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  1. The Truth in Pictures.Laura Perini - 2005 - Philosophy of Science 72 (1):262-285.
    Scientists typically use a variety of representations, including different kinds of figures, to present and defend hypotheses. In order to understand the justification of scientific hypotheses, it is essential to understand how visual representations contribute to scientific arguments. Since the logical understanding of arguments involves the truth or falsity of the representations involved, visual representations must have the capacity to bear truth in order to be genuine components of arguments. By drawing on Goodman's analysis of symbol systems, and on Tarski's (...)
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  • Interpreting Feynman diagrams as visualized models.Adrian Wüthrich - 2012 - Spontaneous Generations 6 (1):172-181.
    I give a brief introduction to how Feynman diagrams are used. I review arguments to the effect that they are only used as calculation tools and should not be interpreted as representations of physical processes. Against these arguments, I propose to regard Feynman diagrams as visual models that explain, in some respects, how elementary particles interact.
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  • Análisis del cuerpo humano mediante los apuntes de dibujo.Margarita González Vázquez - 2022 - Human Review. International Humanities Review / Revista Internacional de Humanidades 11 (6):1-16.
    El estudio del cuerpo humano mediante el apunte permite que el estudiante de Bellas Artes profundice en los complejos procesos perceptivos, cognitivos y procesuales propios del dibujo, ya que esta práctica favorece tanto el análisis del cuerpo humano, como la asimilación de estrategias para asumir la relación profunda que se establece entre el dibujante y aquello que observa, comprende y materializa en el propio dibujo. Por ello, esta ponencia es analiza los factores implicados en esta situación y ofrece diversas estrategias (...)
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  • V—Time and Subtle Pictures in the History of Philosophy.Emily Thomas - 2020 - Proceedings of the Aristotelian Society 120 (2):97-121.
    For centuries, philosophers of time have produced texts containing words and pictures. Although some historians study visual representations of time, I have not found any history of philosophy on pictures of time within texts. This paper argues that studying such pictures can be rewarding. I will make this case by studying pictures of time in the works of Leibniz, Arthur Eddington and C. D. Broad, and argue they play subtle roles. Further, I will argue that historians of philosophy more widely (...)
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  • Time and Subtle Pictures in the History of Philosophy.V.—Emily Thomas - forthcoming - Proceedings of the Aristotelian Society.
    For centuries, philosophers of time have produced texts containing words and pictures. Although some historians study visual representations of time, I have not found any history of philosophy on pictures of time within texts. This paper argues that studying such pictures can be rewarding. I will make this case by studying pictures of time in the works of Leibniz, Arthur Eddington and C. D. Broad, and argue they play subtle roles. Further, I will argue that historians of philosophy more widely (...)
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  • Aspects of visual argument: A study of the March of Progress.Cameron Shelley - 2001 - Informal Logic 21 (2).
    The so-called March of Progress depicts human evolution as a linear progression from mohkey to man. Shelley (1996) analyzed this image as a visual argument proceeding through "rhetorical" and "demonstrative" modes of visual logic. In this paper, I confirm and extend this view of visual logic by examining variations of the original March image. These variations show that each mode of visual logic can be altered or isolated in support of new conclusions. Furthermore, the March can be included in a (...)
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  • Pictures, pluralism, and feminist epistemology: Lessons from “coming to understand”.Letitia Meynell - 2008 - Hypatia 23 (4):pp. 1-29.
    Meynell’s contention is that feminists should attend to pictures in science as distinctive bearers of epistemic content that cannot be reduced to propositions. Remarks on the practice and function of medical illustration—specifically, images Nancy Tuana used in her discussion of the construction of ignorance of women’s sexual function (2004)—show pictures to be complex and powerful epistemic devices. Their affinity with perennial feminist concerns, the relation between epistemic subject and object, and the nature of social knowledge, are of particular interest.
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  • Recent work on aesthetics of science.James W. McAllister - 2002 - International Studies in the Philosophy of Science 16 (1):7 – 11.
    This introduction to the special issue on "Aesthetics of Science" reviews recent philosophical research on aesthetic aspects of science. Topics represented in this research include the aesthetic properties of scientific images, theories, and experiments; the relation of science and art; the role of aesthetic criteria in scientific practice and their effect on the development of science; aesthetic aspects of mathematics; the contrast between a classic and a Romantic aesthetic; and the relation between emotion, cognition, and rationality.
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  • Global Visions and the Establishment of Theories of the Earth.Kerry V. Magruder - 2006 - Centaurus 48 (4):234-257.
    During the 17th century, important conventions for the visual representation of the Earth as a whole were established by writers of Theories of the Earth. This essay examines how the emergence of visual representations contributed to the establishment of a new print tradition of multicontextual discourse and critical debate. Four vignettes contrast varying uses of global depictions: the incidental global depictions and mathematical vision of Johannes Kepler; the cosmogonic sections and chemical vision of Robert Fludd; the geogonic sections and mechanical (...)
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  • Making Sense of Sound: Auscultation and Lung Sound Codification in Nineteenth-Century French and German Medicine.Jens Lachmund - 1999 - Science, Technology, and Human Values 24 (4):419-450.
    With the introduction of the technique of auscultation in nineteenth-century medicine, the auditory became a most important means of producing diagnostic knowledge. The correct classification and interpretation of the sounds revealed by auscultation, however, remained an issue of negotiation and often controversy throughout the mid-nineteenth century. This article examines the codification of lung sounds within two cultural and geographic contexts: first, the original approach as it was developed by Laennec and his followers in Paris that came to be dominant in (...)
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  • Pictorial representation.John Kulvicki - 2006 - Philosophy Compass 1 (6):535–546.
    Maps, notes, descriptions, diagrams, flowcharts, photographs, paintings, and prints, all, in one way or another, manage to be about things or stand for them. This article looks at three ways in which philosophers have explained the way that pictures represent the world. It starts by describing some leading perceptual accounts and then surveys contemporary content and structural alternatives.
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  • Representing Experimental Procedures through Diagrams at CERN’s Large Hadron Collider: The Communicatory Value of Diagrammatic Representations in Collaborative Research.Koray Karaca - 2017 - Perspectives on Science 25 (2):177-203.
    In relatively recent years, quite a number of diverse case studies concerning the use of visual displays—such as graphs, diagrams, tables, pictures, drawings, etc.—in both the physical and biological sciences have been offered in the literature of the history and philosophy of science —see, e.g., Miller 1984; Lynch and Woolgar 1990; Baigrie 1996; Pauwels 2006. These case studies have shown that visual representations fulfill important functions in both the theoretical and experimental practices of science, thereby emphasizing the non-verbal dimension of (...)
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  • Representing Representation. [REVIEW]Götz Hoeppe - 2015 - Science, Technology, and Human Values 40 (6):1077-1092.
    This review essay of two edited volumes sketches how STS scholars have analyzed scientific representation and visualization in recent work. Several key foci have emerged, among them attending closely to materiality, engaging the digital through embodied action, turning to ontology, as well as benefitting from artistic practice and critique. In diverse ways these choices are informed by a discontentment with the Cartesian split of mind and body as well as the picture theory of language. Yet, naturalism endures as a template, (...)
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  • Visual Representation and Science: Editors' Introduction.Ari Gross & Eleanor Louson - 2012 - Spontaneous Generations 6 (1):1-7.
    The theme of visual representations in science was already central to our research when we aended the 6th European Spring School on History of Science and Popularization in Menorca, Spain, in 2011. As discussed in the review of this conference by Ignacio SuayMatallana and Mar Cuenca-Lorente (245), many participants not only described the particulars of the generation of individual images, but also broader issues surrounding the constitution of visual domains. We were impressed by the range of scholarship surrounding the production, (...)
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  • A Model for the Division of Semiotic Labor in Scientific Argument: The Interaction of Words and Images.Alan G. Gross - 2011 - Science in Context 24 (4):517-544.
    ArgumentA growing cross-disciplinary literature has acknowledged the importance of verbal-visual interaction in the creation and communication of scientific texts. I contend that the proper understanding of these texts must flow from a hermeneutic model that takes verbal-visual interaction seriously, one that is firmly grounded in cognitive constraints and affordances. The model I propose has two modules, one for perception, derived from Gestalt psychology, the other for cognition, derived from Peirce's semiotics. I apply this model to an important but largely neglected (...)
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  • From phenomenology to field theory: Faraday's visual reasoning.David C. Gooding - 2006 - Perspectives on Science 14 (1):40-65.
    : Faraday is often described as an experimentalist, but his work is a dialectical interplay of concrete objects, visual images, abstract, theoretically-informed visual models and metaphysical precepts. From phenomena described in terms of patterns formed by lines of force he created a general explanation of space-filling systems of force which obey both empirical laws and principles of conservation and economy. I argue that Faraday's articulation of situated experience via visual models into a theory capable of verbal expression owed much to (...)
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  • On the Power of Fine Arts Pictorial Imagery in Science Education.Igal Galili - 2013 - Science & Education 22 (8):1911-1938.
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  • Models, Pictures, and Unified Accounts of Representation: Lessons from Aesthetics for Philosophy of Science.Stephen M. Downes - 2009 - Perspectives on Science 17 (4):417-428.
    Several prominent philosophers of science, most notably Ron Giere, propose that scientific theories are collections of models and that models represent the objects of scientific study. Some, including Giere, argue that models represent in the same way that pictures represent. Aestheticians have brought the picturing relation under intense scrutiny and presented important arguments against the tenability of particular accounts of picturing. Many of these arguments from aesthetics can be used against accounts of representation in philosophy of science. I rely on (...)
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  • The Laboratory Technology of Discrete Molecular Separation: The Historical Development of Gel Electrophoresis and the Material Epistemology of Biomolecular Science, 1945–1970.Howard Hsueh-Hao Chiang - 2009 - Journal of the History of Biology 42 (3):495-527.
    Preparative and analytical methods developed by separation scientists have played an important role in the history of molecular biology. One such early method is gel electrophoresis, a technique that uses various types of gel as its supporting medium to separate charged molecules based on size and other properties. Historians of science, however, have only recently begun to pay closer attention to this material epistemological dimension of biomolecular science. This paper substantiates the historiographical thread that explores the relationship between modern laboratory (...)
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  • Computational biology and the limits of shared vision.Annamaria Carusi - 2011 - Perspectives on Science 19 (3):300-336.
    Since the 1980s, several studies of visual perception have persuasively argued that important aspects of human vision are best accounted for not by recourse to inner mental representations but rather through socially observable actions and behaviors (e.g. Lynch 1985, Latour 1986, Lynch 1990, Goodwin 1994, Goodwin 1997, Sharrock & Coulter 1998). While there are clearly physiological mechanisms required for vision, psychological accounts of perception in terms of inner mental representations have been dislodged from their position as the basic term in (...)
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  • What Is the Use of Diagrams in Theoretical Modeling?Anouk Barberousse - 2013 - Science in Context 26 (2):345-362.
    ArgumentThe use of diagrams is pervasive in theoretical physics. Together with mathematical formulae and natural language, diagrams play a major role in theoretical modeling. They enrich the expressive power of physicists and help them to explore new theoretical ideas. Diagrams are not only heuristic or pedagogical tools, but they are also tools that enable developing the content of models into novel implications.
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  • The Role of Visual Representation in the Scientific Revolution: A Historiographic Inquiry.Renzo Baldasso - 2006 - Centaurus 48 (2):69-88.
    This article provides a strategic history of the role assigned by modern historians to visual representation in early modern science, an aspect of historiography that is largely ignored in the scholarly literature. Despite the current undervaluation of images and visual reasoning, historians in the 1940s and 1950s who established the 20th century concept of the Scientific Revolution, also assigned a conspicuous role to images, claiming 15th century art as a chapter in the history of science and identifying the first modern (...)
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  • Catherine Wilson's the invisible world: Early modern philosophy and the invention of the microscope.Brian S. Baigrie - 1998 - International Studies in the Philosophy of Science 12 (2):165 – 174.
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  • The Unity of Science.Jordi Cat - 2013 - Stanford Encyclopedia of Philosophy.
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