Results for 'Björn Falkenburger'

96 found
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  1.  31
    Philosophical Foundations of Quantum Field Theory.Brigitte Falkenburg - 1991 - Noûs 25 (4):580-583.
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  2.  16
    Why More is Different: Philosophical Issues in Condensed Matter Physics and Complex Systems.Brigitte Falkenburg & Margaret Morrison (eds.) - 2015 - Berlin, Heidelberg: Springer.
    The physics of condensed matter, in contrast to quantum physics or cosmology, is not traditionally associated with deep philosophical questions. However, as science - largely thanks to more powerful computers - becomes capable of analysing and modelling ever more complex many-body systems, basic questions of philosophical relevance arise. Questions about the emergence of structure, the nature of cooperative behaviour, the implications of the second law, the quantum-classical transition and many other issues. This book is a collection of essays by leading (...)
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  3.  66
    The unifying role of symmetry principles in particle physics.Brigitte Falkenburg - 1988 - Ratio 1 (2):113-134.
  4.  39
    Marion Hourdequin: Environmental Ethics. From theory to practice: London, New York: Bloomsbury, 2015 ISBN 9781472510983 Paperback $29.95.Bjoern Buenger - 2016 - Ethical Theory and Moral Practice 19 (2):533-535.
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  5.  1
    7. Naturphilosophie und Wissenschaftstheorie.Brigitte Falkenburg - 2003 - In Dietmar Hermann Heidemann & Kristina Engelhard (eds.), Warum Kant heute? Bedeutung und Relevanz seiner Philosophie in der Gegenwart. De Gruyter. pp. 177-206.
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  6.  32
    Wave–Particle Duality in Quantum Optics.Brigitte Falkenburg - 2009 - In Mauricio Suárez, Mauro Dorato & Miklós Rédei (eds.), EPSA Philosophical Issues in the Sciences · Launch of the European Philosophy of Science Association. Dordrecht, Netherland: Springer. pp. 31--42.
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  7. Virtual survey on North Mesopotamian tell sites by means of satellite remote sensing.Bjoern H. Menze, Simone Mühl & Andrew G. Sherratt - 2007 - In Bart Ooghe & Geert Verhoeven (eds.), Broadening Horizons: Multidisciplinary Approaches to Landscape Study. Cambridge Scholars Press. pp. 5--29.
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  8.  70
    Mechanistic Explanations in Physics and Beyond.Brigitte Falkenburg & Gregor Schiemann (eds.) - 2019 - Dordrecht, Niederlande: Springer.
    This volume offers a broad, philosophical discussion on mechanical explanations. Coverage ranges from historical approaches and general questions to physics and higher-level sciences . The contributors also consider the topics of complexity, emergence, and reduction. Mechanistic explanations detail how certain properties of a whole stem from the causal activities of its parts. This kind of explanation is in particular employed in explanatory models of the behavior of complex systems. Often used in biology and neuroscience, mechanistic explanation models have been often (...)
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  9.  31
    Heisenberg's Uncertainty Relation.Paul Busch & Brigitte Falkenburg - unknown
    This is an entry to the Compendium of Quantum Physics, edited by F Weinert, K Hentschel and D Greenberger, to be published by Springer-Verlag.
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  10. Kants Kosmologie. Die wissenschaftliche Revolution der Naturphilosophie im 18. Jahrhundert.Brigitte Falkenburg - 2000 - Tijdschrift Voor Filosofie 62 (3):589-590.
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  11.  31
    Kant and the scope of the analytic method.Brigitte Falkenburg - 2018 - Studies in History and Philosophy of Science Part A 71:13-23.
  12.  14
    Kant's cosmology: from the pre-critical system to the antinomy of pure reason.Brigitte Falkenburg - 2020 - Cham: Springer.
    This book provides a comprehensive account of Kant’s development from the 1755/56 metaphysics to the cosmological antinomy of 1781. With the Theory of the Heavens (1755) and the Physical Monadology (1756), the young Kant had presented an ambitious approach to physical cosmology based on an atomistic theory of matter, which contributed to the foundations of an all-encompassing system of metaphysics. Why did he abandon this system in favor of his critical view that cosmology runs into an antinomy, according to the (...)
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  13.  26
    The value declaration: a method for integrating human values into design-oriented research projects.Oliver Heger, Bjoern Niehaves & Henrik Kampling - 2018 - Ethics and Information Technology 23 (1):75-78.
    For researchers who study technology designs, the application and execution of so-called design-oriented research projects are a common way of funding their research. Against this background, we propose a new methodical approach with which VSD can easily be implemented in such projects and which we call “value declaration”. We share our experience with this method which we gained in two design-oriented research projects.
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  14. Too Many Conceptions of Time? McTaggart's Views Revisited.Gregor Schiemann & Brigitte Falkenburg - 2016 - In Stamatios Gerogiorgaki (ed.), Time and Tense (Basic Philosophical Concepts).
    John Ellis McTaggart defended an idealistic view of time in the tradition of Hegel and Bradley. His famous paper makes two independent claims (McTaggart1908): First, time is a complex conception with two different logical roots. Second, time is unreal. To reject the second claim seems to commit to the first one, i.e., to a pluralistic account of time. We compare McTaggarts views to the most important concepts of time investigated in physics, neurobiology, and philosophical phenomenology. They indicate that a unique, (...)
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  15. The Ontology for Biomedical Investigations.Anita Bandrowski, Ryan Brinkman, Mathias Brochhausen, Matthew H. Brush, Bill Bug, Marcus C. Chibucos, Kevin Clancy, Mélanie Courtot, Dirk Derom, Michel Dumontier, Liju Fan, Jennifer Fostel, Gilberto Fragoso, Frank Gibson, Alejandra Gonzalez-Beltran, Melissa A. Haendel, Yongqun He, Mervi Heiskanen, Tina Hernandez-Boussard, Mark Jensen, Yu Lin, Allyson L. Lister, Phillip Lord, James Malone, Elisabetta Manduchi, Monnie McGee, Norman Morrison, James A. Overton, Helen Parkinson, Bjoern Peters, Philippe Rocca-Serra, Alan Ruttenberg, Susanna-Assunta Sansone, Richard H. Scheuermann, Daniel Schober, Barry Smith, Larisa N. Soldatova, Christian J. Stoeckert, Chris F. Taylor, Carlo Torniai, Jessica A. Turner, Randi Vita, Patricia L. Whetzel & Jie Zheng - 2016 - PLoS ONE 11 (4):e0154556.
    The Ontology for Biomedical Investigations (OBI) is an ontology that provides terms with precisely defined meanings to describe all aspects of how investigations in the biological and medical domains are conducted. OBI re-uses ontologies that provide a representation of biomedical knowledge from the Open Biological and Biomedical Ontologies (OBO) project and adds the ability to describe how this knowledge was derived. We here describe the state of OBI and several applications that are using it, such as adding semantic expressivity to (...)
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  16.  23
    Why More is Different: Philosophical Issues in Condensed Matter Physics and Complex Systems.Brigitte Falkenburg & Margaret Morrison (eds.) - 2015 - Berlin, Heidelberg: Springer.
    The physics of condensed matter, in contrast to quantum physics or cosmology, is not traditionally associated with deep philosophical questions. However, as science - largely thanks to more powerful computers - becomes capable of analysing and modelling ever more complex many-body systems, basic questions of philosophical relevance arise. Questions about the emergence of structure, the nature of cooperative behaviour, the implications of the second law, the quantum-classical transition and many other issues. This book is a collection of essays by leading (...)
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  17.  25
    Edgar Wind on Experiment and Metaphysics.Brigitte Falkenburg - 2021 - Journal of Transcendental Philosophy 2 (1):21-45.
    The paper presents a detailed interpretation of Edgar Wind’s Experiment and Metaphysics, a unique work on the philosophy of physics which broke with the Neo-Kantian tradition under the influence of American pragmatism. Taking up Cassirer’s interpretation of physics, Wind develops a holistic theory of the experiment and a constructivist account of empirical facts. Based on the concept of embodiment which plays a key role in Wind’s later writings on art history, he argues, however, that the outcomes of measurements are contingent. (...)
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  18.  8
    On Gödel and the Nonexistence of Time – Gödel und die Nichtexistenz der Zeit: Kurt Gödel essay competition 2021 – Kurt-Gödel-Preis 2021.Oliver Passon, Christoph Benzmüller & Brigitte Falkenburg (eds.) - 2023 - Springer Berlin Heidelberg.
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  19.  2
    Physik, Philosophie und die Einheit der Wissenschaften: für Erhard Scheibe.Erhard Scheibe, Lorenz Krüger & Brigitte Falkenburg - 1995
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  20.  71
    Pragmatic Unification, Observation and Realism in Astroparticle Physics.Brigitte Falkenburg - 2012 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 43 (2):327-345.
    Astroparticle physics is a recent sub-discipline of physics that emerged from early cosmic ray studies, astrophysics, and particle physics. Its theoretical foundations range from quantum field theory to general relativity, but the underlying “standard models” of cosmology and particle physics are far from being unified. The paper explores the pragmatic strategies employed in astroparticle physics in order to unify a disunified research field, the concept of observation involved in these strategies, and their relations to scientific realism.
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  21.  14
    Was beweist Kants Experiment der reinen Vernunft?Brigitte Falkenburg - 2018 - In Violetta L. Waibel, Margit Ruffing & David Wagner (eds.), Natur und Freiheit. Akten des XII. Internationalen Kant-Kongresses. De Gruyter. pp. 641-660.
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  22.  16
    Wohin fliegt die Eule der Minerva? Über die Verkehrung von Licht und Finsternis.Brigitte Falkenburg - 2015 - Zeitschrift für Philosophische Forschung 69 (4):574-580.
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  23. Models, Unification, and Simulations: Margaret C. Morrison (1954–2021).Brigitte Falkenburg & Stephan Hartmann - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (1):25-33.
    The philosophy of science community mourns the loss of Margaret Catherine Morrison, who passed away on January 9, 2021, after a long battle with cancer. Margie, as she was known to all who knew her, was highly regarded for her influential contributions to the philosophy of science, particularly her studies of the role of models and simulations in the natural and social sciences. These contributions made her a world-leading philosopher of science, instrumental in shifting philosophers' attention from the structure of (...)
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  24.  40
    The analysis of particle tracks: A case for trust in the unity of physics.Brigitte Falkenburg - 1996 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 27 (3):337-371.
  25.  6
    Kants Kosmologie: die wissenschaftliche Revolution der Naturphilosophie im 18. Jahrhundert.Brigitte Falkenburg - 2000 - Vittorio Klostermann.
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  26.  27
    Kant on Laws: by Eric Watkins, Cambridge, Cambridge University Press, 2019, pp. 310, £75.00 (hb), ISBN 978-1-107-16391-1.Brigitte Falkenburg - 2020 - British Journal for the History of Philosophy 29 (1):186-188.
    There are many books on Kant's accounts of the laws of nature and of the moral law, but there is almost no literature that covers both topics in order to clarify their common grounds and their diff...
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  27.  32
    On Method: The Fact of Science and the Distinction between Natural Science and the Humanities.Brigitte Falkenburg - 2020 - Kant Yearbook 12 (1):1-31.
    This article examines Cohen’s “transcendental method”, Windelband’s “critical method”, the neo-Kantian distinctions between natural science and the humanities (i. e., human or cultural sciences), and Weber’s account of ideal-typical explanations. The Marburg and the Southwest Schools of neo-Kantianism have in common that their respective philosophies of science focused on method, but they substantially differ in their approaches. Cohen advanced the “transcendental method”, which was taken up and transformed by Natorp and Cassirer; later, it became influential in neo-Kantian approaches to 20th (...)
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  28. Bohr's principles of unifying quantum disunities.Brigitte Falkenburg - 1998 - Philosophia Naturalis 35 (1):95-120.
  29. Incommensurability and measurement.Brigitte Falkenburg - 1997 - Theoria 12 (3):467-491.
    Does incommensurability threaten the realist’s claim that physical magnitudes express properties of natural kinds? Some clarification comes from measurement theory and scientific practice. The standard (empiricist) theory of measurement is metaphysically neutral. But its representational operational and axiomatic aspects give rise to several kinds of a one-sided metaphysics. In scientific practice. the scales of physical quantities (e.g. the mass or length scale) are indeed constructed from measuring methods which have incompatible axiomatic foundations. They cover concepts which belong to incomensurable theories. (...)
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  30.  10
    Incommensurability and Measurement.Brigitte Falkenburg - 1997 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 12 (3):467-491.
    Does incommensurability threaten the realist’s claim that physical magnitudes express properties of natural kinds? Some clarification comes from measurement theory and scientific practice. The standard theory of measurement is metaphysically neutral. But its representational operational and axiomatic aspects give rise to several kinds of a one-sided metaphysics. In scientific practice. the scales of physical quantities are indeed constructed from measuring methods which have incompatible axiomatic foundations. They cover concepts which belong to incomensurable theories. I argue, however, that the construction of (...)
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  31.  30
    Kants zweite Antinomie und die Physik.Brigitte Falkenburg - 1995 - Kant Studien 86 (1):4-25.
  32.  10
    The Function of Natural Science for the Ends of Reason.Brigitte Falkenburg - 2019 - In Paula Órdenes & Anna Pickhan (eds.), Teleologische Reflexion in Kants Philosophie. Wiesbaden: Springer Fachmedien Wiesbaden. pp. 93-109.
    As well known, the exact sciences served Kant as a model of metaphysical cognition. There is also an opposite relation between science and metaphysics, however, namely the teleology of reason, as expressed at the end of the Critique of Pure Reason. There, Kant claims that the sciences are ultimately subordinate to the essential ends of humanity “through the mediation of a rational cognition from mere concepts”, i. e., metaphysical cognition.
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  33. Theconcept of spatial structure in microphysics.B. Falkenburg - 1993 - Philosophia Naturalis 30 (2):208-228.
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  34. What are the phenomena of physics?Brigitte Falkenburg - 2011 - Synthese 182 (1):149-163.
    Depending on different positions in the debate on scientific realism, there are various accounts of the phenomena of physics. For scientific realists like Bogen and Woodward, phenomena are matters of fact in nature, i.e., the effects explained and predicted by physical theories. For empiricists like van Fraassen, the phenomena of physics are the appearances observed or perceived by sensory experience. Constructivists, however, regard the phenomena of physics as artificial structures generated by experimental and mathematical methods. My paper investigates the historical (...)
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  35. OBO Foundry in 2021: Operationalizing Open Data Principles to Evaluate Ontologies.Rebecca C. Jackson, Nicolas Matentzoglu, James A. Overton, Randi Vita, James P. Balhoff, Pier Luigi Buttigieg, Seth Carbon, Melanie Courtot, Alexander D. Diehl, Damion Dooley, William Duncan, Nomi L. Harris, Melissa A. Haendel, Suzanna E. Lewis, Darren A. Natale, David Osumi-Sutherland, Alan Ruttenberg, Lynn M. Schriml, Barry Smith, Christian J. Stoeckert, Nicole A. Vasilevsky, Ramona L. Walls, Jie Zheng, Christopher J. Mungall & Bjoern Peters - 2021 - BioaRxiv.
    Biological ontologies are used to organize, curate, and interpret the vast quantities of data arising from biological experiments. While this works well when using a single ontology, integrating multiple ontologies can be problematic, as they are developed independently, which can lead to incompatibilities. The Open Biological and Biomedical Ontologies Foundry was created to address this by facilitating the development, harmonization, application, and sharing of ontologies, guided by a set of overarching principles. One challenge in reaching these goals was that the (...)
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  36.  52
    Functions of Intution in Quantum Physics.Brigitte Falkenburg - 2006 - In Emily Carson & Renate Huber (eds.), Intuition and the Axiomatic Method. Springer. pp. 267--292.
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  37.  16
    Experience and Completeness in Physical Knowledge: Variations on a Kantian Theme.Brigitte Falkenburg - 2004 - History of Philosophy & Logical Analysis 7 (1):153-176.
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  38. Substanzbegriff und Quantentheorie.Brigitte Falkenburg - 1993 - Philosophia Naturalis 30 (2):229-246.
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  39.  26
    The analysis of particle tracks: A case for trust in the unity of physics.Brigitte Falkenburg - 1996 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 27 (3):337-371.
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  40. Language and Reality: Peter Mittelstaedt’s Contributions to the Philosophy of Physics.Brigitte Falkenburg - 2010 - Foundations of Physics 40 (9-10):1171-1188.
    The article investigates the way in which Peter Mittelstaedt has been contributing to the philosophy of physics for half a century. It is shown that he pursues a path between rationalism and empiricism in the sense of Erhard Scheibe’s philosophy of the physicists. Starting from Kant’s a priori he gives a rational reconstruction of the conceptual revolutions of 20th century physics. The central topic of his philosophy of physics is the quest for semantic self-consistency, which for quantum mechanics is a (...)
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  41. Was heißt es, determiniert zu sein? Grenzen der naturwissenschaftlichen Erklärung.Brigitte Falkenburg - 2006 - In Dieter Sturma (ed.), Philosophie Und Neurowissenschaften. Suhrkamp. pp. 43--74.
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  42.  7
    Mechanistic Explanations in Physics: History, Scope, and Limits.Brigitte Falkenburg - 2023 - In João L. Cordovil, Gil Santos & Davide Vecchi (eds.), New Mechanism Explanation, Emergence and Reduction. Springer. pp. 191-211.
    Despite the scientific revolutions of the twentieth century, mechanistic explanations show a striking methodological continuity from early modern science to current scientific practice. They are rooted in the traditional method of analysis and synthesis, which was the background of Galileo’s resolutive-compositive method and Newton’s method of deduction from the phenomena. In early modern science as well as in current scientific practice, analysis aims at tracking back from the phenomena to the principles, i.e., from wholes to parts, and from effects to (...)
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  43. Experience and Completeness in Physical Knowledge: Variations on a Kantian Theme.Brigitte Falkenburg - 2004 - History of Philosophy & Logical Analysis 7.
    When philosophers of science relate Kant‘s theory of nature to modern physics, they neglect the critical parts of the Critique of Pure Reason. My paper focuses on the way in which Kant wanted to demonstrate the limitations of physical knowledge by means of the cosmological antinomy. According to Kant, cosmology gives rise to four variations of one-and-the-same antinomy of pure reason. He wanted to show that any attempt to complete our spatio-temporal or dynamical knowledge of the world is based on (...)
     
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  44.  19
    Die Form der Materie: zur Metaphysik der Natur bei Kant und Hegel.Brigitte Falkenburg - 1987
  45.  7
    Die Funktion der Naturwissenschaft für die Zwecke der Vernunft.Brigitte Falkenburg - 2005 - In Volker Gerhardt (ed.), Kant im Streit der Fakultäten. Berlin: De Gruyter. pp. 117.
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  46.  48
    On the contributions of astroparticle physics to cosmology.Brigitte Falkenburg - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (1):97-108.
    Studying astroparticle physics sheds new light on scientific explanation and on the ways in which cosmology is empirically underdetermined or not. Astroparticle physics extends the empirical domain of cosmology from purely astronomical data to “multi-messenger astrophysics”, i.e., measurements of all kinds of cosmic rays including very high energetic gamma rays, neutrinos, and charged particles. My paper investigates the ways in which these measurements contribute to cosmology and compares them with philosophical views about scientific explanation, the relation between theory and data, (...)
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  47.  10
    Buchkritik. Rationalität in den Wissenschaften – zwei Neuansätze.Brigitte Falkenburg - 2015 - Deutsche Zeitschrift für Philosophie 63 (3).
    Name der Zeitschrift: Deutsche Zeitschrift für Philosophie Jahrgang: 63 Heft: 3 Seiten: 590-601.
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  48.  6
    Der Wert wertfreier Wissenschaft.Brigitte Falkenburg - 2004 - In Bernward Gesang (ed.), Deskriptive oder normative Wissenschaftstheorie. ontos-Verlag. pp. 91-122.
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  49.  8
    Erkenntnistheorie als Sprachanalyse?Brigitte Falkenburg - 2005 - Deutsche Zeitschrift für Philosophie 53 (2).
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  50.  65
    El realismo interno de Putnam y la ciencia empírica.Brigitte Falkenburg - 2004 - Revista de Filosofía (Madrid) 29 (2):117-132.
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