Results for 'Birgit Mara Kaiser'

78 found
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  1. The Metaphysics of Constitutive Mechanistic Phenomena.Marie I. Kaiser & Beate Krickel - 2017 - British Journal for the Philosophy of Science 68 (3).
    The central aim of this article is to specify the ontological nature of constitutive mechanistic phenomena. After identifying three criteria of adequacy that any plausible approach to constitutive mechanistic phenomena must satisfy, we present four different suggestions, found in the mechanistic literature, of what mechanistic phenomena might be. We argue that none of these suggestions meets the criteria of adequacy. According to our analysis, constitutive mechanistic phenomena are best understood as what we will call ‘object-involving occurrents’. Furthermore, on the basis (...)
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  2. Individuating Part-whole Relations in the Biological World.Marie I. Kaiser - 2018 - In O. Bueno, R. Chen & M. B. Fagan (eds.), Individuation across Experimental and Theoretical Sciences. Oxford University Press.
    What are the conditions under which one biological object is a part of another biological object? This paper answers this question by developing a general, systematic account of biological parthood. I specify two criteria for biological parthood. Substantial Spatial Inclusionrequires biological parts to be spatially located inside or in the region that the natural boundary of t he biological whole occupies. Compositional Relevance captures the fact that a biological part engages in a biological process that must make a necessary contribution (...)
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  3. Normativity in the Philosophy of Science.Marie I. Kaiser - 2019 - Metaphilosophy 50 (1-2):36-62.
    This paper analyzes what it means for philosophy of science to be normative. It argues that normativity is a multifaceted phenomenon rather than a general feature that a philosophical theory either has or lacks. It analyzes the normativity of philosophy of science by articulating three ways in which a philosophical theory can be normative. Methodological normativity arises from normative assumptions that philosophers make when they select, interpret, evaluate, and mutually adjust relevant empirical information, on which they base their philosophical theories. (...)
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  4. The Limits of Reductionism in the Life Sciences.Marie I. Kaiser - 2011 - History and Philosophy of the Life Sciences 33 (4):453-476.
    In the contemporary life sciences more and more researchers emphasize the “limits of reductionism” (e.g. Ahn et al. 2006a, 709; Mazzocchi 2008, 10) or they call for a move “beyond reductionism” (Gallagher/Appenzeller 1999, 79). However, it is far from clear what exactly they argue for and what the envisioned limits of reductionism are. In this paper I claim that the current discussions about reductionism in the life sciences, which focus on methodological and explanatory issues, leave the concepts of a reductive (...)
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  5. What is an animal personality?Marie I. Kaiser & Caroline Müller - 2021 - Biology and Philosophy 36 (1):1-25.
    Individuals of many animal species are said to have a personality. It has been shown that some individuals are bolder than other individuals of the same species, or more sociable or more aggressive. In this paper, we analyse what it means to say that an animal has a personality. We clarify what an animal personality is, that is, its ontology, and how different personality concepts relate to each other, and we examine how personality traits are identified in biological practice. Our (...)
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  6. (1 other version)The Art Instinct: Beauty, Pleasure, and Human Evolution.Mara Miller - 2009 - Journal of Aesthetics and Art Criticism 67 (3):333-336.
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  7. Mechanisms and Laws: Clarifying the Debate.Marie I. Kaiser & C. F. Craver - 2013 - In Hsiang-Ke Chao, Szu-Ting Chen & Roberta L. Millstein (eds.), Mechanism and Causality in Biology and Economics. Dordrecht: Springer. pp. 125-145.
    Leuridan (2011) questions whether mechanisms can really replace laws at the heart of our thinking about science. In doing so, he enters a long-standing discussion about the relationship between the mech-anistic structures evident in the theories of contemporary biology and the laws of nature privileged especially in traditional empiricist traditions of the philosophy of science (see e.g. Wimsatt 1974; Bechtel and Abrahamsen 2005; Bogen 2005; Darden 2006; Glennan 1996; MDC 2000; Schaffner 1993; Tabery 2003; Weber 2005). In our view, Leuridan (...)
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  8.  79
    On the Epistemic Roles of the Individualized Niche Concept in Ecology, Behavioral and Evolutionary Biology.Marie I. Kaiser & Katie H. Morrow - forthcoming - Philosophy of Science.
    We characterize four fruitful and underappreciated epistemic roles played by the concept of an individualized niche in contemporary biology, utilizing results of a qualitative empirical study conducted within an interdisciplinary biological research center. We argue that the individualized niche concept (1) shapes the research agenda of the center, (2) facilitates explaining core phenomena related to inter-individual differences, (3) helps with managing individual-level causal complexity, and (4) promotes integrating local knowledge from ecology, evolutionary biology, behavioral biology and other biological fields. We (...)
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  9. Why It Is Time To Move Beyond Nagelian Reduction.Marie I. Kaiser - 2012 - In D. Dieks, S. Hartmann, T. Uebel & M. Weber (eds.), Probabilities, Laws and Structure. Springer. pp. 255-272.
    In this paper I argue that it is finally time to move beyond the Nagelian framework and to break new ground in thinking about epistemic reduction in biology. I will do so, not by simply repeating all the old objections that have been raised against Ernest Nagel’s classical model of theory reduction. Rather, I grant that a proponent of Nagel’s approach can handle several of these problems but that, nevertheless, Nagel’s general way of thinking about epistemic reduction in terms of (...)
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  10. The Components and Boundaries of Mechanisms.Marie I. Kaiser - 2017 - In Stuart Glennan & Phyllis McKay Illari (eds.), The Routledge Handbook of Mechanisms and Mechanical Philosophy. Routledge.
    Mechanisms are said to consist of two kinds of components, entities and activities. In the first half of this chapter, I examine what entities and activities are, how they relate to well-known ontological categories, such as processes or dispositions, and how entities and activities relate to each other (e.g., can one be reduced to the other or are they mutually dependent?). The second part of this chapter analyzes different criteria for individuating the components of mechanisms and discusses how real the (...)
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  11. Is There Such a Thing as Genuinely Moral Disgust?Mara Bollard - 2022 - Review of Philosophy and Psychology 13 (2):501-522.
    In this paper, I defend a novel skeptical view about moral disgust. I argue that much recent discussion of moral disgust neglects an important ontological question: is there a distinctive psychological state of moral disgust that is differentiable from generic disgust, and from other psychological states? I investigate the ontological question and propose two conditions that any aspiring account of moral disgust must satisfy: it must be a genuine form of disgust, and it must be genuinely moral. Next, I examine (...)
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  12. Psychopathy, Autism and Questions of Moral Agency.Mara Bollard - 2013 - In Christopher D. Herrera & Alexandra Perry (eds.), Ethics and Neurodiversity. Cambridge Scholars University. pp. 238-259.
    In recent years, philosophers have looked to empirical findings about psychopaths to help determine whether moral agency is underwritten by reason, or by some affective capacity, such as empathy. Since one of psychopaths’ most glaring deficits is a lack of empathy, and they are widely considered to be amoral, psychopaths are often taken as a test case for the hypothesis that empathy is necessary for moral agency. However, people with autism also lack empathy, so it is reasonable to think that (...)
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  13. Towards Post-Pandemic Sustainable and Ethical Food Systems.Matthias Kaiser, Stephen Goldson, Tatjana Buklijas, Peter Gluckman, Kristiann Allen, Anne Bardsley & Mimi E. Lam - 2021 - Food Ethics 6 (1).
    The current global COVID-19 pandemic has led to a deep and multidimensional crisis across all sectors of society. As countries contemplate their mobility and social-distancing policy restrictions, we have a unique opportunity to re-imagine the deliberative frameworks and value priorities in our food systems. Pre-pandemic food systems at global, national, regional and local scales already needed revision to chart a common vision for sustainable and ethical food futures. Re-orientation is also needed by the relevant sciences, traditionally siloed in their disciplines (...)
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  14. No computer program required: Even pencil-and-paper argument mapping improves critical thinking skills.Mara Harrell - 2008 - Teaching Philosophy 31 (4):351-374.
    Argument-mapping software abounds, and one of the reasons is that using the software has been shown to teach/promote/improve critical thinking skills. These positive results are very encouraging, but they also raise the question of whether the computer tutorial environment is producing these results, or whether learning argument mapping, even with just paper and pencil, is sufficient. Based on the results of two empirical studies, I argue that the basic skill of being able to represent an argument diagrammatically plays an important (...)
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  15. A more thought-ful ape?Mara Bollard - 2023 - Biology and Philosophy 38 (4):1-12.
    In A Better Ape, Victor Kumar and Richmond Campbell (2022) provide an ambitious and compelling history of the evolution of human morality. Informed by evidence from an impressively vast multidisciplinary literature, they offer a rich bio-cultural evolutionary explanation of how the human moral mind arose and developed over time that has wide appeal for philosophers and scientists alike. In this paper, I examine Kumar and Campbell’s novel moral psychology and raise questions about their account of the relationship between moral norms (...)
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  16. Themen aus den Lebenswissenschaften.Marie I. Kaiser - 2017 - In Markus Andreas Schrenk (ed.), Handbuch Metaphysik (German). Stuttgart: Metzler.
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  17. Biological Parts.Marie I. Kaiser - 2007 - In Stamatios Gerogiorgakis, Johanna Seibt & Guido Imaguire (eds.), Handbook of Mereology. Munich: Philosophia. pp. 97-100.
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  18. Introduction: Points of Contact between Biology and History.Marie I. Kaiser & Daniel Plenge - 2014 - In Marie I. Kaiser, Oliver R. Scholz, Daniel Plenge & Andreas Hüttemann (eds.), Explanation in the special science: The case of biology and history. Dordrecht: Springer. pp. 1-23.
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  19. Kant on Religious Feelings - An Extrapolation.Birgit Recki - 2014 - European Journal for Philosophy of Religion 6 (3):85--99.
    The religious feeling considered in this paper is the feeling of awe that can be construed in the extrapolation of the feeling of respect for the law. The latter itself can be better understood in analogy to the feeling of the sublime. Hence the thesis of my interpretation and extrapolation is: a characterization of the religious feeling in Kant’s critiques of reason and their analyses of feelings is possible. It has to be understood in analogy to the feeling of respect (...)
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  20. Philosophy of Microbiology.Marie I. Kaiser - 2015 - International Studies in the Philosophy of Science 29 (2):224-228.
    Book Review Philosophy of Microbiology MAUREEN A. O’MALLEY.
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  21. Błąd jako wielopłaszczyznowe zjawisko w przekładach studentów filologii germańskiej.Tomasz Maras - 2009 - Acta Universitatis Lodziensis. Folia Germanica 5:197-209.
    Das Thema des Artikels sind sprachliche Fehler, die bei der schriftlichen Übersetzung aus dem Deutschen ins Polnische und aus dem Polnischen ins Deutsche Vorkommen. Das Ziel des Artikels ist, ihre Vielschichtigkeit und Entstehungsmechanismen zu zeigen, die vor allem mit der sprachlichen Interferenz als einer der Hauptursachen für Übersetzungsfehler zusammenhän gen. Der Artikel stützt sich auf die Ergebnisse der Untersuchungen, die in den Jahren 2004-2006 in der Abteilung für Angewandte Sprachwissenschaft am Lehrstuhl für Deutsche und Angewandte Sprachwissenschaft der Universität Łódź durchgeführt (...)
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  22. Problems and Prospects of Interdisciplinarity: The Case of Philosophy of Science.Marie I. Kaiser, Robert Meunier & Maria Kronfeldner - 2016 - Interdisciplinary Science Reviews 41 (1):61-70.
    In this paper, we discuss some problems and prospects of interdisciplinary encounters by focusing on philosophy of science as a case study. After introducing the case, we give an overview about the various ways in which philosophy of science can be interdisciplinary in Section 2. In Section 3, we name some general problems concerning the possible points of interaction between philosophy of science and the sciences studied. In Section 4 we compare the advantages and risks of interdisciplinarity for individual researchers (...)
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  23. On the Limits of Causal Modeling: Spatially-Structurally Complex Biological Phenomena.Marie I. Kaiser - 2016 - Philosophy of Science 83 (5):921-933.
    This paper examines the adequacy of causal graph theory as a tool for modeling biological phenomena and formalizing biological explanations. I point out that the causal graph approach reaches it limits when it comes to modeling biological phenomena that involve complex spatial and structural relations. Using a case study from molecular biology, DNA-binding and -recognition of proteins, I argue that causal graph models fail to adequately represent and explain causal phenomena in this field. The inadequacy of these models is due (...)
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  24. Interdisciplinarity in Philosophy of Science.Marie I. Kaiser, Maria Kronfeldner & Robert Meunier - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):59-70.
    This paper examines various ways in which philosophy of science can be interdisciplinary. It aims to provide a map of relations between philosophy and sciences, some of which are interdisciplinary. Such a map should also inform discussions concerning the question “How much philosophy is there in the philosophy of science?” In Sect. 1, we distinguish between synoptic and collaborative interdisciplinarity. With respect to the latter, we furthermore distinguish between two kinds of reflective forms of collaborative interdisciplinarity. We also briefly explicate (...)
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  25. Educating Judgment: Learning from the didactics of philosophy and sloyd.Birgit Schaffar & Camilla Kronqvist - 2017 - Revista Española de Educación Comparada 29:110–128.
    Teachers in vocational education face two problems. (1) Learning involves the ability to transcend and modify learned knowledge to new circumstances. How should vocational education prepare students for future, unknown tasks? (2) Students should strive to produce work of good quality. How does vocational education help them develop their faculty of judgment to differentiate between better and worse quality? These two ques- tions are tightly interwoven. The paper compares the didactics of philosophy and sloyd. Both developed independently, but their solutions (...)
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  26. L'explication en biologie.Marie I. Kaiser - 2014 - In Eric Bapteste, Thierry Hoquet, Anouk Barberousse, Francesca Merlin, Frédéric Bouchard & Vincent Devictor (eds.), Précis de Philosophie de la biologie [Handbook Philosophy of Biology]. Vuibert Press. pp. 143-155.
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  27. Unification explicative : une théorie adéquate de l’explication métaphysique.Kevin Kaiser - 2021 - Ithaque 28:97-117.
    Le modèle unificationniste de l’explication métaphysique, basé sur les travaux de Kitcher sur l’explication scientifique, offre une alternative intéressante aux modèles présumant la conception supportive de l’explication métaphysique [backing model]. Par contre, le caractère adéquat de ce modèle, i.e. sa capacité à classifier comme métaphysiquement explicative/non-explicative des propositions qui préthéoriquement sont classés comme tel, n’a pas encore été exploré. Pour ce faire, des interprétations pour les relations de détermination et d’appartenance à un ensemble sont fournies. Celles-ci étant potentiellement sujette au (...)
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  28. Developing Engineering Students’ Moral Reasoning Skills Using Problem-Based Learning.Mara Harrell - 2019 - American Association of Philosophy Teachers Studies in Pedagogy 5:123-143.
    Problem-Based Learning has become an increasingly popular instructional method for a variety of disciplines at all levels. Many studies and meta-analyses of these studies have shown the efficacy of this method for developing knowledge and skills. I adopted this method for teaching Engineering Ethics at Carnegie Mellon University, which has as its main course objectives the development of moral reasoning skills, as well as collaboration and communication skills, with special attention given to ethical dilemmas that may arise in the normal (...)
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  29. (2 other versions)Terrible Knowledge And Tertiary Trauma, Part II: Suggestions for Teaching about the Atomic Bombings, with Particular Attention to Middle School.Mara Miller - 2013 - The Clearing House 86 (05):164-173.
    In a companion article, “Terrible Knowledge And Tertiary Trauma, Part I: Japanese Nuclear Trauma And Resistance To The Atomic Bomb” (this issue), I argue that we need to teach about the atomic bombings of Hiroshima and Nagasaki, even though the material is difficult emotionally as well as intellectually. Because of the nature of the information, this topic can be as difficult for graduate students (and their professors!) as for younger students. Teaching about the atomic bombings, however, demands special treatment if (...)
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  30. Identity, Identification, and Temperament in Emblematic Portraits of in Edo Japanese Literati Artists Taiga & Gyokuran: A Philosophical and Theoretical Analysis of the Ming-Qing Legacy.Mara Miller - 2007 - MingQing Yanjiu (MingQing Studies):65-116.
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  31. Disposition.Marie I. Kaiser & Andreas Hüttemann - 2013 - In Dubitzky W., Wolkenhauer O., Cho K.-H. & Yokota H. (eds.), Encyclopedia of Systems Biology, Vol. X. Springer. pp. 594-597.
    This is a contribution to the encyclopedia of systems biology on dispositions.
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  32.  50
    (5 other versions)Complexity.Marie I. Kaiser - 2013 - In Dubitzsky, Wolkenhauer, Cho & Yokota (eds.), Encyclopedia of Systems Biology. Springer. pp. 456-460.
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  33. Reduction.Marie I. Kaiser - 2013 - In Dubitzky W., Wolkenhauer O., Cho K.-H. & Yokota H. (eds.), Encyclopedia of Systems Biology, Vol. X. Springer. pp. 1827-1830.
    This is a contribution to the encyclopedia of systems biology on reduction.
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  34. Trust in Food and Trust in Science.Matthias Kaiser & Anne Algers - 2017 - Food Ethics 1 (2):93-95.
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  35. Potentiality in Biology.Andreas Hüttemann & Marie I. Kaiser - 2018 - In Kristina Engelhard & Michael Quante (eds.), Handbook of Potentiality. Dordrecht: Springer. pp. 401-428.
    We take the potentialities that are studied in the biological sciences (e.g., totipotency) to be an important subtype of biological dispositions. The goal of this paper is twofold: first, we want to provide a detailed understanding of what biological dispositions are. We claim that two features are essential for dispositions in biology: the importance of the manifestation process and the diversity of conditions that need to be satisfied for the disposition to be manifest. Second, we demonstrate that the concept of (...)
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  36. Sur le problème de l’induction : une réponse en acier (a Steel answer).Kevin Kaiser - 2018 - Ithaque 23:49-73.
    Le problème de l’induction (humien) a récemment été abordé par Steel dans son article de 2010. Celui-ci soutient que les théories d’apprentissage formelles permettent de justifier logiquement le principe de l’induction, ce dernier assurant la fiabilité logique des méthodes. Cette proposition a été critiquée par Howson en 2011, ce dernier mettant en doute la possibilité même qu’une méthode puisse être logiquement fiable. Bien que Steel ait offert une réponse à cette critique, il n’y répond pas directement. Dans le présent article, (...)
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  37. Designing AI with Rights, Consciousness, Self-Respect, and Freedom.Eric Schwitzgebel & Mara Garza - 2023 - In Francisco Lara & Jan Deckers (eds.), Ethics of Artificial Intelligence. Springer Nature Switzerland. pp. 459-479.
    We propose four policies of ethical design of human-grade Artificial Intelligence. Two of our policies are precautionary. Given substantial uncertainty both about ethical theory and about the conditions under which AI would have conscious experiences, we should be cautious in our handling of cases where different moral theories or different theories of consciousness would produce very different ethical recommendations. Two of our policies concern respect and freedom. If we design AI that deserves moral consideration equivalent to that of human beings, (...)
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  38. Der evolutionäre Naturalismus in der Ethik.Marie I. Kaiser - 2010 - In Jochen Oehler (ed.), Der Mensch - Evolution, Natur und Kultur: Beiträge zu unserem heutigen Menschenbild. Springer. pp. 261-283.
    Charles Darwin hat eindrucksvoll gezeigt, dass der Mensch ebenso wie alle anderen Lebewesen ein Produkt der biologischen Evolution ist. Die sich an Darwin anschließende Forschung hat außerdem plausibel gemacht, dass sich nicht nur viele der körperlichen Merkmale des Menschen, sondern auch (zumindest einige) seiner Verhaltensdispositionen in adaptiven Selektionsprozessen herausgebildet haben. Die Vorstellung, dass auch die menschliche Moralität evolutionär bedingt ist, scheint daher auf den ersten Blick ganz überzeugend. Schließlich hat die Evolutionstheorie in den vergangenen Jahrzehnten in vielen Bereichen (auch außerhalb (...)
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  39. Japanese Aesthetics - Ch. 23.Mara Miller - 2011 - In Jay L. Garfield & William Edelglass (eds.), The Oxford Handbook of World Philosophy. Oup Usa. pp. 317-333.
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  40. Causal graphs and biological mechanisms.Alexander Gebharter & Marie I. Kaiser - 2014 - In Marie I. Kaiser, Oliver R. Scholz, Daniel Plenge & Andreas Hüttemann (eds.), Explanation in the special science: The case of biology and history. Dordrecht: Springer. pp. 55-86.
    Modeling mechanisms is central to the biological sciences – for purposes of explanation, prediction, extrapolation, and manipulation. A closer look at the philosophical literature reveals that mechanisms are predominantly modeled in a purely qualitative way. That is, mechanistic models are conceived of as representing how certain entities and activities are spatially and temporally organized so that they bring about the behavior of the mechanism in question. Although this adequately characterizes how mechanisms are represented in biology textbooks, contemporary biological research practice (...)
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  41. Four Approaches to Emotion in Japanese Visual Arts.Mara Miller - 2004 - In Paolo Santangelo (ed.), Emotion in Asia. Universita degli Studi di Napoli "L'Orientale.
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  42. Genji’s Gardens: From Symbolism to Personal Expression and Emotion: Gardens and Garden Design in The Tale of Genji.Mara Miller - 2007 - In . Maahenki Oy. pp. 105-141.
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  43. Making transdisciplinarity work: An epistemology of inclusive development and innovation.David Ludwig & Birgit Boogaard - 2021 - In David Ludwig, Birgit Boogaard, Phil Macnaghten & Cees Leeuwis (eds.), The politics of knowledge in inclusive development and innovation. Routledge.
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  44. Kants Anweisung zur Auslegung der Bibel. Ein Beitrag zur Geschichte der Hermeneutik.Otto Kaiser - 1969 - Neue Zeitschrift für Systematicsche Theologie Und Religionsphilosophie 11 (2):125-138.
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  45. Broadening the problem agenda of biological individuality: individual differences, uniqueness and temporality.Rose Trappes & Marie I. Kaiser - 2021 - Biology and Philosophy 36 (2):1-28.
    Biological individuality is a notoriously thorny topic for biologists and philosophers of biology. In this paper we argue that biological individuality presents multiple, interconnected questions for biologists and philosophers that together form a problem agenda. Using a case study of an interdisciplinary research group in ecology, behavioral and evolutionary biology, we claim that a debate on biological individuality that seeks to account for diverse practices in the biological sciences should be broadened to include and give prominence to questions about uniqueness (...)
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  46. The politics of knowledge in inclusive development and innovation.David Ludwig, Birgit Boogaard, Phil Macnaghten & Cees Leeuwis (eds.) - 2021 - Routledge.
    This book develops an integrated perspective on the practices and politics of making knowledge work in inclusive development and innovation. While debates about development and innovation commonly appeal to the authority of academic researchers, many current approaches emphasize the plurality of actors with relevant expertise for addressing livelihood challenges. Adopting an action-oriented and reflexive approach, this volume explores the variety of ways in which knowledge works, paying particular attention to dilemmas and controversies. The six parts of the book address the (...)
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  47. An Ontic Account of Explanatory Reduction in Biology.Marie I. Kaiser - 2012 - Köln: Kölner Hochschulschriften.
    Convincing disputes about explanatory reductionism in the philosophy of biology require a clear and precise understanding of what a reductive explanation in biology is. The central aim of this book is to provide such an account by revealing the features that determine the reductive character of a biological explanation. Chapters I-IV provide the ground, on which I can then, in Chapter V, develop my own account of explanatory reduction in biology: Chapter I reveals the meta-philosophical assumptions that underlie my analysis (...)
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  48. Human Ethology, Evolutionary Psychology, The Genders.Hartmut Karl Kaiser - manuscript
    Etologia: Evolução da Música, Rir, Chorar, Corar, Paralelos à Filosofia Friedrich Nietzsche, Pensamento Simbólico, Os Géneros .
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  49.  80
    Individuation of Cross-Cutting Causal Systems in Cognitive Science and Behavioral Ecology.Beate Krickel & Marie I. Kaiser - 2024 - In Federica Russo & Phyllis Illari (eds.), The Routledge handbook of causality and causal methods. New York, NY: Routledge.
    For many causal endeavors, such as measuring, predicting, and explaining, individuating causal systems plays a crucial role. In this chapter, we focus on the individuation of a specific type of causal systems, what we call cross-cutting systems. These are systems that lack natural boundaries and that are not restricted to the spatiotemporal region of the individuals to which they belong. Based on examples taken from cognitive science and behavioral ecology, we explore how scientists individuate such cross-cutting causal systems.
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  50. Solution of Einstein’s Causality Problem: The AHK Theorem.Peter M. Kaiser - manuscript
    'Chance' is defined as an event on the time scale withour any cause before it appears. That means, that cause and effect is identical. This is the only way to integrate chance into a consistent theory of causality. The identity of cause and effect is called AHK theorem (Aristotle-Hegel-Kaiser).
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