Results for 'Nancy J. Beach'

991 found
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  1.  1
    Visual attention and the binding problem: A neurophysiological perspective.Steven J. Luck & Nancy J. Beach - 1998 - In Richard D. Wright (ed.), Visual Attention. Oxford University Press. pp. 455--478.
  2.  49
    Symposium on Nancy J. Hirschmann's The Subject of Liberty: Toward a Feminist Theory of Freedom: Introduction.Nancy J. Hirschmann - 2001 - Hypatia 21 (4):178-181.
  3. Creating Scientific Concepts.Nancy J. Nersessian - 2008 - MIT Press.
    How do novel scientific concepts arise? In Creating Scientific Concepts, Nancy Nersessian seeks to answer this central but virtually unasked question in the problem of conceptual change. She argues that the popular image of novel concepts and profound insight bursting forth in a blinding flash of inspiration is mistaken. Instead, novel concepts are shown to arise out of the interplay of three factors: an attempt to solve specific problems; the use of conceptual, analytical, and material resources provided by the (...)
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  4.  33
    Intentionality.Nancy J. Holland - 1986 - Noûs 20 (1):103-108.
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  5. Faraday to Einstein: Constructing Meaning in Scientific Theories.Nancy J. Nersessian - 1987 - British Journal for the Philosophy of Science 38 (4):575-577.
     
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  6.  24
    Faraday to Einstein: constructing meaning in scientific theories.Nancy J. Nersessian - 1984 - Hingham, MA: Kluwer Academic Publishers.
    PARTI The Philosophical Situation: A Critical Appraisal We must begin with the mistake and find out the truth in it. That is, we must uncover the source of ...
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  7. Interdisciplinarity in the Making: Models and Methods in Frontier Science.Nancy J. Nersessian - 2022 - Cambridge, MA: MIT.
    A cognitive ethnography of how bioengineering scientists create innovative modeling methods. In this first full-scale, long-term cognitive ethnography by a philosopher of science, Nancy J. Nersessian offers an account of how scientists at the interdisciplinary frontiers of bioengineering create novel problem-solving methods. Bioengineering scientists model complex dynamical biological systems using concepts, methods, materials, and other resources drawn primarily from engineering. They aim to understand these systems sufficiently to control or intervene in them. What Nersessian examines here is how cutting-edge (...)
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  8. Mental Modeling in Conceptual Change.Nancy J. Nersessian - 2010 - International Journal on Humanistic Ideology 3 (1):11-48.
  9.  30
    Gender, Class, and Freedom in Modern Political Theory.Nancy J. Hirschmann - 2007 - Princeton University Press.
    In Gender, Class, and Freedom in Modern Political Theory, Nancy Hirschmann demonstrates not merely that modern theories of freedom are susceptible to gender and class analysis but that they must be analyzed in terms of gender and class in order to be understood at all. Through rigorous close readings of major and minor works of Hobbes, Locke, Rousseau, Kant, and Mill, Hirschmann establishes and examines the gender and class foundations of the modern understanding of freedom. Building on a social (...)
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  10.  84
    Why/How to Study Scientific Thinking.Nancy J. Nersessian - forthcoming - Qualitative Psychology.
    Scientific research is a highly complex and creative domain of human activity. In addition to its intrinsic value, understanding scientific thinking provides insight into the creative potential of human psychological capacities, as they are imbedded in rich social, material, and cultural environments. I discuss findings from my own investigations using two forms of qualitative research suited to studying scientific thinking as situated in context: cognitive-historical and cognitive-ethnographic.
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  11. Gender, Class, and Freedom in Modern Political Theory.Nancy J. Hirschmann - 2009 - Political Theory 37 (4):582-585.
  12.  6
    How Do Engineering Scientists Think? Model‐Based Simulation in Biomedical Engineering Research Laboratories.Nancy J. Nersessian - 2009 - Topics in Cognitive Science 1 (4):730-757.
    Designing, building, and experimenting with physical simulation models are central problem‐solving practices in the engineering sciences. Model‐based simulation is an epistemic activity that includes exploration, generation and testing of hypotheses, explanation, and inference. This paper argues that to interpret and understand how these simulation models function in creating knowledge and technologies requires construing problem solving as accomplished by a researcher–artifact system. It draws on and further develops the framework of “distributed cognition” to interpret data collected in ethnographic and cognitive‐historical studies (...)
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  13.  15
    In the Theoretician's Laboratory: Thought Experimenting as Mental Modeling.Nancy J. Nersessian - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:291 - 301.
    Thought experiments have played a prominent role in numerous cases of conceptual change in science. I propose that research in cognitive psychology into the role of mental modeling in narrative comprehension can illuminate how and why thought experiments work. In thought experimenting a scientist constructs and manipulates a mental simulation of the experimental situation. During this process, she makes use of inferencing mechanisms, existing representations, and general world knowledge to make realistic transformations from one possible physical state to the next. (...)
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  14.  7
    Conceptual change in science and in science education.Nancy J. Nersessian - 1989 - Synthese 80 (1):163 - 183.
    There is substantial evidence that traditional instructional methods have not been successful in helping students to restructure their commonsense conceptions and learn the conceptual structures of scientific theories. This paper argues that the nature of the changes and the kinds of reasoning required in a major conceptual restructuring of a representation of a domain are fundamentally the same in the discovery and in the learning processes. Understanding conceptual change as it occurs in science and in learning science will require the (...)
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  15.  48
    Rethinking Ethnography for Philosophy of Science.Nancy J. Nersessian & Miles MacLeod - 2022 - Philosophy of Science 89 (4):721-741.
    We lay groundwork for applying ethnographic methods in philosophy of science. We frame our analysis in terms of two tasks: to identify the benefits of an ethnographic approach in philosophy of science and to structure an ethnographic approach for philosophical investigation best adapted to provide information relevant to philosophical interests and epistemic values. To this end, we advocate for a purpose-guided form of cognitive ethnography that mediates between the explanatory and normative interests of philosophy of science, while maintaining openness and (...)
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  16.  8
    The cognitive basis of model-based reasoning in science.Nancy J. Nersessian - 2002 - In Peter Carruthers, Stephen Stich & Michael Siegal (eds.), The Cognitive Basis of Science. New York: Cambridge University Press. pp. 133--153.
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  17.  75
    From Maxwell to Microphysics: Aspects of Electromagnetic Theory in the Last Quarter of the Nineteenth Century. Jed Z. Buchwald.Nancy J. Nersessian - 1987 - Philosophy of Science 54 (3):489-490.
  18.  8
    The Process of science: contemporary philosophical approaches to understanding scientific practice.Nancy J. Nersessian (ed.) - 1987 - Hingham, MA, USA: Kluwer Academic Publishers.
    ' this volume will make a significant contribution to a more adequate understanding of the 'nature of scientific knowledge and inquiry' ' ISIS Vol.79,No.1,1988.
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  19. Heidegger and the problem of consciousness.Nancy J. Holland - 2018 - Bloomington: Indiana University Press, Office of Scholarly Publishing, Herman B Wells Library.
    Charlemagne's monogram -- Introduction -- The problem of consciousness -- The earliest vision -- Truth, being, and mind -- The Kehre -- The essence of truth -- The later Heidegger -- Reading Heidegger after Heidegger -- Being not a soul but the unmediated discovery of being.
     
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  20.  22
    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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  21. A cognitive-historical approach to meaning in scientific theories.Nancy J. Nersessian - 1987 - In The Process of science: contemporary philosophical approaches to understanding scientific practice. Hingham, MA, USA: Kluwer Academic Publishers.
  22.  91
    Toward a Feminist Theory of Freedom.Nancy J. Hirschmann - 1996 - Political Theory 24 (1):46-67.
  23.  66
    Feminist Interpretations of Thomas Hobbes.Nancy J. Hirschmann & Joanne Harriet Wright (eds.) - 2012 - Pennsylvania State University Press.
    _Feminist Interpretations of Thomas Hobbes _features the work of feminist scholars who are centrally engaged with Hobbes’s ideas and texts and who view Hobbes as an important touchstone in modern political thought. Bringing together scholars from the disciplines of philosophy, history, political theory, and English literature who embrace diverse theoretical and philosophical approaches and a range of feminist perspectives, this interdisciplinary collection aims to appeal to an audience of Hobbes scholars and nonspecialists alike. As a theorist whose trademark is a (...)
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  24.  6
    Is Women's Philosophy Possible?Nancy J. Holland - 1990 - Rowman & Littlefield Publishers.
    Rich in illusions...the book brings together in intriguing and helpful ways very different approaches to feminist theory.-CHOICE...provides an indespensible guide for each of us searching for a new way of doing philosophy as women.- Nancy Tuana, Editor, NEWSLETTER ON FEMINISM AND PHILOSOPHY.
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  25.  7
    Model-based reasoning in conceptual change.Nancy J. Nersessian - 1999 - In L. Magnani, Nancy Nersessian & Paul Thagard (eds.), Model-Based Reasoning in Scientific Discovery. Kluwer/Plenum. pp. 5--22.
  26.  14
    A possible role for cholinergic neurons of the basal forebrain and pontomesencephalon in consciousness.Nancy J. Woolf - 1997 - Consciousness and Cognition 6 (4):574-596.
    Excitation at widely dispersed loci in the cerebral cortex may represent a neural correlate of consciousness. Accordingly, each unique combination of excited neurons would determine the content of a conscious moment. This conceptualization would be strengthened if we could identify what orchestrates the various combinations of excited neurons. In the present paper, cholinergic afferents to the cerebral cortex are hypothesized to enhance activity at specific cortical circuits and determine the content of a conscious moment by activating certain combinations of postsynaptic (...)
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  27.  12
    A quantum approach to visual consciousness.Nancy J. Woolf & Stuart R. Hameroff - 2001 - Trends in Cognitive Sciences 5 (11):472-478.
    A theoretical approach relying on quantum computation in microtubules within neurons can potentially resolve the enigmatic features of visual consciousness, but raises other questions. For example, how can delicate quantum states, which in the technological realm demand extreme cold and isolation to avoid environmental ‘decoherence’, manage to survive in the warm, wet brain? And if such states could survive within neuronal cell interiors, how could quantum states grow to encompass the whole brain? We present a physiological model for visual consciousness (...)
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  28.  20
    Model‐Based Reasoning in Distributed Cognitive Systems.Nancy J. Nersessian - 2006 - Philosophy of Science 73 (5):699-709.
    This paper examines the nature of model-based reasoning in the interplay between theory and experiment in the context of biomedical engineering research laboratories, where problem solving involves using physical models. These "model systems" are sites of experimentation where in vitro models are used to screen, control, and simulate specific aspects of in vivo phenomena. As with all models, simulation devices are idealized representations, but they are also systems themselves, possessing engineering constraints. Drawing on research in contemporary cognitive science that construes (...)
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  29.  23
    Innovation in Higher Education: Lessons Learned from Creating a Faculty Fellowship Program.Nancy J. Kaufman & Charity Scott - 2016 - Journal of Law, Medicine and Ethics 44 (s1):97-106.
    This concluding essay offers reflections on core components of the faculty fellowship program, its outcomes and results, and program design and administration. Amid the current calls for reform in legal and other professional education, the lessons we learned and perspectives we gained during this fellowship program may be relevant to any faculty members and university administrations that are seeking to create more effective and engaged professional and graduate school programs, whatever may be their subject-matter discipline.
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  30.  30
    Conducting hermeneutic research: from philosophy to practice.Nancy J. Moules (ed.) - 2015 - New York: Peter Lang Publishing.
    <I>Conducting Hermeneutic Research: From Philosophy to Practice is the only textbook that teaches the reader ways to conduct research from a philosophical hermeneutic perspective. It is an invaluable resource for graduate students about to embark in hermeneutic research and for academics or other researchers who are novice to this research method or who wish to extend their knowledge. In 2009, the lead author of this proposed text was one of three co-founders of the Canadian Hermeneutic Institute. The institute was created (...)
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  31.  13
    Books in Review.Nancy J. Hirschmann & Linda Zerilli - 2002 - Political Theory 30 (1):164-170.
  32.  11
    Diana Described: Scattered Woman and Scattered Rhyme.Nancy J. Vickers - 1981 - Critical Inquiry 8 (2):265-279.
    The import of Petrarch's description of Laura extends well beyond the confines of his own poetic age; in subsequent times, his portrayal of feminine beauty became authoritative. As a primary canonical text, the Rime sparse consolidated and disseminated a Renaissance mode. Petrarch absorbed a complex network of descriptive strategies and then presented a single, transformed model. In this sense his role in the history of the interpretation and the internalization of woman's "image" by both men and women can scarcely be (...)
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  33.  20
    Rethinking correspondence: how the process of constructing models leads to discoveries and transfer in the bioengineering sciences.Nancy J. Nersessian & Sanjay Chandrasekharan - 2017 - Synthese 198 (Suppl 21):1-30.
    Building computational models of engineered exemplars, or prototypes, is a common practice in the bioengineering sciences. Computational models in this domain are often built in a patchwork fashion, drawing on data and bits of theory from many different domains, and in tandem with actual physical models, as the key objective is to engineer these prototypes of natural phenomena. Interestingly, such patchy model building, often combined with visualizations, whose format is open to a wide range of choice, leads to the discovery (...)
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  34. What's Philosophical About Moral Distress?Nancy J. Matchett - 2018 - Philosophical Practice: Journal of the American Philosophical Practitioners Association 2 (13):2108-19.
    Moral distress is a well-documented phenomenon in the nursing profession, and increasingly thought to be implicated in a nation-wide nursing shortage in the US. First identified by the philosopher Andrew Jameton in 1984, moral distress has also proven resistant to various attempts to prevent its occurrence or at least mitigate its effects. While this would seem to be bad news for nurses and their patients, it is potentially good news for philosophical counselors, for whom there is both socially important and (...)
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  35.  55
    Aether/Or: The Creation of Scientific Concepts.Nancy J. Nersessian - 1984 - Studies in History and Philosophy of Science Part A 15 (3):175.
  36.  7
    Abstraction via generic modeling in concept formation in science.Nancy J. Nersessian - 2005 - Poznan Studies in the Philosophy of the Sciences and the Humanities 86 (1):117-144.
    Cases where analogy has played a significant role in the formation of a new scientific concept are well-documented. Yet, how is it that genuinely new representations can be constructed from existing representations? It is argued that the process of ‘generic modeling’ enables abstraction of features common to both the domain of the source of the analogy and of the target phenomena. The analysis focuses on James Clerk Maxwell's construction of the electromagnetic field concept. The mathematical representation Maxwell constructed turned out (...)
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  37.  8
    The Matrix and Meaning of Character: An Archetypal and Developmental Approach.Nancy J. Dougherty & Jacqueline J. West - 2007 - Routledge.
    Character structures underlie everyone’s personality. When rigidly defended, they limit us; yet as they become more flexible, they can reveal sources of animation, renewal and authenticity. _The Matrix and Meaning of Character_ guides the reader into an awareness of the archetypal depths that underlie character structures, presenting an original developmental model in which current analytic theories are synthesised. The authors examine nine character structures, animating them with fairy tales, mythic images and case material, creating a bridge between the traditional language (...)
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  38. Humanization and the Politics of God: The Koinonia Ethics of Paul Lehmann.Nancy J. Duff - 1993
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  39.  5
    Reasoning from Imagery and Analogy in Scientific Concept Formation.Nancy J. Nersessian - 1988 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988:41 - 47.
    Concept formation in science is a reasoned process, commensurate with ordinary problem-solving processes. An account of how analogical reasoning and reasoning from imagistic representations generate new scientific concepts is presented. The account derives from case studies of concept formation in science and from computational theories of analogical problem solving in cognitive science. Concept formation by analogy is seen to be a process of increasing abstraction from existing conceptual structures.
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  40.  27
    Response to Friedman and Brison.Nancy J. Hirschmann - 2006 - Hypatia 21 (4):201-211.
    Here, Hirschmann responds to Marilyn Friedman and Susan]. Brison's comments on The Subject of Liberty: Toward a Feminist Theory of Freedom. She clarifies some aspects of her social construction argument, articulates the role of discourse and its relation to material reality, and explicates the potentially paradoxical case of support for women's choices when those choices produce harm.
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  41.  20
    The Death of the Other/Father: A Feminist Reading of Derrida's Hauntology.Nancy J. Holland - 2001 - Hypatia 16 (1):64-71.
    This paper addresses the question of whether Derrida's “hauntology” as developed in Specters of Marx and related texts, can be anything more than yet another repetition of a specifically male preoccupation with the Father inscribed on the bodies of women, in this case the always absent daughter. A careful reading suggests that Derrida, and playwnght fathers of daughters such as Shakespeare and August Wilson, may be aware of the paradoxes of their situation.
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  42.  23
    The Death of the Other/Father: A Feminist Reading of Derrida's Hauntology 1.Nancy J. Holland - 2001 - Hypatia 16 (1):64-71.
    This paper addresses the question of whether Derrida's “hauntology” as developed in Specters of Marx and related texts, can be anything more than yet another repetition of a specifically male preoccupation with the Father inscribed on the bodies of women, in this case the always absent daughter. A careful reading suggests that Derrida, and playwnght fathers of daughters such as Shakespeare and August Wilson, may be aware of the paradoxes of their situation.
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  43.  32
    Is Women's Philosophy Possible?Nancy J. Holland - 1993 - Hypatia 8 (1):205-208.
  44.  26
    Abstraction via generic modeling in concept formation in science.Nancy J. Nersessian - 2002 - Mind and Society 3 (1):129-154.
    Cases where analogy has played a significant role in the formation of a new scientific concept are well-documented. Yet, how is it that genuinely new representations can be constructed from existing representations? It is argued that the process of ‘generic modeling’ enables abstraction of features common to both the domain of the source of the analogy and of the target phenomena. The analysis focuses on James Clerk Maxwell's construction of the electromagnetic field concept. The mathematical representation Maxwell constructed turned out (...)
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  45.  14
    Should physicists preach what they practice?Nancy J. Nersessian - 1995 - Science & Education 4 (3):203-226.
  46.  13
    Interactive Team Cognition.Nancy J. Cooke, Jamie C. Gorman, Christopher W. Myers & Jasmine L. Duran - 2013 - Cognitive Science 37 (2):255-285.
    Cognition in work teams has been predominantly understood and explained in terms of shared cognition with a focus on the similarity of static knowledge structures across individual team members. Inspired by the current zeitgeist in cognitive science, as well as by empirical data and pragmatic concerns, we offer an alternative theory of team cognition. Interactive Team Cognition (ITC) theory posits that (1) team cognition is an activity, not a property or a product; (2) team cognition should be measured and studied (...)
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  47. Hybrid devices : embodiments of culture in biomedical engineering.Nancy J. Nersessian - 2017 - In Karine Chemla & Evelyn Fox Keller (eds.), Cultures without culturalism: the making of scientific knowledge. Durham: Duke University Press.
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  48.  11
    Why is 'incommensurability' a problem?Nancy J. Nersessian - 1982 - Acta Biotheoretica 31 (4):205-218.
    The origins of the ‘ incommensurability problem’ and its central aspect, the ‘ meaning variance thesis’ are traced to the successive collapse of several distinctions maintained by the standard empiricist account of meaning in scientific theories. The crucial distinction is that between a conceptual structure and a theory. The ‘thesis’ and the ‘problem’ follow from critiques of this distinction by Duhem, Quine and Feyerabend. It is maintained that, rather than revealing the ‘problem’, the arguments leading to it simply show the (...)
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  49. Disability, Feminism, and Intersectionability.Nancy J. Hirschmann - 2013 - Radical Philosophy Review 16 (2):649-662.
    Critical theorists should turn to disability as an important category of intersectional analysis. I demonstrate this through one type of critical theory—namely, feminism. Disability intersects with all vectors of identity, since disability affects people of all races, ethnicities, religions, genders, sexualities, and classes. Gender and sexuality are particularly illustrative because disability is configured in ways that map onto negative images of femininity. Additionally, the ways in which feminist and disability scholars undertake analysis are complementary. And because these two fields are (...)
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  50.  3
    6 Gordon Schochet on Hobbes, Gratitude, and Women.Nancy J. Hirschmann - 2012 - In Nancy J. Hirschmann & Joanne Harriet Wright (eds.), Feminist Interpretations of Thomas Hobbes. Pennsylvania State University Press. pp. 125-146.
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