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  1. Hidden Concepts in the History of Origins-of-Life Studies.Carlos Mariscal, Ana Barahona, Nathanael Aubert-Kato, Arsev Umur Aydinoglu, Stuart Bartlett, María Luz Cárdenas, Kuhan Chandru, Carol E. Cleland, Benjamin T. Cocanougher, Nathaniel Comfort, Athel Cornish-Boden, Terrence W. Deacon, Tom Froese, Donato Giovanelli, John Hernlund, Piet Hut, Jun Kimura, Marie-Christine Maurel, Nancy Merino, Alvaro Julian Moreno Bergareche, Mayuko Nakagawa, Juli Pereto, Nathaniel Virgo, Olaf Witkowski & H. James Cleaves Ii - 2019 - Origins of Life and Evolution of Biospheres 1.
    In this review, we describe some of the central philosophical issues facing origins-of-life research and provide a targeted history of the developments that have led to the multidisciplinary field of origins-of-life studies. We outline these issues and developments to guide researchers and students from all fields. With respect to philosophy, we provide brief summaries of debates with respect to (1) definitions (or theories) of life, what life is and how research should be conducted in the absence of an accepted theory (...)
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  • On natural selection and Hume's second problem.Armando Aranda-Anzaldo - 1998 - Evolution and Cognition 4 (2):156-172.
    David Hume's famous riddle of induction implies a second problem related to the question of whether the laws and principles of nature might change in the course of time. Claims have been made that modern developments in physics and astrophysics corroborate the translational invariance of the laws of physics in time. However, the appearance of a new general principle of nature, which might not be derivable from the known laws of physics, or that might actually be a non-physical one (this (...)
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  • Two Purposes of Black Hole Production.Clément Vidal - 2012 - Foundations of Science 17 (1):13-15.
    Crane envisions the speculative conjecture that intelligent civilizations might want and be able to produce black holes in the very far future. He implicitly suggests two main purposes of this enterprise: (i) energy production and (ii) universe production. We discuss those two options. The commentary is obviously highly speculative and should be read accordingly.
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  • Evolution in thermodynamic perspective: A historical and philosophical angle.Iris Fry - 1995 - Zygon 30 (2):227-248.
    The recently suggested reformulation of Darwinian evolutionary theory, based on the thermodynamics of self‐organizing processes, has strong philosophical implications. My claim is that the main philosophical merit of the thermodynamic approach, made especially clear in J.S. Wicken's work, is its insistence on the law‐governed, continuous nature of evolution. I attempt to substantiate this claim following a historical analysis of beginning‐of‐the‐century ideas on evolution and matter‐life relationship, in particular, the fitness‐of‐the‐environment‐for‐life theory of the Harvard physiologist L.J. Henderson. In addition, I point (...)
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  • Determinism, predictability and open-ended evolution: lessons from computational emergence.Philippe Huneman - 2012 - Synthese 185 (2):195-214.
    Among many properties distinguishing emergence, such as novelty, irreducibility and unpredictability, computational accounts of emergence in terms of computational incompressibility aim first at making sense of such unpredictability. Those accounts prove to be more objective than usual accounts in terms of levels of mereology, which often face objections of being too epistemic. The present paper defends computational accounts against some objections, and develops what such notions bring to the usual idea of unpredictability. I distinguish the objective unpredictability, compatible with determinism (...)
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  • Does origins of life research rest on a mistake?Roger White - 2007 - Noûs 41 (3):453–477.
    This disagreement extends to the fundamental details of physical and biochemical theories. On the other hand, (2) There is almostuniversal agreementthatlife did notfirstcome aboutmerely by chance. This is not to say that all scientists think that life’s existence was inevitable. The common view is that given a fuller understanding of the physical and biological conditions and processes involved, the emergence of life should be seen to be quite likely, or at least not very surprising. The view which is almost universally (...)
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  • From spontaneous generation to cosmic abiogenesis. An attempt at systematization of biogenesis theories.Adam Świeżyński - 2020 - Studia Philosophiae Christianae 56 (S2):95-113.
    The question of the origin of life interested people for centuries. All existing views on this subject can be classified into different areas of our knowledge of the world: natural sciences, philosophy, and theology. Some theories contain more or less explicit elements from all of these areas. Thus, it is helpful to take a closer look at them and to classify all the typical groups of theories about the origins of life. We can in this way stress their mutual connections (...)
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  • The Evolution of Complexity.Mark Bedau - 2009 - In Barberousse Anouk, Morange M. & Pradeau T. (eds.), Mapping the Future of Biology. Boston Studies in the Philosophy of Science, vol 266. Springer.
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  • Does Species Evolution Follow Scale Laws? First Applications of the Scale Relativity Theory to Fossil and Living-beings.Jean Chaline - 2010 - Foundations of Science 15 (3):279-302.
    We have demonstrated, using the Cantor dust method, that the statistical distribution of appearance and disappearance of rodents species (Arvicolid rodent radiation in Europe) follows power laws strengthening the evidence for a fractal structure set. Self-similar laws have been used as model for the description of a huge number of biological systems. With Nottale we have shown that log-periodic behaviors of acceleration or deceleration can be applied to branching macroevolution, to the time sequences of major evolutionary leaps (global life tree, (...)
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  • Computational and Biological Analogies for Understanding Fine-Tuned Parameters in Physics.Clément Vidal - 2010 - Foundations of Science 15 (4):375 - 393.
    In this philosophical paper, we explore computational and biological analogies to address the fine-tuning problem in cosmology. We first clarify what it means for physical constants or initial conditions to be fine-tuned. We review important distinctions such as the dimensionless and dimensional physical constants, and the classification of constants proposed by Lévy-Leblond. Then we explore how two great analogies, computational and biological, can give new insights into our problem. This paper includes a preliminary study to examine the two analogies. Importantly, (...)
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  • A theory of biochemical organization, metabolic pathways, and evolution.Harold J. Morowitz - 1999 - Complexity 4 (6):39-53.
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  • (3 other versions)Epistemological issues in the study of microbial life: alternative terran biospheres?Carol E. Cleland - 2007 - Stud. Hist. Phil. Biol. And Biomed. Sci 38 (4):847-61.
    The assumption that all life on Earth today shares the same basic molecular architecture and biochemistry is part of the paradigm of modern biology. This paper argues that there is little theoretical or empirical support for this widely held assumption. Scientists know that life could have been at least modestly different at the molecular level and it is clear that alternative molecular building blocks for life were available on the early Earth. If the emergence of life is, like other natural (...)
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  • (3 other versions)Epistemological issues in the study of microbial life: alternative terran biospheres?Carol E. Cleland - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):847-861.
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  • (3 other versions)Epistemological issues in the study of microbial life: Alternative terran biospheres?Carol E. Cleland - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):847-861.
    The assumption that all life on Earth today shares the same basic molecular architecture and biochemistry is part of the paradigm of modern biology. This paper argues that there is little theoretical or empirical support for this widely held assumption. Scientists know that life could have been at least modestly different at the molecular level and it is clear that alternative molecular building blocks for life were available on the early Earth. If the emergence of life is, like other natural (...)
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  • Abiogenesis as a theoretical challenge: chance and directionality through the lens of scientific realism.Loris Serafino - unknown
    In this paper I intend to reflect on the intellectual rationale underlying the origin of life scientific research efforts by reconsidering some of its conceptual premises and difficulties.
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