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Crossing boundaries: knowledge, disciplinarities, and interdisciplinarities

Charlottesville, Va.: University Press of Virginia (1996)

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  1. A Philosophical Inquiry into the Linguistic Findings of Writing Research Articles (RAs) in Philosophy A Case Study: The Genre Analysis of Abstracts in SOOCHOW JOURNAL OF PHILOSOPHICAL STUDIES from 2017 to 2021.Jr-Jiun Lian - 2023 - Taiwanese Philosophical Association Annual Conference 2023.
    In this paper, I expand my upon earlier linguistic research (Lian, 2023), which delved into the genre of abstracts from Western philosophical papers. I engage with the philosophical ramifications emanating from the guidelines established for crafting philosophy paper abstracts (Lian, 2023) and underscore their significance in the domain of academic philosophical writing. A pivotal focus of this research is to navigate the intricate philosophical challenges posed by cross-disciplinary investigations bridging applied linguistic statistics with philosophical paper composition, specifically, the nuanced interpretation (...)
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  • (1 other version)Structural-Epistemic Interdisciplinarity and the Nature of Interdisciplinary Challenges.Catalin Barboianu - 2022 - Logos and Episteme 1 (13):7-35.
    Research on interdisciplinarity has been concentrated on the methodological and educational aspects of this complex phenomenon and less on its theoretical nature. Within a theoretical framework specific to the philosophy of science, I propose a structural scheme of how interdisciplinary processes go, focusing on the concepts of availability of the methods, concept linking, and theoretical modeling. In this model, the challenges interdisciplinarity is claimed to pose to its practitioners are of the same nature as the challenges scientists encounter within the (...)
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  • (1 other version)Imagination and Actionability: Refections on the Future of Interdisciplinarity.Machiel Keestra - 2019 - Issues in Interdisciplinary Studies 2 (37):110-129.
    When introduced around 1925, interdisciplinarity, grounded in the notion of the unity of knowledge, was meant to reconnect the fragmented and specialized disciplines of academia. However, interdisciplinary research became more and more challenging as the plurality and heterogeneity of disciplinary perspectives and insights increased. Insisting on this divergence and diversity, Julie Thompson Klein has nonetheless contributed in important ways to convergence in interdisciplinarity with her work on the process of integration as interdisciplinarity's defining feature. Of course, she is aware that (...)
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  • Too many cities in the city? Interdisciplinary and transdisciplinary city research methods and the challenge of integration.Machiel Keestra - 2020 - In Nanke Verloo & Luca Bertolini (eds.), Seeing the City: Interdisciplinary Perspectives on the Study of the Urban. pp. 226-242.
    Introduction: Interdisciplinary, transdisciplinary and action research of a city in lockdown. As we write this chapter, most cities across the world are subject to a similar set of measures due to the spread of COVID-19 coronavirus, which is now a global pandemic. Independent of city size, location, or history, an observer would note that almost all cities have now ground to a halt, with their citizens being confined to their private dwellings, social and public gatherings being almost entirely forbidden, and (...)
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  • The interdisciplinarity revolution.Vincenzo Politi - 2019 - Theoria. An International Journal for Theory, History and Foundations of Science 34 (2):237.
    Contemporary interdisciplinary research is often described as bringing some important changes in the structure and aims of the scientific enterprise. Sometimes, it is even characterized as a sort of Kuhnian scientific revolution. In this paper, the analogy between interdisciplinarity and scientific revolutions will be analysed. It will be suggested that the way in which interdisciplinarity is promoted looks similar to how new paradigms were described and defended in some episodes of revolutionary scientific change. However, contrary to what happens during some (...)
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  • Specialisation, Interdisciplinarity, and Incommensurability.Vincenzo Politi - 2017 - International Studies in the Philosophy of Science 31 (3):301-317.
    Incommensurability may be regarded as driving specialisation, on the one hand, and as posing some problems to interdisciplinarity, on the other hand. It may be argued, however, that incommensurability plays no role in either specialisation or interdisciplinarity. Scientific specialties could be defined as simply 'different' (that is, about different things), rather than 'incommensurable' (that is, competing for the explanation of the same phenomena). Interdisciplinarity could be viewed as the co- ordinated effort of scientists possessing complemetary and interlocking skills, and not (...)
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  • A most interesting chapter in the history of science.Donna J. Drucker - 2012 - History of the Human Sciences 25 (1):75-98.
    There were three broad categories of academic responses to Alfred Kinsey’s Sexual Behavior in the Human Male (Kinsey, Pomeroy and Martin, 1948): method; findings; and broader reflections on the book’s place in American social life and democracy. This article focuses primarily on archival academic responses to Kinsey’s work that appeared in the year following the book’s publication. Many academics agreed that some aspects of Kinsey’s method were flawed and that his interpretations sometimes overreached his raw data. Nonetheless, they also agreed (...)
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  • Boundary Work and Power in the Controversy Over Therapeutic Touch in Finnish Nursing Science.Pia Vuolanto - 2015 - Minerva 53 (4):359-380.
    The boundary work approach has been established as one of the main ways to study controversies in science. However, it has been proposed that it does not meet the power dynamics of the scientific field sufficiently. This article concentrates on the intertwining of boundary work and power. It combines the boundary work approach developed by Thomas Gieryn and the analysis of power in the work of Pierre Bourdieu. Based on a literature review and an analysis of a controversy over therapeutic (...)
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  • Authors’ Response: A Perspectivist View on the Perspectivist View of Interdisciplinary Science.H. F. Alrøe & E. Noe - 2014 - Constructivist Foundations 10 (1):88-95.
    Upshot: In our response we focus on five questions that point to important common themes in the commentaries: why start in wicked problems, what kind of system is a scientific perspective, what is the nature of second-order research processes, what does this mean for understanding interdisciplinary work, and how may polyocular research help make real-world decisions.
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  • Second-Order Science of Interdisciplinary Research: A Polyocular Framework for Wicked Problems.Hugo F. Alrøe & E. Noe - 2014 - Constructivist Foundations 10 (1):65-76.
    Context: The problems that are most in need of interdisciplinary collaboration are “wicked problems,” such as food crises, climate change mitigation, and sustainable development, with many relevant aspects, disagreement on what the problem is, and contradicting solutions. Such complex problems both require and challenge interdisciplinarity. Problem: The conventional methods of interdisciplinary research fall short in the case of wicked problems because they remain first-order science. Our aim is to present workable methods and research designs for doing second-order science in domains (...)
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  • Interdisciplinarity in ethics and the ethics of interdisciplinarity.Anne Balsamo & Carl Mitcham - 2010 - In Robert Frodeman, Julie Thompson Klein & Carl Mitcham (eds.), The Oxford Handbook of Interdisciplinarity. Oxford, United Kingdom: Oxford University Press. pp. 259.
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  • Philosophy of and as interdisciplinarity.Michael Hg Hoffmann, Jan C. Schmidt & Nancy J. Nersessian - 2013 - Synthese 190 (11):1857-1864.
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  • The Act of Collaborative Creation and the Art of Integrative Creativity: Originality, Disciplinarity and Interdisciplinarity.Diana Rhoten, Erin O'Connor & Edward J. Hackett - 2009 - Thesis Eleven 96 (1):83-108.
    Csikszentmihalyi (1999: 314) argues that 'creativity is a process that can be observed only at the intersection where individuals, domains, and fields intersect'. This article discusses the relationship between creativity and interdisciplinarity in science. It is specifically concerned with interdisciplinary collaboration, interrogating the processes that contribute to the collaborative creation of original ideas and the practices that enable creative integration of diverse domains. It draws on results from a novel real-world experiment in which small interdisciplinary groups of graduate students were (...)
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  • Is Christian theology well suited to enter the discussion between science and humanism?Lluís Oviedo - 2006 - Zygon 41 (4):825-842.
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  • The Edinburgh Companion to the New European Humanities.Rosi Braidotti, Hiltraud Casper-Hehne, Marjan Ivković & Daan F. Oostveen (eds.) - 2024 - Edinburgh University Press.
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  • STS, Meet Data Science, Once Again.David Ribes - 2019 - Science, Technology, and Human Values 44 (3):514-539.
    Science and technology studies and the emerging field of data science share surprising elective affinities. At the growing intersections of these fields, there will be many opportunities and not a few thorny difficulties for STS scholars. First, I discuss how both fields frame the rollout of data science as a simultaneously social and technical endeavor, even if in distinct ways and for diverging purposes. Second, I discuss the logic of domains in contemporary computer, information, and data science circles. While STS (...)
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  • Hidden in the Middle: Culture, Value and Reward in Bioinformatics.Jamie Lewis, Andrew Bartlett & Paul Atkinson - 2016 - Minerva 54 (4):471-490.
    Bioinformatics – the so-called shotgun marriage between biology and computer science – is an interdiscipline. Despite interdisciplinarity being seen as a virtue, for having the capacity to solve complex problems and foster innovation, it has the potential to place projects and people in anomalous categories. For example, valorised ‘outputs’ in academia are often defined and rewarded by discipline. Bioinformatics, as an interdisciplinary bricolage, incorporates experts from various disciplinary cultures with their own distinct ways of working. Perceived problems of interdisciplinarity include (...)
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  • Interdisciplinarity as Academic Accountability: Prospects for Quality Control Across Disciplinary Boundaries.Katri Huutoniemi - 2016 - Social Epistemology 30 (2):163-185.
    Two major science policy issues are the integration of knowledge across academic disciplines and the accountability of science to society. Instead of adding new or external criteria for research evaluation, I argue, these goals can be pursued by subjecting disciplinary priorities and procedures to broader scrutiny from the rest of academia. From a social epistemological perspective, the paper discusses interdisciplinarity as a mode of epistemic accountability across disciplinary boundaries, which promises to make academia more than the sum of its disciplinary (...)
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  • Epistemology for interdisciplinary research – shifting philosophical paradigms of science.Mieke Boon & Sophie Van Baalen - 2018 - European Journal for Philosophy of Science 9 (1):16.
    In science policy, it is generally acknowledged that science-based problem-solving requires interdisciplinary research. For example, policy makers invest in funding programs such as Horizon 2020 that aim to stimulate interdisciplinary research. Yet the epistemological processes that lead to effective interdisciplinary research are poorly understood. This article aims at an epistemology for interdisciplinary research, in particular, IDR for solving ‘real-world’ problems. Focus is on the question why researchers experience cognitive and epistemic difficulties in conducting IDR. Based on a study of educational (...)
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  • Comprehending and Regulating Financial Crises: An Interdisciplinary Approach.Nina Bandelj, Julia Elyachar, Gary Richardson & James Owen Weatherall - 2016 - Perspectives on Science 24 (4):443-473.
    Soon after the 2008 financial crisis, Gillian Tett, an anthropologist and the US Managing Editor of the Financial Times, suggested that regulators’ and practitioners’ inability to anticipate and respond to deep problems in the financial industry could be traced back to what she called “silo thinking,” wherein experts in one area know nothing about the methods and research of other areas. As she put it, “the essential challenges for investors today…”—and, we might add, for regulators and academics—is “to understand the (...)
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  • Embedding philosophers in the practices of science: bringing humanities to the sciences.Nancy Tuana - 2013 - Synthese 190 (11):1955-1973.
    The National Science Foundation (NSF) in the United States, like many other funding agencies all over the globe, has made large investments in interdisciplinary research in the sciences and engineering, arguing that interdisciplinary research is an essential resource for addressing emerging problems, resulting in important social benefits. Using NSF as a case study for problem that might be relevant in other contexts as well, I argue that the NSF itself poses a significant barrier to such research in not sufficiently appreciating (...)
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  • New Directions in Interdisciplinarity: Broad, Deep, and Critical.Carl Mitcham & Robert Frodeman - 2007 - Bulletin of Science, Technology and Society 27 (6):506-514.
    Aristotle launched Western knowledge on a trajectory toward disciplinarity that continues to this day. But is the knowledge management project that began with Aristotle adequate for the age of Google? Perhaps an undisciplined discourse more evocative of Plato can help us constitute new, more relevant inter- and transdisciplinary forms of knowledge. This article explores the history of disciplinarity and interdisciplinarity, arguing for a new, critical form of interdisciplinarity that moves beyond the academy into dialogue with the public and private sectors. (...)
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  • Visualising the Interdisciplinary Research Field: The Life Cycle of Economic History in Australia.Claire Wright & Simon Ville - 2017 - Minerva 55 (3):321-340.
    Interdisciplinary research is frequently viewed as an important component of the research landscape through its innovative ability to integrate knowledge from different areas. However, support for interdisciplinary research is often strategic rhetoric, with policy-makers and universities frequently adopting practices that favour disciplinary performance. We argue that disciplinary and interdisciplinary research are complementary, and we develop a simple framework that demonstrates this for a semi-permanent interdisciplinary research field. We argue that the presence of communicating infrastructures fosters communication and integration between disciplines (...)
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  • Transdisciplinarity in objects.Anti Randviir - 2011 - Sign Systems Studies 39 (2-4):88-121.
    Contemporary sociosemiotics is a way to transcend borderlines between trends inside semiotics, and also other disciplines. Whereas semiotics has been considered as an interdisciplinary field of research par excellence, sociosemiotics can point directions at transdisciplinary research. The present article will try toconjoin the structural and the processual views on culture and society, binding them together with the notion of signification. The signification of space willillustrate the dynamic between both cultures and metacultures, and cultural mainstreams and subcultures. This paper pays attention (...)
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  • Habermas, Argumentation Theory, and Science Studies: Toward Interdisciplinary Cooperation.William Rehg - 2003 - Informal Logic 23 (2):161-182.
    This article examines two approaches to the analysis and critical assessment of scientific argumentation. The first approach employs the discourse theory that Jurgen Habermas has developed on the basis of his theory of communicative action and applied to the areas of politics and law. Using his analysis of law and democracy in his Between Facts and Norms as a kind of template, I sketch the main steps in a Habermasian discourse theory of science. Difficulties in his approach motivate my proposal (...)
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  • Philosophical intervention and cross-disciplinary science: the story of the Toolbox Project.Michael O'Rourke & Stephen J. Crowley - 2013 - Synthese 190 (11):1937-1954.
    In this article we argue that philosophy can facilitate improvement in cross-disciplinary science. In particular, we discuss in detail the Toolbox Project, an effort in applied epistemology that deploys philosophical analysis for the purpose of enhancing collaborative, cross-disciplinary scientific research through improvements in cross-disciplinary communication. We begin by sketching the scientific context within which the Toolbox Project operates, a context that features a growing interest in and commitment to cross-disciplinary research (CDR). We then develop an argument for the leading idea (...)
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  • 2 Shaping the Integration of Arts, Humanities and Social Sciences in Interdisciplinary and Transdisciplinary Research.Bianca Vienni-Baptista, Isabel Fletcher, Jack Spaapen, Doireann Wallace & Jane Ohlmeyer - 2024 - In Rosi Braidotti, Hiltraud Casper-Hehne, Marjan Ivković & Daan F. Oostveen (eds.), The Edinburgh Companion to the New European Humanities. Edinburgh University Press. pp. 47-65.
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  • Shared Cognitive–Emotional–Interactional Platforms: Markers and Conditions for Successful Interdisciplinary Collaborations.Kyoko Sato, Michèle Lamont & Veronica Boix Mansilla - 2016 - Science, Technology, and Human Values 41 (4):571-612.
    Given the growing centrality of interdisciplinarity to scientific research, gaining a better understanding of successful interdisciplinary collaborations has become imperative. Drawing on extensive case studies of nine research networks in the social, natural, and computational sciences, we propose a construct that captures the multidimensional character of such collaborations, that of a shared cognitive–emotional–interactional platform. We demonstrate its value as an integrative lens to examine markers of and conditions for successful interdisciplinary collaborations as defined by researchers involved in these groups. We (...)
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  • Quibbling and the Fallacy of Critical Scholarship: Response to Thorstensen.Heidrun Åm - 2014 - NanoEthics 8 (3):251-254.
    In this text, I respond to a paper by Erik Thorstensen entitled “Public Involvement and Narrative Fallacies of Nanotechnologies.” In his paper, Thorstensen critically reviews a previous ELSA project on engagement and nanotechnology known by the acronym DEEPEN. While I agree that the ELSA community could benefit from the critical examination of earlier research, I believe the approach taken by Thorstensen is not a constructive one. My response deals with three main issues: the character of the paper, narrative theory, and (...)
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  • Epistemological or Political? Unpacking Ambiguities in the Field of Interdisciplinarity Studies.Dorte Madsen - 2018 - Minerva 56 (4):453-477.
    This paper unpacks ambiguities in the field of interdisciplinarity studies, explores where they come from and how they inhibit consolidation of the field. The paper takes its point of departure in two central fault lines in the literature: the relationship between interdisciplinarity and disciplinarity and the question of whether integration is a necessary prerequisite for interdisciplinarity. Opposite positions on the fault lines are drawn out to identify sources of ambiguities, and to examine whether the positions are irreconcilable - or disagreements (...)
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  • Situational analysis as a framework for interdisciplinary research in the social sciences.Jan Kalenda - 2016 - Human Affairs 26 (3):340-355.
    This study presents situational analysis as a suitable framework for the development of qualitatively-oriented interdisciplinary research in the social sciences. The article argues that even though interdisciplinary research is considered a coveted form of research practice, it is not particularly well developed in the social sciences. This is partly due to institutional barriers, but also because the majority of disciplines lack a suitable theoretical and methodological framework capable of unifying a variety of theoretical bases and primarily methodological processes. Situational analysis, (...)
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  • What is a problem?Jan C. Schmidt - 2011 - Poiesis and Praxis 7 (4):249-274.
    Among others, the term problem plays a major role in the various attempts to characterize interdisciplinarity or transdisciplinarity, as used synonymously in this paper. Interdisciplinarity is regarded as problem solving among science, technology and society and as problem orientation beyond disciplinary constraints. The point of departure of this paper is that the discourse and practice of ID have problems with the problem. The objective here is to shed some light on the vague notion of problem in order to advocate a (...)
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  • The CDF collaboration and argumentation theory: The role of process in objective knowledge.William Rehg & Kent Staley - 2008 - Perspectives on Science 16 (1):1-25.
    : For philosophers of science interested in elucidating the social character of science, an important question concerns the manner in which and degree to which the objectivity of scientific knowledge is socially constituted. We address this broad question by focusing specifically on philosophical theories of evidence. To get at the social character of evidence, we take an interdisciplinary approach informed by categories from argumentation studies. We then test these categories by exploring their applicability to a case study from high-energy physics. (...)
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  • Towards a philosophy of interdisciplinarity.Jan Schmidt - 2007 - Poiesis and Praxis 5 (1):53-69.
    This paper aims to contribute to the expanding discourse on inter- and transdisciplinarity. Referring to well-established distinctions in philosophy of science, the paper argues in favor of a plurality of four different dimensions: Interdisciplinarity with regard to objects, knowledge/theories, methods/practices, and further, problem perception/problem solving. Different philosophical thought traditions can be related to these distinguishable meanings. The philosophical framework of the four different dimensions will be illustrated by some of the most popular examples of research programs that are labeled interdisciplinary (...)
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  • Philosophy of and as interdisciplinarity.Michael H. G. Hoffmann, Jan C. Schmidt & Nancy J. Nersessian - 2013 - Synthese 190 (11):1857-1864.
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  • Transdisciplinarity: The New Challenge for Biomedical Research.Joske F. G. Bunders, Jacqueline E. W. Broerse, Rebecca Teclemariam-Mesbah & J. Francisca Flinterman - 2001 - Bulletin of Science, Technology and Society 21 (4):253-266.
    During the past decade, patient participation became an important issue in the medical field, and patient participation in biomedical research processes is increasingly called for. One of the arguments for this refers to the specific kind of knowledge, called experiential knowledge, patients could contribute. Until now, participation of patients in biomedical research has been rare, and integration of patients’ experiential knowledge with scientific knowledge—in the few cases it takes place—occurs implicitly and on an ad hoc basis. This is illustrated by (...)
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  • Interdisciplinarity and Peirce's classification of the sciences: A centennial reassessment.Ahti-Veikko Pietarinen - 2006 - Perspectives on Science 14 (2):127-152.
    : This paper discusses the American scientist and philosopher Charles S. Peirce's (1839–1914) classification of the sciences from the contemporary perspective of interdisciplinary studies. Three theses are defended: (1) Studies on interdisciplinarity pertain to the intermediate class of Peirce's classification of all science, the sciences of review (retrospective science), ranking below the sciences of discovery (heuretic sciences) and above practical science (the arts). (2) Scientific research methods adopted by interdisciplinary inquiries are cross-categorial. Making them converge to an increasing extent with (...)
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  • John Tooby y Leda Cosmides: psicología evolutiva y falsa interdisciplina.Julio Muñoz Rubio - 2018 - Metatheoria – Revista de Filosofía E Historia de la Ciencia 8:87--96.
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  • Measuring Interdisciplinary Research Categories and Knowledge Transfer: A Case Study of Connections between Cognitive Science and Education.Alan L. Porter, Stephen F. Carley, Caitlin Cassidy, Jan Youtie, David J. Schoeneck, Seokbeom Kwon & Gregg E. A. Solomon - 2019 - Perspectives on Science 27 (4):582-618.
    This is a “bottom-up” paper in the sense that it draws lessons in defining disciplinary categories under study from a series of empirical studies of interdisciplinarity. In particular, we are in the process of studying the interchange of research-based knowledge between Cognitive Science and Educational Research. This has posed a set of design decisions that we believe warrant consideration as others study cross-disciplinary research processes.
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  • Asymmetric Epistemology: Field Notes from Training in Two Disciplines.Apollonya Maria Porcelli & Amy S. Teller - 2019 - Perspectives on Science 27 (2):187-213.
    The epistemic barriers to interdisciplinarity are understudied. To fill this gap, we ask whether a university initiative designed to reduce structural barriers to interdisciplinarity also facilitates the dissolution of epistemic ones. Through analytical autoethnography of graduate training in two disciplines, sociology and ecology, we develop the concept of asymmetric epistemology to better understand the unique epistemological position that emerges for interdisciplinarians. Building from feminist science and technology studies (STS) and scholarship on epistemic identities, our work illuminates how epistemologies are embodied (...)
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  • Field Analysis and Interdisciplinary Science: Scientific Capital Exchange in Behavior Genetics.Aaron L. Panofsky - 2011 - Minerva 49 (3):295-316.
    This paper uses Pierre Bourdieu’s field theory to develop tools for analyzing interdisciplinary scientific fields. Interdisciplinary fields are scientific spaces where no single form of scientific capital has a monopoly and therefore multiple forms of scientific capital constitute the structures and stakes of scientific competition. Scientists compete to accumulate and define forms of scientific capital and also to set the rates of exchange between them. The paper illustrates this framework by applying it to the interdisciplinary field of behavior genetics. Most (...)
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  • Interdisciplinarity "in the making": Modeling infectious diseases.Erika Mattila - 2005 - Perspectives on Science 13 (4):531-553.
    : The main contribution of this paper to current philosophical and sociological studies on modeling is to analyze modeling as an object-oriented interdisciplinary activity and thus to bring new insights into the wide, heterogeneous discourse on tools, forms and organization of interdisciplinary research. A detailed analysis of interdisciplinarity in the making of models is presented, focusing on long-standing interdisciplinary collaboration between specialists in infectious diseases, mathematicians and computer scientists. The analysis introduces a novel way of studying the elements of the (...)
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  • How Do Non-professional Participants of a Trial Cope with the Communication Process at the Trial? The Results of Empirical Research Conducted in Polish Courts.Karolina Gmerek - 2023 - International Journal for the Semiotics of Law - Revue Internationale de Sémiotique Juridique 36 (2):791-813.
    The aim of this article is to present some of the results of empirical research on the communication process at a trial conducted in Polish courts. These results will concern the participation of non-professional participants of a trial and the ways in which they deal with the communication process in the courtroom. The article presents the results of the analysis of the research material conducted in accordance with the detailed research questions and analytical categories. The analysis has especially shown that: (...)
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