Results for 'science mapping'

977 found
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  1.  50
    Science Mapping and Science Maps.Eugenio Petrovich - 2022 - Knowledge Organization 48 (7-8):535-562.
    Science maps are visual representations of the structure and dynamics of scholarly knowl­edge. They aim to show how fields, disciplines, journals, scientists, publications, and scientific terms relate to each other. Science mapping is the body of methods and techniques that have been developed for generating science maps. This entry is an introduction to science maps and science mapping. It focuses on the conceptual, theoretical, and methodological issues of science mapping, rather than (...)
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  2.  31
    Mere Science: Mapping the Land Bridge Between Emotion, Politics, and Ethics.Donovan O. Schaefer - 2019 - Zygon 54 (2):382-386.
    Lisa Sideris's Consecrating Science: Wonder, Knowledge, and the Natural World (2017) proposes that the call by some science advocates for a new moral framework based on scientific wonder is flawed. Sideris develops a typology of “wonder” with two separate affective axes: “true wonder” that is the prerogative of a sort of dwelling with the overwhelming mystery of life, and “curiosity” that presses to resolve puzzles and break through into a space of total clarity. The former, Sideris writes, is (...)
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  3. Science, maps, and models".Jeffrey Foss - 2013 - In Science and the World: Philosophical Approaches. Peterborough, CA: Broadview Press.
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  4. Epistemic clashes in network science: Mapping the tensions between idiographic and nomothetic subcultures.Mathieu Jacomy - 2020 - Big Data and Society 7 (2).
    This article maps a controversy in network science over the last 15 years, dividing the field about the epistemic status of a central notion, scale-freeness. The article accounts for the two main disputes, in 2005 and in 2018, as they unfolded in academic publications and on social media. This article analyzes the conflict, and the reasons why it reignited in 2018, to the surprise of many. It is argued that the concept of complex networks is shared by the distinct (...)
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  5. Community engagement around poor air quality in London : citizen inquiry in a citizen science "mapping for change" project.Laure Kloetzer, Charlene Jennett, Louise Francis & Muki Haklay - 2018 - In Christothea Herodotou, Mike Sharples & Eileen Scanlon (eds.), Citizen inquiry: synthesising science and inquiry learning. New York: Routledge, Taylor & Francis Group.
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  6.  45
    Mapping one world: Religion and science from an east asian perspective.Shin Jaeshik - 2016 - Zygon 51 (1):204-224.
    This article aims to delineate a model of religion-science relationship from an East Asian perspective. The East Asian way of thinking is depicted as nondualistic, relational, and inclusive. From this point of view, most current Western discourses on the religion-science relationship, including the interconnected models of Pannenberg and Haught, are hierarchical, intellectually centered, and have dualistic tendencies. Taking religion and science as mapping activities, “a multi-map model” presents nonhierarchical, historical, social, multidimensional, communal, and intimate dimensions of (...)
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  7.  2
    Concept Mapping: An Innovative Approach to Clinical Case Analysis in an Undergraduate Medical Education Curriculum in Social Sciences, Humanities, Ethics, and Professionalism.Jeffrey T. Berger, Dana Ribeiro Miller & Melissa Mooney - forthcoming - Cambridge Quarterly of Healthcare Ethics:1-7.
    Although ethics is increasingly integrated in the curriculum of U.S. medical schools, it remains not well integrated with system issues, and social and structural contexts of illness. Moreover, ethical analysis is not often taught as a clinical skill. To address these issues, an outcomes driven course in Social Sciences, Humanities, Ethics and Professionalism (SHEP) was created. Within the course, a web-based concept mapping device, SHEP Case Analysis Tool (SCAT), was created which schematizes the structure and flow of clinical cases (...)
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  8. Science, dualities and the phenomenological map.H. G. Solari & Mario Natiello - 2024 - Foundations of Science 29 (2):377-404.
    We present an epistemological schema of natural sciences inspired by Peirce's pragmaticist view, stressing the role of the \emph{phenomenological map}, that connects reality and our ideas about it. The schema has a recognisable mathematical/logical structure which allows to explore some of its consequences. We show that seemingly independent principles as the requirement of reproducibility of experiments and the Principle of Sufficient Reason are both implied by the schema, as well as Popper's concept of falsifiability. We show that the schema has (...)
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  9.  9
    Mapping Approaches to ‘Citizen Science’ and ‘Community Science’ and Everything In-between: The Evolution of New Epistemic Territory?Nick Hacking, Jamie Lewis & Robert Evans - 2024 - Minerva 62 (4):549-572.
    Over the last decade or so, the rate of growth of academic publications involving discussion of ‘citizen science’ and ‘community science’, and similar variants, has risen exponentially. These fluid terms, with no fixed definition, cover a continuum of public participation within a range of scientific activities. It is, therefore, apposite and timely to examine the evolving typologies of citizen science and community science and to ask how particular disciplinary actors are shaping content and usage. Do certain (...)
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  10.  87
    Citizen Science and Scientific Objectivity: Mapping Out Epistemic Risks and Benefits.Baptiste Bedessem & Stéphanie Ruphy - 2020 - Perspectives on Science 28 (5):630-654.
    . Given the importance of the issue of scientific objectivity in our democratic societies and the significant development of citizen science, it is crucial to investigate how citizen science may either undermine or foster scientific objectivity. This paper identifies a variety of epistemic risks and benefits that participation of lay citizens in scientific inquiries may bring. It also discusses concrete actions and pending issues that should be addressed in order to foster objectivity in citizen science programs.
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  11.  29
    The Map and the Territory: Exploring the Foundations of Science, Thought and Reality.Shyam Wuppuluri & Francisco Antonio Doria (eds.) - 2018 - Cham: Springer.
    This volume presents essays by pioneering thinkers including Tyler Burge, Gregory Chaitin, Daniel Dennett, Barry Mazur, Nicholas Humphrey, John Searle and Ian Stewart. Together they illuminate the Map/Territory Distinction that underlies at the foundation of the scientific method, thought and the very reality itself. It is imperative to distinguish Map from the Territory while analyzing any subject but we often mistake map for the territory. Meaning for the Reference. Computational tool for what it computes. Representations are handy and tempting that (...)
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  12.  31
    Mapping the use of epistemic concepts in the biomedical sciences: Code and dataset.Christophe Malaterre & Martin Léonard - unknown
    This release includes the code and supplementary information mentioned in: Malaterre, Christophe & Martin Léonard. 2023. "Charting the Territories of Epistemic Concepts in the Practice of Science: A Text-Mining Approach", British Journal for the Philosophy of Science.
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  13.  50
    A Geohistorical Study of 'The Rise of Modern Science': Mapping Scientific Practice Through Urban Networks, 1500–1900. [REVIEW]Peter J. Taylor, Michael Hoyler & David M. Evans - 2008 - Minerva 46 (4):391-410.
    Using data on the ‘career’ paths of one thousand ‘leading scientists’ from 1450 to 1900, what is conventionally called the ‘rise of modern science’ is mapped as a changing geography of scientific practice in urban networks. Four distinctive networks of scientific practice are identified. A primate network centred on Padua and central and northern Italy in the sixteenth century expands across the Alps to become a polycentric network in the seventeenth century, which in turn dissipates into a weak polycentric (...)
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  14.  14
    World-Maps for Finding the Direction and Distance to Mecca: Innovation and Tradition in Islamic Science.David A. King - 1999 - Brill.
    The author describes how Muslims over the centuries have determined the sacred direction towards Mecca and presents two highly sophisticated Mecca-centred world-maps for finding the qibla . These recently-discovered world-maps have forced a reevaluation of Muslim achievements in mathematics and cartography.
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  15.  14
    Mapping science theatre: collaboration, creativity and unbounded diversity in science communication.Daniel G. Marques - forthcoming - Metascience:1-4.
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  16. New Maps for Old: Explorations in Science and Religion.Mary Gerhart & Allan Melvin Russell - 2001
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  17.  28
    Mapping Reality: An Evolutionary Realist Methodology for the Natural and Social Sciences.Jane Azevedo - 1997 - State University of New York Press.
    Using the insights of evolutionary epistemology, the author develops a new naturalist realist methodology of science, and applies it to the conceptual, practical, and ethical problems of the social sciences.
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  18.  36
    Mapping the Maze of Feminist Philosophy of Science.Heidi E. Grasswick - 2008 - Metascience 17 (2):231-235.
  19.  47
    Mapping the space of time: temporal representation in the historical sciences.Robert J. O'Hara - 1996 - Memoirs of the California Academy of Sciences 20: 7–17.
    William Whewell (1794–1866), polymathic Victorian scientist, philosopher, historian, and educator, was one of the great neologists of the nineteenth century. Although Whewell's name is little remembered today except by professional historians and philosophers of science, researchers in many scientific fields work each day in a world that Whewell named. "Miocene" and "Pliocene," "uniformitarian" and "catastrophist," "anode" and "cathode," even the word "scientist" itself—all of these were Whewell coinages. Whewell is particularly important to students of the historical sciences for another (...)
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  20.  42
    The Mapping Metaphor in Philosophy of Science.Sergio Sismondo - 1998 - Cogito 12 (1):41-50.
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  21.  51
    Mapping the Code. The Human Genome Project and the Choices of Modern Science.David Weatherall - 1992 - Journal of Medical Ethics 18 (2):109-110.
  22.  32
    Mapping science's imagined community: geography as a Republic of Letters, 1600–1800.Robert Mayhew - 2005 - British Journal for the History of Science 38 (1):73-92.
    This paper extends discussions of the sociology of the early modern scientific community by paying particular attention to the geography of that community. The paper approaches the issue in terms of the scientific community's self image as a Republic of Letters. Detailed analysis of patterns of citation in two British geography books is used to map the ‘imagined community’ of geographers from the late Renaissance to the age of Enlightenment. What were the geographical origins of authors cited in geography books (...)
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  23.  27
    World-Maps for Finding the Direction and Distance to Mecca: Innovation and Tradition in Islamic Science. David A. King.Roser Puig - 2001 - Isis 92 (2):360-362.
  24.  17
    Journeys, Maps, and Territories: Charting Uncertain Terrain in Science and Literature.Carl A. Rubino - 1997 - Intertexts 1 (2):118-130.
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  25. Concept mapping: A tool to develop reflective science instruction.Cheryl L. Mason - 1992 - Science Education 76 (1):51-63.
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  26.  11
    Introduction: Redrawing the Map of Science in Modern China.Shellen X. Wu - 2022 - Isis 113 (4):797-804.
    This essay provides an overview of the Local Gazetteers Research Tools (LoGaRT) developed by the Max Planck Institute for the History of Science and examines the ways that LoGaRT could aid in redrawing the map of modern science in China.
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  27. (2 other versions)Redrawing the map and resetting the time: Phenomenology and the cognitive sciences.Shaun Gallagher & Francisco Varela - 2001 - Canadian Journal of Philosophy.
  28. Public Value Mapping and Science Policy Evaluation.Barry Bozeman & Daniel Sarewitz - 2011 - Minerva 49 (1):1-23.
    Here we present the framework of a new approach to assessing the capacity of research programs to achieve social goals. Research evaluation has made great strides in addressing questions of scientific and economic impacts. It has largely avoided, however, a more important challenge: assessing (prospectively or retrospectively) the impacts of a given research endeavor on the non-scientific, non-economic goals—what we here term public values —that often are the core public rationale for the endeavor. Research programs are typically justified in terms (...)
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  29.  24
    Mapping do-it-yourself science.Federico Ferretti - 2019 - Life Sciences, Society and Policy 15 (1):1-23.
    The emergence of Do-It-Yourself science movements is becoming a topic widely discussed in academia and policy, as well as by the general public and the media. While DIY approaches enjoy increasing diffusion even in official research, different social actors frequently talk about them in different ways and circumstances. Interaction and negotiation processes amongst actors define the premises upon which different conceptualisations of DIY science are deployed.
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  30. Volume 4: Social Sciences and Humanities Libraries, including Area/ Ethnic, Art, Geography/map, History, Music, Religion/theology, Theatre, and Urban/regional Planning Libraries.[author unknown] - unknown
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  31.  14
    GIS for science: applying mapping and spatial analytics.Dawn J. Wright, Christian Harder & Jared M. Diamond (eds.) - 2019 - Redlands, California: Esri Press.
    GIS for Science presents a collection of real-world stories about modern science and a cadre of scientists who use mapping and spatial analytics to expand their understanding of the world. The accounts in this book are written for a broad audience including professional scientists, the swelling ranks of citizen scientists, and people generally interested in science and geography. Scientific data are brought to life with GIS technology to study a range of issues relevant to the functioning (...)
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  32.  7
    Genetics, Ethics, and Human Values: Human Genome Mapping, Genetic Screening, and Gene Therapy : Proceedings of the XXIVth CIOMS Conference, Tokyo and Inuyama City, Japan, 22-27 July 1990.Z. Bankowski, Alexander Morgan Capron, Council for International Organizations of Medical Sciences, Nihon Gakujutsu Kaigi & Unesco - 1991
  33.  7
    Science and Logic of Time Maps.Flavia Santoianni - 2015 - In The Concept of Time in Early Twentieth-Century Philosophy: A Philosophical Thematic Atlas. Cham: Springer Verlag.
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  34.  25
    Genomics in the UK: Mapping the Social Science Landscape.Michael Banner & Jonathan Suk - 2006 - Genomics, Society and Policy 2 (2):1-27.
    This paper has been prepared from the perspective of the ESRC Genomics Policy & Research Forum, which has the particular mandate of linking social science research on genomics with ongoing public and policy debates. It is intended as a contribution to discussions about the future agenda for social scientific analyses of genomics. Given its scope, this paper is necessarily painted with a broad brush. It is presented in the hope that it can serve both as a useful reference for (...)
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  35.  46
    When Maps Become the World.Rasmus Grønfeldt Winther - 2020 - University of Chicago Press.
    Map making and, ultimately, _map thinking_ is ubiquitous across literature, cosmology, mathematics, psychology, and genetics. We partition, summarize, organize, and clarify our world via spatialized representations. Our maps and, more generally, our representations seduce and persuade; they build and destroy. They are the ultimate record of empires and of our evolving comprehension of our world. This book is about the promises and perils of map thinking. Maps are purpose-driven abstractions, discarding detail to highlight only particular features of a territory. By (...)
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  36. Textbooks on the Map of Sciences Studies.Bernadette Bensuade-Vincent - 2006 - Science & Education 15:667-670.
     
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  37.  29
    Textbooks on the map of science studies.Bernadette Bensaude-Vincent - 2006 - Science & Education 15 (7):667-670.
  38.  37
    Science Since 1500: A Short History of Mathematics, Physics, Chemistry, Biology. By H. T. Pledge (London: H.M. Stationery Office. 1939. Pp. 357. with Plates, Diagrams, and Maps. Price 7s. 6d. net.). [REVIEW]Herbert Dingle - 1941 - Philosophy 16 (63):321-.
  39.  22
    Diagrams, images and conceptual maps in nursing education.Christine Durmis & Daniel A. Wilkenfeld - 2023 - Nursing Philosophy 24 (3):e12441.
    The way in which one understands information and concepts, and the way a student works to develop this, is an individual aspect of learning that cannot be universally defined as (at least manifested) the same for everyone. ‘Understanding’ is a broad term, and the way one achieves understanding is dependent on the way that material is presented. In this article, we argue that the philosophy of science can be important to nursing education—in particular, by showing that the way we (...)
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  40.  64
    What does interdisciplinarity look like in practice: Mapping interdisciplinarity and its limits in the environmental sciences.Miles MacLeod & Michiru Nagatsu - 2018 - Studies in History and Philosophy of Science Part A 67:74-84.
    In this paper we take a close look at current interdisciplinary modeling practices in the environmental sciences, and suggest that closer attention needs to be paid to the nature of scientific practices when investigating and planning interdisciplinarity. While interdisciplinarity is often portrayed as a medium of novel and transformative methodological work, current modeling strategies in the environmental sciences are conservative, avoiding methodological conflict, while confining interdisciplinary interactions to a relatively small set of pre-existing modeling frameworks and strategies (a process we (...)
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  41.  26
    Acknowledgments-based networks for mapping the social structure of research fields. A case study on recent analytic philosophy.Eugenio Petrovich - 2022 - Synthese 200 (3):1-40.
    In the last decades, research in science mapping has delivered several powerful techniques, based on citation or textual analysis, for charting the intellectual organization of research fields. To map the social network underlying science and scholarship, by contrast, science mapping has mainly relied on one method, co-authorship analysis. This method, however, suffers from well-known limitations related to the practice of authorship. Moreover, it does not perform well on those fields where multi-authored publications are rare. In (...)
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  42. Mapping of science: Possibilities and limitations A. Rip center for studies of science and society de boerderij.A. F. J. van Raan - 1988 - In A. F. J. Van Raan (ed.), Handbook of quantitative studies of science and technology. New York, N.Y., U.S.A.: Sole distributors for the U.S.A. and Canada, Elsevier Science Pub. Co..
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  43.  10
    Cartography of science: scientometric mapping with multidimensional scaling methods.Robert Jaap Walter Tijssen - 1992 - Leiden, Netherlands: DSWO Press, Leiden University.
  44. Using concept mapping for assessing and promoting relational conceptual change in science.Xiufeng Liu - 2004 - Science Education 88 (3):373-396.
  45.  34
    Of maps and chaps: David N. Livingstone and Charles W. J. Withers : Geographies of nineteenth-century science. Chicago and London: University of Chicago Press, 2011, 536pp, $55.00 HB.Geoffrey Cantor - 2013 - Metascience 23 (1):191-194.
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  46.  86
    Mapping Moral Injury: Comparing Discourses of Moral Harm.Joseph Wiinikka-Lydon - 2019 - Journal of Medicine and Philosophy 44 (2):175-191.
    Moral injury is a term whose popularity has grown in psychology and psychiatry, as well as philosophy, over the last several years. This presents challenges, because these fields use the term in different ways and draw their understanding from different sources, creating the potential for contradiction. This, however, is also an opportunity. Comparison between behavioral sciences and philosophy can help enrich understandings of harms considered not just psychological but moral. To this end, I provide an overview of the more influential (...)
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  47.  42
    Science and Civilization in China. By Joseph Needham, F.R.S., with the research assistance of L. Wang. Volume I, “Introductory Orientations.' [Pp. xxxviii + 318, with 36 figures, 13 plates, 9 tables, and two folded-in maps.] (Cambridge: The University Press, 1954. Price 52s. 6d. net.). [REVIEW]H. H. Dubs - 1955 - Philosophy 30 (115):362-.
  48.  25
    Mapping Superpositionality in Global Ethnography.Logan D. A. Williams - 2018 - Science, Technology, and Human Values 43 (2):198-223.
    Science studies scholars often study up to high-tech elites who produce and design scientific knowledge and technology. Methodological tension begins when you pair a desire to study down to less economically developed countries, with the desire to study up to high-tech elites within them. This becomes further complicated when the ethnographer and his/her informants share professional interests and credentials. In these situations, the researcher has high status because of geopolitical privilege. However, the researcher is neither a high-tech elite nor (...)
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  49.  47
    Refined concept maps for science education: A feasibility study.Meena Kharatmal & G. Nagarjuna - 2009 - Proceedings of Conference epiSTEME 3:76-80.
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  50.  9
    Mapping Michel Serres.Niran B. Abbas (ed.) - 2005 - Ann Arbor: University of Michigan Press.
    "Provides an extremely valuable introduction to the work of Michel Serres for an English-speaking audience, as well as offering useful critical approaches for those already familiar with its outlines." ---Robert Harrison, Stanford University [blurb from review pending permission] The work of Michel Serres---including the books Hermes, The Parasite, The Natural Contract, Genesis, The Troubadour of Knowledge, and Conversations on Science, Culture, and Time---has stimulated readers for years, as it challenges the boundaries of science, literature, culture, language, and epistemology. (...)
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