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Chance and necessity

New York,: Knopf (1971)

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  1. 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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  • The Heart of an AI: Agency, Moral Sense, and Friendship.Evandro Barbosa & Thaís Alves Costa - 2024 - Unisinos Journal of Philosophy 25 (1):01-16.
    The article presents an analysis centered on the emotional lapses of artificial intelligence (AI) and the influence of these lapses on two critical aspects. Firstly, the article explores the ontological impact of emotional lapses, elucidating how they hinder AI’s capacity to develop a moral sense. The absence of a moral emotion, such as sympathy, creates a barrier for machines to grasp and ethically respond to specific situations. This raises fundamental questions about machines’ ability to act as moral agents in the (...)
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  • Is ectopic expression caused by deregulatory mutations or due to gene‐regulation leaks with evolutionary potential?Francisco Rodríguez-Trelles, Rosa Tarrío & Francisco J. Ayala - 2005 - Bioessays 27 (6):592-601.
    It has long been thought that gene expression is tightly regulated in multicellular eukaryotes, so that expression profiles match functional profiles. This conception emerged from the assumption that gene activity is synonymous with gene function. This paradigm was first challenged by comparative protein electrophoresis studies showing extensive differences in expression patterns among related species. The paradigm is now being challenged by evolutionary transcriptomics using microarray technologies. Most gene expression profiles display features that lack any obvious functional significance. The so‐called “ectopic” (...)
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  • Modeling transcriptional regulatory networks.Hamid Bolouri & Eric H. Davidson - 2002 - Bioessays 24 (12):1118-1129.
    Developmental processes in complex animals are directed by a hardwired genomic regulatory code, the ultimate function of which is to set up a progression of transcriptional regulatory states in space and time. The code specifies the gene regulatory networks (GRNs) that underlie all major developmental events. Models of GRNs are required for analysis, for experimental manipulation and, most fundamentally, for comprehension of how GRNs work. To model GRNs requires knowledge of both their overall structure, which depends upon linkage amongst regulatory (...)
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