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  1. 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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  • The interplay of conflict and analogy in multidisciplinary teams.Susannah Bf Paletz, Christian D. Schunn & Kevin H. Kim - 2013 - Cognition 126 (1):1-19.
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  • The Impact of Analogies on Creative Concept Generation: Lessons From an In Vivo Study in Engineering Design.Joel Chan & Christian Schunn - 2015 - Cognitive Science 39 (1):126-155.
    Research on innovation often highlights analogies from sources outside the current problem domain as a major source of novel concepts; however, the mechanisms underlying this relationship are not well understood. We analyzed the temporal interplay between far analogy use and creative concept generation in a professional design team's brainstorming conversations, investigating the hypothesis that far analogies lead directly to very novel concepts via large steps in conceptual spaces . Surprisingly, we found that concepts were more similar to their preceding concepts (...)
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  • Epistemic dependence in interdisciplinary groups.Hanne Andersen & Susann Wagenknecht - 2013 - Synthese 190 (11):1881-1898.
    In interdisciplinary research scientists have to share and integrate knowledge between people and across disciplinary boundaries. An important issue for philosophy of science is to understand how scientists who work in these kinds of environments exchange knowledge and develop new concepts and theories across diverging fields. There is a substantial literature within social epistemology that discusses the social aspects of scientific knowledge, but so far few attempts have been made to apply these resources to the analysis of interdisciplinary science. Further, (...)
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