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  1. Which Fine-Tuning Arguments Are Fine?Alexei Grinbaum - 2012 - Foundations of Physics 42 (5):615-631.
    Fine-tuning arguments are a frequent find in the literature on quantum field theory. They are based on naturalness—an aesthetic criterion that was given a precise definition in the debates on the Higgs mechanism. We follow the history of such definitions and of their application at the scale of electroweak symmetry breaking. They give rise to a special interpretation of probability, which we call Gedankenfrequency. Finally, we show that the argument from naturalness has been extended to comparing different models of the (...)
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  • Bio-informational capitalism.Michael A. Peters - 2012 - Thesis Eleven 110 (1):98-111.
    This essay builds on the literatures on ‘biocapitalism’ and ‘informationalism’ (or ‘informational capitalism’) to develop the concept of ‘bio-informational capitalism’ in order to articulate an emergent form of capitalism that is self-renewing in the sense that it can change and renew the material basis for life and capital as well as program itself. Bio-informational capitalism applies and develops aspects of the new biology to informatics to create new organic forms of computing and self-reproducing memory that in turn has become the (...)
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  • DYI-Bio - economic, epistemological and ethical implications and ambivalences.Jozef Keulartz & Henk van den Belt - 2016 - Life Sciences, Society and Policy 12 (1):1-19.
    Since 2008, we witness the emergence of the Do-It-Yourself Biology movement, a global movement spreading the use of biotechnology beyond traditional academic and industrial institutions and into the lay public. Practitioners include a broad mix of amateurs, enthusiasts, students, and trained scientists. At this moment, the movement counts nearly 50 local groups, mostly in America and Europe, but also increasingly in Asia. Do-It-Yourself Bio represents a direct translation of hacking culture and practicesfrom the realm of computers and software into the (...)
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  • Postdigital science and education.Petar Jandrić, Jeremy Knox, Tina Besley, Thomas Ryberg, Juha Suoranta & Sarah Hayes - 2018 - Educational Philosophy and Theory 50 (10):893-899.
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  • Practical Integration: the Art of Balancing Values, Institutions and Knowledge. Lessons from the History of British Public Health and Town Planning.Giovanni De Grandis - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 56:92-105.
    The paper uses two historical examples, public health (1840-1880) and town planning (1945-1975) in Britain, to analyse the challenges faced by goal-driven research, an increasingly important trend in science policy, as exemplified by the prominence of calls for addressing Grand Challenges. Two key points are argued. (1) Given that the aim of research addressing social or global problems is to contribute to improving things, this research should include all the steps necessary to bring science and technology to fruition. This need (...)
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  • Biobricks and Crocheted Coral: Dispatches from the Life Sciences in the Age of Fabrication.Sophia Roosth - 2013 - Science in Context 26 (1):153-171.
    ArgumentWhat does “life” become at a moment when biological inquiry proceeds by manufacturing biological artifacts and systems? In this article, I juxtapose two radically different communities, synthetic biologists and Hyperbolic Crochet Coral Reef crafters (HCCR). Synthetic biology is a decade-old research initiative that seeks to merge biology with engineering and experimental research with manufacture. The HCCR is a distributed venture of three thousand craftspeople who cooperatively fabricate a series of yarn and plastic coral reefs to draw attention to the menace (...)
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  • Deviant interdisciplinarity as philosophical practice: prolegomena to deep intellectual history.Steve Fuller - 2013 - Synthese 190 (11):1899-1916.
    Philosophy may relate to interdisciplinarity in two distinct ways On the one hand, philosophy may play an auxiliary role in the process of interdisciplinarity, typically through conceptual analysis, in the understanding that the disciplines themselves are the main epistemic players. This version of the relationship I characterise as ‘normal’ because it captures the more common pattern of the relationship, which in turn reflects an acceptance of the division of organized inquiry into disciplines. On the other hand, philosophy may be itself (...)
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  • Genetic Engineering and Human Mental Ecology: Interlocking Effects and Educational Considerations.Ramsey Affifi - 2017 - Biosemiotics 10 (1):75-98.
    This paper describes some likely semiotic consequences of genetic engineering on what Gregory Bateson has called “the mental ecology” of future humans, consequences that are less often raised in discussions surrounding the safety of GMOs. The effects are as follows: an increased 1) habituation to the presence of GMOs in the environment, 2) normalization of empirically false assumptions grounding genetic reductionism, 3) acceptance that humans are capable and entitled to decide what constitutes an evolutionary improvement for a species, 4) perception (...)
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  • Philosophy, Governance and Law in the System of Social Action: Moral and Instrumental Problems of Genetic Research.Vladimir I. Przhilenskiy & Пржиленский Владимир Игоревич - 2024 - RUDN Journal of Philosophy 28 (1):244-259.
    The research analyzes the process of formation of the ethics committee as a new institution in the system of regulation of genetic research. The external factors of this process are the increasing digitalization of medical and research practices, as well as the special situation that is developing in the field of genomic research and the use of genetic technologies, where issues of philosophy, jurisprudence and administration have generated many fundamentally new, and sometimes unexpected contexts. The author shows the similarity and (...)
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  • Grand Challenges and Small Steps. Introduction to the Special Issue 'Interdisciplinary Integration: The Real Grand Challenge for the Life Sciences?'.Giovanni De Grandis & Sophia Efstathiou - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 56:39-47.
    This collection addresses two different audiences: 1) historians and philosophers of the life sciences reflecting on collaborations across disciplines, especially as regards defining and addressing Grand Challenges; 2) researchers and other stakeholders involved in cross-disciplinary collaborations aimed at tackling Grand Challenges in the life and medical sciences. The essays collected here offer ideas and resources both for the study and for the practice of goal-driven cross-disciplinary research in the life and medical sciences. We organise this introduction in three sections. The (...)
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  • Dr. Sanger, meet Mr. Moore.Hallam Stevens - 2012 - Bioessays 34 (2):103-105.
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  • Posthumanism, open ontologies and bio-digital becoming: Response to Luciano Floridi’s Onlife Manifesto.Michael A. Peters & Petar Jandrić - 2019 - Educational Philosophy and Theory 51 (10):971-980.
    In The Onlife Manifesto: Being Human in a Hyperconnected Era Luciano Floridi and his associates examine various aspects of the contemporary meaning of humanity. Yet, their insights give less thought to the political economy of techno-capitalism that in large measure creates ICTs and leads to their further innovation, development and commercialization. This article responses to Floridi’s work and examines political economy of the blurred distinction between human, machine and nature in the postdigital context. Taking lessons from early history of the (...)
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  • DIY-Bio – economic, epistemological and ethical implications and ambivalences.Jozef Keulartz & Henk Belt - unknown
    Since 2008, we witness the emergence of the Do-It-Yourself Biology movement, a global movement spreading the use of biotechnology beyond traditional academic and industrial institutions and into the lay public. Practitioners include a broad mix of amateurs, enthusiasts, students, and trained scientists. At this moment, the movement counts nearly 50 local groups, mostly in America and Europe, but also increasingly in Asia. Do-It-Yourself Bio represents a direct translation of hacking culture and practicesfrom the realm of computers and software into the (...)
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  • Should we enhance animals?S. Chan - 2009 - Journal of Medical Ethics 35 (11):678-683.
    Much bioethical discussion has been devoted to the subject of human enhancement through various technological means such as genetic modification. Although many of the same technologies could be, indeed in many cases already have been, applied to non-human animals, there has been very little consideration of the concept of “animal enhancement”, at least not in those specific terms. This paper addresses the notion of animal enhancement and the ethical issues surrounding it. A definition of animal enhancement is proposed that provides (...)
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  • From garden biotech to garage biotech: amateur experimental biology in historical perspective.Helen Anne Curry - 2014 - British Journal for the History of Science 47 (3):539-565.
    This paper describes the activities of amateur plant breeders and their application of various methods and technologies derived from genetics research over the course of the twentieth century. These ranged from selection and hybridization to more interventionist approaches such as radiation treatment to induce genetic mutations and chemical manipulation of chromosomes. I argue that these activities share characteristics with twenty-first-century do-it-yourself (DIY) biology (a recent upswing in amateur experimental biology) as well as other amateur science and technology of the twentieth (...)
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