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  1. Multidisciplinarity, Interdisciplinarity, Transdisciplinarity, and the Sciences.David Alvargonzález - 2011 - International Studies in the Philosophy of Science 25 (4):387-403.
    The ideas of interdisciplinarity and transdisciplinarity have been widely applied to the relationship between sciences. This article is an attempt to discuss the reasons why scientific interdisciplinarity and transdisciplinarity pose specific problems. First of all, certain questions about terminology are taken into account in order to clarify the meaning of the word ?discipline? and its cognates. Secondly, we argue that the specificity of sciences does not lie in becoming disciplines. Then, we focus on the relationship between sciences, and between sciences (...)
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  • Interdisziplinäre Systemintegration und Innovationsgenese: Ein methodologischer Zugang für die interdisziplinäre ForschungInterdisciplinary System Integration and Inducement of Innovation: A Methodological Approach for Interdisciplinary Research.Dietmar Wechsler & Annette C. Hurst - 2011 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 42 (1):141 - 155.
    Die zunehmende Bedeutung inter-und transdisziplinärer Forschungsfelder wirft die Frage nach entsprechenden methodischen und wissenschaftstheoretischen Grundlagen auf. Die Auseinandersetzung mit dieser Frage führt hier zur Entwicklung eines interdisziplinären Forschungsablaufes mit zwei methodischen Kernbereichen, die Systemintegration und Innovationsgenese. Eine wissenschaftstheoretische Betrachtung zeigt auf, dass sich die interdisziplinäre Forschung selbst als eigenständige Disziplin begreifen lässt, und ihr Synthesepotential nicht als zentrales Unterscheidungsmerkmal zu anderen Disziplinen angesehen werden kann. Vielmehr ist die hier entwickelte Methodologie zunächst analytisch und im Wesentlichen auf die Erschließung des Forschungspotentials (...)
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  • Wicked Problems in a Technological World.Marc J. de Vries - 2020 - Philosophia Reformata 85 (2):125-137.
    In this article, the morality in the “wickedness” of design problems as wicked problems is explored. I will use for that purpose the characteristics of wicked problems as identified by Horst Rittel and Melvin Webber. These characteristics suggest interdisciplinary thinking for solving such problems. An awareness of the wicked nature of design problems can stimulate proper use of the concept of utopias for solving these problems. I will use the philosophy of Herman Dooyeweerd to provide a framework for understanding the (...)
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  • Prospective Technology Assessment of Synthetic Biology: Fundamental and Propaedeutic Reflections in Order to Enable an Early Assessment.Jan Cornelius Schmidt - 2016 - Science and Engineering Ethics 22 (4):1151-1170.
    Synthetic biology is regarded as one of the key technosciences of the future. The goal of this paper is to present some fundamental considerations to enable procedures of a technology assessment of synthetic biology. To accomplish such an early “upstream” assessment of a not yet fully developed technology, a special type of TA will be considered: Prospective TA. At the center of ProTA are the analysis and the framing of “synthetic biology,” including a characterization and assessment of the technological core. (...)
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  • Problem-Feeding as a Model for Interdisciplinary Research.Henrik Thorén & Johannes Persson - 2022 - International Studies in the Philosophy of Science 36 (1):39-59.
    Philosophers of science have in recent years become increasingly interested in the notion of interdisciplinarity. One important form interdisciplinarity can take is that of a dynamic exchange of problems and solutions between disciplines—what has recently been called problem-feeding. On this model problems arising within specific disciplines are sometimes solved more effectively by, or in collaboration with, other disciplines. In this paper we explore this model as a framework for thinking about, and actively structuring, interdisciplinary research. We point to the applicability (...)
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  • The Hammer and the Nail : Interdisciplinarity and Problem Solving in Sustainability Science.Henrik Thorén - 2015 - Dissertation, Lund University
    This is a thesis about interdisciplinarity, scientific integration, and problem solving in sustainability science. Sustainability science is an emerging and highly interdisciplinary field that seeks to integrate vastly differentiated bodies of knowledge in addressing the challenge of transitioning contemporary societies towards sustainability. Interdisciplinarity is paramount. Interdisciplinarity in general, and in the context of sustainability science in particular, has often been associated with solving particular problems and problem solving is one important theme in this thesis. A central idea that is developed (...)
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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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  • Nanoscience or Nanosciences? - The Interdisciplinary Discipline.Thomas Fuhrmann-Lieker - 2024 - NanoEthics 18 (3):1-8.
    In this article, we question whether nanoscience has already matured into a single discipline or whether it retains the character of an interdisciplinary endeavour, involving the natural sciences as well as technology. In search for an answer, the traits of disciplines according to William Bechtel are considered. Arguments in favour of using 'nanoscience', as a singular, or 'nanosciences', as a plural, are elucidated. In terms of objects of study, nanoscience is compared with colloid science. Cognitive abilities are traced back to (...)
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  • Epistemology for interdisciplinary research – shifting philosophical paradigms of science.Sophie Baalen & Mieke Boon - 2018 - European Journal for Philosophy of Science 9 (1):1-28.
    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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  • How interdisciplinary researchers see themselves: plurality of understandings of interdisciplinarity within a field and why it matters.Jaana Eigi-Watkin, Katrin Velbaum, Edit Talpsepp & Endla Lõhkivi - 2024 - European Journal for Philosophy of Science 14 (1):1-24.
    It is widely acknowledged that interdisciplinarity (ID) is very diverse. Our contribution is a demonstration that considerable diversity exists also on the level of understandings of ID that researchers working in the same ID field express. Specifically, we analyse qualitatively, building on the method of culture contrast, six interviews with researchers working in computational linguistics and language technology in Estonia. We identify six understandings of ID expressed by the interviewees: centred on an ID method; a disciplinary method in an ID (...)
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  • Collingridge’s dilemma and technoscience.Wolfgang Liebert & Jan C. Schmidt - 2010 - Poiesis and Praxis 7 (1-2):55-71.
    Collingridge’s dilemma is one of the most well-established paradigms presenting a challenge to Technology Assessment (TA). This paper aims to reconstruct the dilemma from an analytic perspective and explicates three assumptions underlying the dilemma: the temporal, knowledge and power/actor assumptions. In the light of the recent transformation of the science, technology and innovation system—in the age of technoscience —these underlying assumptions are called into question. The same result is obtained from a normative angle by Collingridge himself; he criticises the dilemma (...)
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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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  • 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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  • Enrolling the Toggle Switch: Visionary Claims and the Capability of Modeling Objects in the Disciplinary Formation of Synthetic Biology.Clemens Blümel - 2016 - NanoEthics 10 (3):269-287.
    Synthetic biology is a research field that has grown rapidly and attracted considerable attention. Most prominently, it has been labelled the ‘engineering of biology’. While other attempts to label the field have been also pursued, the program of engineering can be considered the core of the field’s disciplinary program, of its identity. This article addresses the success of the ‘engineering program’ in synthetic biology and argues that its success can partly be explained by distinct practices of persuasion that aim at (...)
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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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  • Towards a prospective technology assessment: challenges and requirements for technology assessment in the age of technoscience. [REVIEW]Wolfgang Liebert & Jan C. Schmidt - 2010 - Poiesis and Praxis 7 (1-2):99-116.
    The objective of this paper is to contribute to the expanding discourse on conceptual elements of TA. As a point of departure, it takes the recent transformation of the science, technology and innovation system ( technoscience ). We will show that the age of technoscience can be regarded as presenting not only a challenge, but also a chance and opportunity for TA. Embracing this opportunity, however, implies imposing several requirements on TA. In order to specify these requirements and to foster (...)
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  • (1 other version)Interdisziplinäre Systemintegration und Innovationsgenese: Ein methodologischer Zugang für die interdisziplinäre Forschung. [REVIEW]Dietmar Wechsler & Annette C. Hurst - 2011 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 42 (1):141-155.
    The increasing significance of inter- and transdisciplinary research raises the demand for principles with respect to methodology and philosophy of science. The discussion of this question leads to the development of an interdisciplinary research process with two methodic core areas: system integration and inducement of innovation. It will be shown that interdisciplinary research can be understood as a discipline of its own, while its potential of synthesis cannot be declared as a central distinctive feature relative to other disciplines. In fact (...)
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