Results for 'uncontrolling love'

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  1.  21
    The Uncontrolling Love of God: An Open and Relational Account of Providence.Eric J. Silverman - 2017 - Philosophical Quarterly 67 (266):209-211.
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  2.  23
    The Uncontrolling Love of God: An Open and Relational Account of Providence by Thomas Jay Oord. [REVIEW]Leslie A. Muray - 2018 - American Journal of Theology and Philosophy 39 (3):102-104.
    For some time now, I have written and talked about Thomas Jay Oord as the most "cutting edge" person on the theological scene today. This may sound like a bold claim, but what Oord has accomplished in bridging the gap between evangelicals and liberals is remarkable both in terms of background and personal commitment. He has a foot in the evangelical camp, yet as a product of Claremont Graduate University, he has another foot solidly in the liberal camp. Intellectually, at (...)
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  3.  36
    Thomas Jay Oord. The Uncontrolling Love of God: An Open and Relational Account of Providence.Jacob R. Lett - 2016 - Philosophy, Theology and the Sciences 3 (1):104.
  4.  48
    Thomas Jay Oord, The Uncontrolling Love of God: An Open and Relational Account of Providence[REVIEW]Elijah Hess - 2016 - Journal of Analytic Theology 4:473-479.
  5. Review of: The Uncontrolling Love of God: An Open and Relational Account of Providence. [REVIEW]Rem B. Edwards - 2015 - Process Studies 44 (2):299-303.
    This is a review of a book by Thomas Jay Oord.
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  6. Review of Thomas J. Oord, The Uncontrolling Love of God. [REVIEW]Rem B. Edwards - 2015 - Process Studies 44 (2):299-303.
    This is a review of Thomas Jay Oord’s book on The Uncontrolling Love of God in which he develops a very persuasive and highly original process account of how God’s love, power, and providence relate to matters of human freedom, randomness in nature and history, natural laws, miracles, and evil. This review summarizes the main points in each of his eight chapters and offers a few critical and constructive comments on them.
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  7. On Love.Daniela Cutaş - 2018 - Analize – Journal of Gender and Feminist Studies 11:5-15.
    What is love? Is it an uncontrollable emotion? Is it, instead, socially shaped, both an emotion and a social practice? Can the bonds of care and affection between humans and non-human animals be said to be on a par with parent-child relationships between humans? Do parents owe love to their children – and do mothers and fathers, respectively, owe it to different degrees? Do subversive weddings challenge normative ideals about love? What is the significance of love (...)
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  8. Epictetus on How the Stoic Sage Loves.William O. Stephens - 1996 - Oxford Studies in Ancient Philosophy 14:193-210.
    I show that in Epictetus’ view (1) the wise man genuinely loves (στέργειv) and is affectionate (φιλόστoργoς) to his family and friends; (2) only the Stoic wise man is, properly speaking, capable of loving—that is, he alone actually has the power to love; and (3) the Stoic wise man loves in a robustly rational way which excludes passionate, sexual, ‘erotic’ love (’έρως). In condemning all ’έρως as objectionable πάθoς Epictetus stands with Cicero and with the other Roman Stoics, (...)
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  9.  10
    Growing Up: Seeing Myself for Who I Am and Loving It.Kerry Magro - 2013 - Narrative Inquiry in Bioethics 3 (3):202-205.
    In lieu of an abstract, here is a brief excerpt of the content:Growing Up: Seeing Myself for Who I Am and Loving ItKerry MagroLast weekend, I traveled to see my cousin. He had graduated from St Mary’s Seminary in Baltimore and was being ordained as a Roman Catholic priest. The event was attended by many of my family members. Several of the littlest attendees struggled with all the commotion, some were said to be shy, some didn’t want to be crowded, (...)
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  10.  31
    Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development.Alan C. Love (ed.) - 2015 - Berlin: Springer Verlag, Boston Studies in the Philosophy of Science.
    This volume explores questions about conceptual change from both scientific and philosophical viewpoints by analyzing the recent history of evolutionary developmental biology. It features revised papers that originated from the workshop "Conceptual Change in Biological Science: Evolutionary Developmental Biology, 1981-2011" held at the Max Planck Institute for the History of Science in Berlin in July 2010. The Preface has been written by Ron Amundson. In these papers, philosophers and biologists compare and contrast key concepts in evolutionary developmental biology and their (...)
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  11. The linguistic thought of J.R. Firth.Nigel Love - 1988 - In Roy Harris (ed.), Linguistic thought in England, 1914-1945. New York: Routledge.
     
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  12. Evolution and Development: Conceptual Issues.Alan C. Love - 2024 - Cambridge University Press.
    The intersection of development and evolution has always harbored conceptual issues, but many of these are on display in contemporary evolutionary developmental biology (evo-devo). These issues include: (1) the precise constitution of evo-devo, with its focus on both the evolution of development and the developmental basis of evolution, and how it fits within evolutionary theory; (2) the nature of evo-devo model systems that comprise the material of comparative and experimental research; (3) the puzzle of how to understand the widely used (...)
     
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  13.  21
    Conceptual change and evolutionary developmental biology.A. C. Love - 2015 - In Alan C. Love (ed.), Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Berlin: Springer Verlag, Boston Studies in the Philosophy of Science. pp. 1-54.
    The 1981 Dahlem conference was a catalyst for contemporary evolutionary developmental biology (Evo-devo). This introductory chapter rehearses some of the details of the history surrounding the original conference and its associated edited volume, explicates the philosophical problem of conceptual change that provided the rationale for a workshop devoted to evaluating the epistemic revisions and transformations that occurred in the interim, explores conceptual change with respect to the concept of evolutionary novelty, and highlights some of the themes and patterns in the (...)
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  14.  39
    Reflections on the Middle Stages of EvoDevo’s Ontogeny.Alan C. Love - 2006 - Biological Theory 1 (1):94-97.
    Evolutionary developmental biology (or developmental evolution) is in the middle stages of its “development.” Its early ontogeny cannot be traced back to fertilization but pivotal developmental events included Gould’s (1977) treatment of heterochrony, Riedl’s (1978) analysis of “burden”, the Dahlem conference of 1981, a British Society of Developmental Biologists Symposium, as well as books that incorporated developmental genetics into older comparative themes. A major inductive process began with the discovery of widespread phylogenetic conservation in homeobox-containing genes. One interpretation of these (...)
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  15.  77
    Marx, Nietzsche, and Modernity.Nancy Sue Love - 1986 - New York: Cambridge University Press.
    An excellent window on Marx's and Nietzsche's overall theories and on the foibles of modern society. Her analysis of their views on the nature of man and their consequent theories of history is competent and probes deeply into the teachings of Marx and Nietzsche.
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  16. Loving and Living. By E.M.T.M. T. E. & Loving - 1891
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  17.  63
    A Philosophy of Maintenance? Engaging with the Concept of Software.David Love - 2007 - Philosophy of Management 6 (2):27-30.
    Although reducing the costs of software maintenance has long been held as an important goal, few researchers have studied software maintenance — except in the context of software design. However, thinking in software design is itself muddled by the frequent confusion over the term ‘software’ and ‘programs’. In this paper we argue for a re-examination of the underlying philosophical foundations of programs, in order to establish software as a phenomenon in its own right. Once we understand the basic structure of (...)
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  18.  32
    SUSTAIN: A Network Model of Category Learning.Bradley C. Love, Douglas L. Medin & Todd M. Gureckis - 2004 - Psychological Review 111 (2):309-332.
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  19. The Great Oom: the improbable birth of yoga in America.Robert Love - 2010 - New York: Viking Press.
    Chronicles the emergence of yoga in Jazz Age New York, tracing the contributions of instructor Pierre Bernard, who trained with an Indian master before introducing patrons to modern yogic principles from his profitable Hudson River ashram.
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  20.  99
    Explaining evolutionary innovations and novelties: Criteria of explanatory adequacy and epistemological prerequisites.Alan C. Love - 2008 - Philosophy of Science 75 (5):874-886.
    It is a common complaint that antireductionist arguments are primarily negative. Here I describe an alternative nonreductionist epistemology based on considerations taken from multidisciplinary research in biology. The core of this framework consists in seeing investigation as coordinated around sets of problems (problem agendas) that have associated criteria of explanatory adequacy. These ideas are developed in a case study, the explanation of evolutionary innovations and novelties, which demonstrates the applicability and fruitfulness of this nonreductionist epistemological perspective. This account also bears (...)
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  21.  6
    Peter J. Ahrensdorf, Greek Tragedy and Political Philosophy: Rationalism and Religion in Sophocles' Theban Plays (Cambridge: Cambridge University Press, 2009).Loving Beyond Being - 2009 - Graduate Faculty Philosophy Journal 30 (2).
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  22.  13
    Nietzsche and Dostoevsky: philosophy, morality, tragedy.Jeff Love & Jeffrey Metzger (eds.) - 2016 - Evanston, Illinois: Northwestern University Press.
    "Nietzche and Dostoevsky"are collectedessays on Nietzsche Dostoevsky andtwentieth-century intellectual history.".
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  23. Functional homology and homology of function: Biological concepts and philosophical consequences.Alan C. Love - 2007 - Biology and Philosophy 22 (5):691-708.
    “Functional homology” appears regularly in different areas of biological research and yet it is apparently a contradiction in terms—homology concerns identity of structure regardless of form and function. I argue that despite this conceptual tension there is a legitimate conception of ‘homology of function’, which can be recovered by utilizing a distinction from pre-Darwinian physiology (use versus activity) to identify an appropriate meaning of ‘function’. This account is directly applicable to molecular developmental biology and shares a connection to the theme (...)
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  24. Evolutionary morphology, innovation, and the synthesis of evolutionary and developmental biology.Alan C. Love - 2003 - Biology and Philosophy 18 (2):309-345.
    One foundational question in contemporarybiology is how to `rejoin evolution anddevelopment. The emerging research program(evolutionary developmental biology or`evo-devo) requires a meshing of disciplines,concepts, and explanations that have beendeveloped largely in independence over the pastcentury. In the attempt to comprehend thepresent separation between evolution anddevelopment much attention has been paid to thesplit between genetics and embryology in theearly part of the 20th century with itscodification in the exclusion of embryologyfrom the Modern Synthesis. This encourages acharacterization of evolutionary developmentalbiology as the marriage (...)
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  25.  96
    Typology Reconfigured: From the Metaphysics of Essentialism to the Epistemology of Representation.Alan C. Love - 2008 - Acta Biotheoretica 57 (1-2):51-75.
    The goal of this paper is to encourage a reconfiguration of the discussion about typology in biology away from the metaphysics of essentialism and toward the epistemology of classifying natural phenomena for the purposes of empirical inquiry. First, I briefly review arguments concerning ‘typological thinking’, essentialism, species, and natural kinds, highlighting their predominantly metaphysical nature. Second, I use a distinction between the aims, strategies, and tactics of science to suggest how a shift from metaphysics to epistemology might be accomplished. Typological (...)
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  26.  34
    Love and Rage” in the Classroom: Planting the Seeds of Community Empowerment.Kurt Love - 2012 - Educational Studies: A Jrnl of the American Educ. Studies Assoc 48 (1):52-75.
    Although no one unified anarchist theory exists, educational approaches can be taken to support the full liberation of the self and the construction of an interconnected community that strives to rid itself of eco-sociocultural oppressions. An anarchist pedagogical approach could be one that is rooted in a love/rage unit of analysis occurring along a spectrum of various types of actions and contributions within a community. Anarchism as a violent destruction of the state is a stereotypical view that has perhaps (...)
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  27.  43
    Dimensions of integration in interdisciplinary explanations of the origin of evolutionary novelty.Alan C. Love & Gary L. Lugar - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):537-550.
    Many philosophers of biology have embraced a version of pluralism in response to the failure of theory reduction but overlook how concepts, methods, and explanatory resources are in fact coordinated, such as in interdisciplinary research where the aim is to integrate different strands into an articulated whole. This is observable for the origin of evolutionary novelty—a complex problem that requires a synthesis of intellectual resources from different fields to arrive at robust answers to multiple allied questions. It is an apt (...)
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  28. The Idealization of Causation in Mechanistic Explanation.Alan C. Love & Marco J. Nathan - 2015 - Philosophy of Science 82 (5):761-774.
    Causal relations among components and activities are intentionally misrepresented in mechanistic explanations found routinely across the life sciences. Since several mechanists explicitly advocate accurately representing factors that make a difference to the outcome, these idealizations conflict with the stated rationale for mechanistic explanation. We argue that these idealizations signal an overlooked feature of reasoning in molecular and cell biology—mechanistic explanations do not occur in isolation—and suggest that explanatory practices within the mechanistic tradition share commonalities with model-based approaches prevalent in population (...)
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  29. COMPARING PART-WHOLE REDUCTIVE EXPLANATIONS IN BIOLOGY AND PHYSICS.Alan C. Love & Andreas Hüttemann - 2011 - In Dennis Dieks, Wenceslao Gonzalo, Thomas Uebel, Stephan Hartmann & Marcel Weber (eds.), Explanation, Prediction, and Confirmation. Springer. pp. 183--202.
    Many biologists and philosophers have worried that importing models of reasoning from the physical sciences obscures our understanding of reasoning in the life sciences. In this paper we discuss one example that partially validates this concern: part-whole reductive explanations. Biology and physics tend to incorporate different models of temporality in part-whole reductive explanations. This results from differential emphases on compositional and causal facets of reductive explanations, which have not been distinguished reliably in prior philosophical analyses. Keeping these two facets distinct (...)
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  30. Philosophical Dimensions of Individuality.Alan C. Love & Ingo Brigandt - 2017 - In Scott Lidgard & Lynn K. Nyhart (eds.), Biological Individuality: Integrating Scientific, Philosophical, and Historical Perspectives. Chicago: University of Chicago Press. pp. 318-348.
    Although natural philosophers have long been interested in individuality, it has been of interest to contemporary philosophers of biology because of its role in different aspects of evolutionary biology. These debates include whether species are individuals or classes, what counts as a unit of selection, and how transitions in individuality occur evolutionarily. Philosophical analyses are often conducted in terms of metaphysics (“what is an individual?”), rather than epistemology (“how can and do researchers conceptualize individuals so as to address some of (...)
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  31. Reductionism in Biology.Ingo Brigandt & Alan Love - 2008 - The Stanford Encyclopedia of Philosophy.
    Reductionism encompasses a set of ontological, epistemological, and methodological claims about the relation of different scientific domains. The basic question of reduction is whether the properties, concepts, explanations, or methods from one scientific domain (typically at higher levels of organization) can be deduced from or explained by the properties, concepts, explanations, or methods from another domain of science (typically one about lower levels of organization). Reduction is germane to a variety of issues in philosophy of science, including the structure of (...)
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  32.  21
    Evolutionary morphology and evo-devo: hierarchy and novelty.A. C. Love - 2006 - Theory in Biosciences 124:317–333.
    Although the role of morphology in evolutionary theory remains a subject of debate, assessing the contributions of morphological investigation to evolutionary developmental biology (Evo-devo) is a more circumscribed issue of direct relevance to ongoing research. Historical studies of morphologically oriented researchers and the formation of the Modern Synthesis in the Anglo-American context identify a recurring theme: the synthetic theory of evolution did not capture multiple levels of biological organization. When this feature is incorporated into a philosophical framework for explaining the (...)
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  33.  25
    Developmental mechanisms.Alan Love - 2018 - In S. Glennan & P. Illari (eds.), The Routledge Handbook of the Philosophy of Mechanisms. New York: Routledge.
    The Routledge Handbook of Mechanisms and Mechanical Philosophy is an outstanding reference source to the key topics, problems, and debates in this exciting subject and is the first collection of its kind. Comprising over thirty chapters by a team of international contributors, the Handbook is divided into four Parts: Historical perspectives on mechanisms The nature of mechanisms Mechanisms and the philosophy of science Disciplinary perspectives on mechanisms. Within these Parts central topics and problems are examined, including the rise of mechanical (...)
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  34.  65
    The Algorithmic Level Is the Bridge Between Computation and Brain.Bradley C. Love - 2015 - Topics in Cognitive Science 7 (2):230-242.
    Every scientist chooses a preferred level of analysis and this choice shapes the research program, even determining what counts as evidence. This contribution revisits Marr's three levels of analysis and evaluates the prospect of making progress at each individual level. After reviewing limitations of theorizing within a level, two strategies for integration across levels are considered. One is top–down in that it attempts to build a bridge from the computational to algorithmic level. Limitations of this approach include insufficient theoretical constraint (...)
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  35. Theory is as Theory Does: Scientific Practice and Theory Structure in Biology.Alan C. Love - 2013 - Biological Theory 7 (4):325-337, 430.
    Using the context of controversies surrounding evolutionary developmental biology (EvoDevo) and the possibility of an Extended Evolutionary Synthesis, I provide an account of theory structure as idealized theory presentations that are always incomplete (partial) and shaped by their conceptual content (material rather than formal organization). These two characteristics are salient because the goals that organize and regulate scientific practice, including the activity of using a theory, are heterogeneous. This means that the same theory can be structured differently, in part because (...)
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  36.  7
    The black circle: a life of Alexandre Kojève.Jeff Love - 2018 - New York: Columbia University Press.
    A Russian in Paris -- Russian contexts -- Madmen -- The possessed -- Godmen -- The Hegel lectures -- The last revolution -- Time no more -- The book of the dead -- The later writings -- Nobodies -- Roads or ruins? -- Why finality? -- The grand inquisitor.
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  37. Evolvability, dispositions, and intrinsicality.Alan C. Love - 2003 - Philosophy of Science 70 (5):1015-1027.
    In this paper I examine a dispositional property that has been receiving increased attention in biology, evolvability. First, I identify three compatible but distinct investigative approaches, distinguish two interpretations of evolvability, and treat the difference between dispositions of individuals versus populations. Second, I explore the relevance of philosophical distinctions about dispositions for evolvability, isolating the assumption that dispositions are intrinsically located. I conclude that some instances of evolvability cannot be understood as purely intrinsic to populations and suggest alternative strategies for (...)
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  38.  36
    Interdisciplinary lessons for the teaching of biology from the practice of Evo-devo.Alan C. Love - 2013 - Science & Education 22 (2):255–278.
    Evolutionary developmental biology (Evo-devo) is a vibrant area of contemporary life science that should be (and is) increasingly incorporated into teaching curricula. Although the inclusion of this content is important for biological pedagogy at multiple levels of instruction, there are also philosophical lessons that can be drawn from the scientific practices found in Evo-devo. One feature of particular significance is the interdisciplinary nature of Evo-devo investigations and their resulting explanations. Instead of a single disciplinary approach being the most explanatory or (...)
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  39.  60
    Microbes modeling ontogeny.Alan C. Love & Michael Travisano - 2013 - Biology and Philosophy 28 (2):161-188.
    Model organisms are central to contemporary biology and studies of embryogenesis in particular. Biologists utilize only a small number of species to experimentally elucidate the phenomena and mechanisms of development. Critics have questioned whether these experimental models are good representatives of their targets because of the inherent biases involved in their selection (e.g., rapid development and short generation time). A standard response is that the manipulative molecular techniques available for experimental analysis mitigate, if not counterbalance, this concern. But the most (...)
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  40.  31
    Evo-devo and the structure(s) of evolutionary theory: a different kind of challenge.Alan Love - 2017 - In Huneman Philippe & Walsh Denis M. (eds.), Challenging the Modern Synthesis. Oxford University Press. pp. 159-187.
    Represents the most comprehensive and current survey of the various challenges to the Modern Synthesis theory of evolution. Incorporates a variety of theoretical and disciplinary perspectives, from evolutionary biologists, historians and philosophers of science. These essays constitute the state of the art in the current debate on the status of the Modern Synthesis.
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  41.  66
    Hierarchy, causation and explanation: ubiquity, locality, and pluralism.Alan C. Love - 2012 - Interface Focus 2 (1):115–125..
    The ubiquity of top-down causal explanations within and across the sciences is prima facie evidence for the existence of top-down causation. Much debate has been focused on whether top-down causation is coherent or in conflict with reductionism. Less attention has been given to the question of whether these representations of hierarchical relations pick out a single, common hierarchy. A negative answer to this question undermines a commonplace view that the world is divided into stratified ‘levels’ of organization and suggests that (...)
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  42.  34
    Idealization in evolutionary developmental investigation: a tension between phenotypic plasticity and normal stages.Alan C. Love - 2010 - Philosophical Transactions of the Royal Society B 365:679–690.
    Idealization is a reasoning strategy that biologists use to describe, model and explain that purposefully departs from features known to be present in nature. Similar to other strategies of scientific reasoning, idealization combines distinctive strengths alongside of latent weaknesses. The study of ontogeny in model organisms is usually executed by establishing a set of normal stages for embryonic development, which enables researchers in different laboratory contexts to have standardized comparisons of experimental results. Normal stages are a form of idealization because (...)
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  43.  22
    Erratum to: Theory is as Theory Does: Scientific Practice and Theory Structure in Biology.Alan C. Love - 2013 - Biological Theory 7 (4):430-430.
    Erratum to Using the context of controversies surrounding evolutionary developmental biology (EvoDevo) and the possibility of an Extended Evolutionary Synthesis, I provide an account of theory structure as idealized theory presentations that are always incomplete (partial) and shaped by their conceptual content (material rather than formal organization). These two characteristics are salient because the goals that organize and regulate scientific practice, including the activity of using a theory, are heterogeneous. This means that the same theory can be structured differently, in (...)
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  44.  87
    Rethinking the structure of evolutionary theory for an extended synthesis.A. C. Love - 2010 - In M. Pigliucci & G. Müller (eds.), Evolution—The Extended Synthesis. MIT Press. pp. 403–441.
    This chapter describes the theoretical implications of Extended Synthesis and addresses the methodological options available for determining aspects of theoretical structure. It uses a “bottom-up” approach focused on evolutionary theory in particular, as opposed to a “top-down” strategy that attempts to characterize the structure of all scientific theories. The chapter shows that there are multiple stable components contained within a broad representation of evolutionary theory. It suggests that the philosophical analysis offered in the chapter regarding the structure of evolutionary theory (...)
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  45.  72
    Conceptualizing Evolutionary Novelty: Moving Beyond Definitional Debates.Ingo Brigandt & Alan C. Love - 2012 - Journal of Experimental Zoology Part B: Molecular and Developmental Evolution 318:417-427.
    According to many biologists, explaining the evolution of morphological novelty and behavioral innovation are central endeavors in contemporary evolutionary biology. These endeavors are inherently multidisciplinary but also have involved a high degree of controversy. One key source of controversy is the definitional diversity associated with the concept of evolutionary novelty, which can lead to contradictory claims (a novel trait according to one definition is not a novel trait according to another). We argue that this diversity should be interpreted in light (...)
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  46.  31
    Marine invertebrates, model organisms, and the modern synthesis: epistemic values, evo-devo, and exclusion.Alan C. Love - 2009 - Theory in Biosciences 128:19–42.
    A central reason that undergirds the significance of evo-devo is the claim that development was left out of the Modern synthesis. This claim turns out to be quite complicated, both in terms of whether development was genuinely excluded and how to understand the different kinds of embryological research that might have contributed. The present paper reevaluates this central claim by focusing on the practice of model organism choice. Through a survey of examples utilized in the literature of the Modern synthesis, (...)
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  47.  58
    Kant After Marx.S. M. Love - 2017 - Kantian Review 22 (4):579-598.
    While there are many points of opposition between the political philosophies of Marx and Kant, the two can greatly benefit from one another in various ways. Bringing the ideas of Marx and Kant together offers a promising way forward for each view. Most significantly, a powerful critique of capitalism can be developed from their combined thought: Kant’s political philosophy offers a robust idea of freedom to ground this critique, while Marx provides the nuanced understanding of social and political power structures (...)
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  48.  20
    The erotetic organization of developmental biology.A. C. Love - 2014 - In A. Minelli & T. Pradeu (eds.), Towards a Theory of Development. Oxford University Press. pp. 33–55.
    Developmental biology is the science of explaining how a variety of interacting processes generate the heterogeneous shapes, size, and structural features of an organism as it develops rom embryo to adult, or more generally throughout its life cycle (Love, 2008b; Minelli, 2011a). Although it is commonplace in philosophy to associate sciences with theories such that the individuation of a science is dependent on a constitutive theory or group of models, it is uncommon to find presentations of developmental biology making (...)
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  49.  16
    Morphological and paleontological perspectives for a history of evo-devo.A. C. Love - 2007 - In M. Laubichler & J. Maienschein (eds.), From Embryology to Evo-Devo: A History of Developmental Evolution. MIT Press. pp. 267–307.
    Exploring history pertinent to evolutionary developmental biology (hereafter, Evo-devo) is an exciting prospect given its current status as a cutting-edge field of research. The first and obvious question concerns where to begin searching for materials and sources. Since this new discipline adopts a moniker that intentionally juxtaposes ‘evolution’ and development’, individuals, disciplines, and institutional contexts relevant to the history of evolutionary studies and investigations of ontogeny prompt themselves. Each of these topics has received attention from historians and thus there is (...)
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  50.  13
    From philosophy to science (to natural philosophy): evolutionary developmental perspectives.A. C. Love - 2008 - The Quarterly Review of Biology 83:65–76.
    This paper focuses on abstraction as a mode of reasoning that facilitates a productive relationship between philosophy and science. Using examples from evolutionary developmental biology, I argue that there are two areas where abstraction can be relevant to science: reasoning explication and problem clarification. The value of abstraction is characterized in terms of methodology (modeling or data gathering) and epistemology (explanatory evaluation or data interpretation).
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