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Wray, K. B. (2021). Introduction: The Road Ahead in Kuhn Scholarship. I Interpreting Kuhn: Critical Essays (s. 1-6). Cambridge University Press.
Wray, K. B. (2021). Reassessing Kuhn’s Theoretical Monism: Addressing the Pluralists’ Challenge. I Interpreting Kuhn: Critical Essays (s. 222-237). Cambridge University Press. https://doi.org/10.1017/9781108653206.013
Wray, K. B., Nash, L. & Simon, J. (2021). The geopolitics of book publishing and book reviews. Metascience, 30(3), 339-340. Artikel https://doi.org/10.1007/s11016-021-00694-5. https://doi.org/10.1007/s11016-021-00694-5
Wray, K. B. (2022). What Happened When Chemists Came to Classify Elements by their Atomic Number? Foundations of Chemistry: Philosophical, Historical, Educational and Interdisciplinary Studies of Chemistry, 24(2), 161-170. https://doi.org/10.1007/s10698-022-09423-0
Wray, K. B. (2023). Theodore Richards and the Discovery of Isotopes. Foundations of Chemistry: Philosophical, Historical, Educational and Interdisciplinary Studies of Chemistry, 25(1), 57-66. https://doi.org/10.1007/s10698-022-09449-4
Wray, K. B. (2023). A Defense of Structure in Structure of Scientific Revolutions. I L. Giri, P. Melogno & H. Miguel (red.), Perspectives on Kuhn: Contemporary Approaches to the Philosophy of Thomas Kuhn (s. 25-40). Springer Nature. https://doi.org/10.1007/978-3-031-16371-5_3
Wray, K. B., Nash, L. & Simon, J. (2022). What we publish in Metascience. Metascience, 31(3), 293-296. https://doi.org/10.1007/s11016-022-00819-4
Wray, K. B. (red.) (2024). Kuhn's The Structure of Scientific Revolutions at 60. Cambridge University Press. Cambridge Philosophical Anniversaries https://doi.org/10.1017/9781009122696
Wray, K. B. (2024). Introduction: The Impact of The Structure of Scientific Revolutions . I K. B. Wray (red.), Kuhn's The Structure of Scientific Revolutions at 60 (s. 1-18). Cambridge University Press. https://doi.org/10.1017/9781009122696.002
Wray, K. B. (2024). The Orwellian Dimension of Scientific Progress: from Part III - Incommensurability, Progress, and Revolutions . I K. B. Wray (red.), Kuhn's The Structure of Scientific Revolutions at 60 (s. 182-196). Cambridge University Press. https://doi.org/10.1017/9781009122696.015
Wray, K. B. (2024). Co-authorship in Chemistry at the Turn of the 20th Century: The Case of Theodore W. Richards. Foundations of Chemistry: Philosophical, Historical, Educational and Interdisciplinary Studies of Chemistry, 26(1), 75-88. Artikel https://doi.org/10.1007/s10698-023-09491-w. https://doi.org/10.1007/s10698-023-09491-w
Wray, K. B. (2018). Thomas S. Kuhn. I Oxford Bibliographies Oxford University Press.
Wray, K. B. (2026). Osiander and Hypotheses: Revisiting Instrumentalism. I M. Oleksowicz, K. B. Wray & T. Jarmuzek (red.), Hypotheses in Science Springer.
Wray, K. B. (2026). Kuhn’s influence and legacy. I F. Padovani & A. T. Tuboly (red.), Routledge Handbook of the History of Philosophy of Science after Kant (s. 241-250). Routledge. https://doi.org/10.4324/9781003381051-25
Wray, K. B. (2026). Einflüsse auf Kuhn und das Verhältnis von Wissenschaftsgeschichte und Wissenshaftsphilosophie. I M. Seidel (red.), Thomas Kuhns Die Struktur wissenschaftlicher Revolutionen (s. 15-28). De Gruyter. https://doi.org/10.1515/9783111243924-003
Wray, K. B. (2021). Feyerabend's Theoretical Pluralism: An Investigation of the Epistemic Value of False Theories. I INTERPRETING FEYERABEND: Critical Essays (s. 72-88). Cambridge University Press.
Wiborg, O., Hyldig-Nielsen, J. J., Jensen, E. O., Paludan, K. & Marcker, K. A. (1983). The structure of an unusual leghemoglobin gene from soybean. E M B O Journal, 2(3), 449-52.
Wiborg, O., Hyldig-Nielsen, J. J., Jensen, E. O., Paludan, K. & Marcker, K. A. (1982). The nucleotide sequences of two leghemoglobin genes from soybean. Nucleic Acids Research, 10(11), 3487-94.
Weiske, C. (2020). Branching laws for representations of real reductive groups of rank one. [Ph.d.-afhandling, Aarhus Universitet]. Aarhus Universitet.
Wehn, U. (red.), Hepburn, L. (red.), Hsing, P.-Y., Ajates, R., Kragh, G., Mandeville, C., Somerwill, L., Kiefer, S., Haklay, M., Gold, M., Koley, M., Heinisch, B., Goldin, J. & Shanley, L. (2022). Guidance for the implementation of the UNESCO Open Science Recommendation re. "Opening science to society" (FINAL). https://doi.org/10.5281/zenodo.7472827
Wehn, U., Ajates, R., Mandeville, C., Somerwill, L., Kragh, G. & Haklay, M. (2024). Opening science to society: how to progress societal engagement into (open) science policies. Royal Society Open Science, 11(5), Artikel 231309. https://doi.org/10.1098/rsos.231309
Wagner, E. (2008). Khovanov-Rozansky Graph Homology and Composition Product. Journal of Knot Theory and Its Ramifications, 17(12), 1549-1559. https://doi.org/10.1142/S0218216508006750
Wagenknecht, S. (2012). Debating Troy in the Mass Media – The Catalytic Impact of Public Controversy on Academic Discourse. I S. Roedder, M. Franzen & P. Weingart (red.), The Sciences’ Media Connection – Public Communication and its Repercussions (s. 291-306). Springer. https://doi.org/10.1007/978-94-007-2085-5
Wagenknecht, S., Nersessian, N. & Andersen, H. (red.) (2015). Empirical Philosophy of Science: Introducing Qualitative Methods Into the Philosophy of Science. Springer. Studies in Applied Philosophy, Epistemology and Rational Ethics Bind 21 https://doi.org/10.1007/978-3-319-18600-9