issue of Perspectives on Science, the outcome of a workshop entitled "Thought Experiments in Science: Four Blind Spots," held at the University of Toronto, March 23rd, 2012. The recent revival in philosophical study of thought experiments has been limited to fields like epistemology, science studies, and metaphilosophy. With this issue we hope to facilitate a discussion about how some other disciplinary perspectives might bear on the subject; specifically, th…Read more
    This is an introduction to a special issue of Perspectives on Science, the outcome of a workshop entitled "Thought Experiments in Science: Four Blind Spots," held at the University of Toronto, March 23rd, 2012. The recent revival in philosophical study of thought experiments has been limited to fields like epistemology, science studies, and metaphilosophy. With this issue we hope to facilitate a discussion about how some other disciplinary perspectives might bear on the subject; specifically, the history of philosophy, literary studies, phenomenology and cognitive science.
    Science, Logic, and MathematicsThought ExperimentsPhilosophical Methods, MiscHistory of Western Phil…Read more
    Science, Logic, and MathematicsThought ExperimentsPhilosophical Methods, MiscHistory of Western Philosophy, MiscPhenomenology, MiscRationality and Cognitive Science
  • Prev.
  • 1
  • 2
  • 3
  • Next
PhilPeople logo

On this site

  • Find a philosopher
  • Find a department
  • The Radar
  • Index of professional philosophers
  • Index of departments
  • Help
  • Acknowledgments
  • Careers
  • Contact us
  • Terms and conditions

Brought to you by

  • The PhilPapers Foundation
  • The American Philosophical Association
  • Centre for Digital Philosophy, Western University
PhilPeople is currently in Beta Sponsored by the PhilPapers Foundation and the American Philosophical Association
Feedback