Results for 'Biological agriculture'

998 found
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  1. Organic Agriculture.Andrzej Klimczuk & Magdalena Klimczuk-Kochańska - 2020 - In Scott Romaniuk, Manish Thapa & Péter Marton (eds.), The Palgrave Encyclopedia of Global Security Studies. Springer Verlag. pp. 1--7.
    Consumers are increasingly aware of the health- and safety-related implications of the food which they can buy in the market. At the same time, households have become more aware of their environmental responsibilities. Regarding the production of food, a crucial and multifunctional role is played by agriculture. The way vegetables, fruits, and other crops are grown and how livestock is raised has an impact on the environment and landscape. Operations performed by farmers, such as water management, can be dangerous (...)
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  2. Synthetic Biology and Biofuels.Catherine Kendig - 2012 - In Paul B. Thompson & David M. Kaplan (eds.), Encyclopedia of Food and Agricultural Ethics. New York: Springer Verlag.
    Synthetic biology is a field of research that concentrates on the design, construction, and modification of new biomolecular parts and metabolic pathways using engineering techniques and computational models. By employing knowledge of operational pathways from engineering and mathematics such as circuits, oscillators, and digital logic gates, it uses these to understand, model, rewire, and reprogram biological networks and modules. Standard biological parts with known functions are catalogued in a number of registries (e.g. Massachusetts Institute of Technology Registry of (...)
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  3. Biological Agents of Bioremediation: A Concise Review.Karabi Biswas - 2015 - Frontiers in Environmental Microbiology 1 (3):39-43.
    Due to intensive agriculture, rapid industrialization and anthropogenic activities have caused environmental pollution, land degradation and increased pressure on the natural resources and contributing to their adulteration. Bioremediation is the use of biological organisms to destroy, or reduce the hazardous wastes on a contaminated site. Bioremediation is the most potent management tool to control the environmental pollution and recover contaminated soil. Use of biological materials, coupled to other advanced processes is one of the most promising and inexpensive (...)
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  4. A Latin American Perspective to Agricultural Ethics.Cristian Timmermann - 2019 - In Eduardo Rivera-López & Martin Hevia (eds.), Controversies in Latin American Bioethics. Cham: Springer. pp. 203-217.
    The mixture of political, social, cultural and economic environments in Latin America, together with the enormous diversity in climates, natural habitats and biological resources the continent offers, make the ethical assessment of agricultural policies extremely difficult. Yet the experience gained while addressing the contemporary challenges the region faces, such as rapid urbanization, loss of culinary and crop diversity, extreme inequality, disappearing farming styles, water and land grabs, malnutrition and the restoration of the rule of law and social peace, can (...)
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  5. Ethnoveterinary Knowledge and Biological Evaluation of Plants Used for Mitigating Cattle Diseases: A Critical Insight Into the Trends and Patterns in South Africa.Mompati Vincent Chakale, Mulunda Mwanza & Adeyemi O. Aremu - 2021 - Frontiers in Veterinary Science 8 (8:710884):891-904.
    Cattle farming is a traditional agricultural system that contributes to the rural economic, social, and cultural values of the communities. Cattle as common with other livestock, are affected by many diseases that cause mortality and economic losses. In many rural households, the use of plants and associated knowledge are popular for managing cattle diseases, especially in areas experiencing challenges with conventional veterinary medicine. Evidence on the documentation of indigenous knowledge and biological evaluation of plants used against cattle diseases remain (...)
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  6. Ernesto Genoni: Australia’s pioneer of biodynamic agriculture.John Paull - 2014 - Journal of Organics 1 (1):57-81.
    Ernesto Genoni (1885-1975) pioneered biodynamic agriculture in Australia. In 1928 he was the first of (ultimately) twelve Australians to join Rudolf Steiner’s Experimental Circle of Anthroposophical Farmers and Gardeners (ECAFG) which was based at the Goetheanum, Dornach, Switzerland. Ernesto trained as an artist for five years at Milan’s prestigious Brera Academy. He visited his brothers in Australia, broad-acre immigrant farmers in Western Australia, in 1912 and 1914 and during these visits he worked on their, and other’s, farms. In 1916 (...)
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  7. Review of Gary L. Comstock, Vexing Nature? On the Ethical Case Against Agricultural Biotechnology. [REVIEW]Paul B. Thompson - 2001 - Agriculture and Human Values 18 (3):341-345.
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  8. When is a Techno-Fix Legitimate? The Case of Viticultural Climate Resilience.Rune Nydal, Giovanni De Grandis & Lars Ursin - 2023 - Journal of Agricultural and Environmental Ethics 36 (1):1-17.
    Climate change is an existential risk reinforced by ordinary actions in afuent societies—often silently present in comfortable and enjoyable habits. This silence is sometimes broken, presenting itself as a nagging reminder of how our habits fuel a catastrophe. As a case in point, global warming has created a state of urgency among wine makers in Spain, as the alcohol level has risen to a point where it jeopardises wine quality and thereby Spanish viticulture. Eforts are currently being made to solve (...)
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  9. Appraising Asymmetries: Considerations on the Changing Relation between Human Existence and Planetary Nature—Guest Editors’ Introduction.Jochem Zwier, Vincent Blok & Pieter Lemmens - 2018 - Journal of Agricultural and Environmental Ethics 31 (6):635-644.
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  10. Is Science Neurotic?Nicholas Maxwell - 2004 - London: World Scientific.
    In this book I show that science suffers from a damaging but rarely noticed methodological disease, which I call rationalistic neurosis. It is not just the natural sciences which suffer from this condition. The contagion has spread to the social sciences, to philosophy, to the humanities more generally, and to education. The whole academic enterprise, indeed, suffers from versions of the disease. It has extraordinarily damaging long-term consequences. For it has the effect of preventing us from developing traditions and institutions (...)
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  11. Philosophy of Ethnobiology: Understanding Knowledge Integration and Its Limitations. Journal of Ethnobiology.David Ludwig & Charbel El-Hani - 2019 - Journal of Ethnobiology 39.
    Ethnobiology has become increasingly concerned with applied and normative issues such as climate change adaptation, forest management, and sustainable agriculture. Applied ethnobiology emphasizes the practical importance of local and traditional knowledge in tackling these issues but thereby also raises complex theoretical questions about the integration of heterogeneous knowledge systems. The aim of this article is to develop a framework for addressing questions of integration through four core domains of philosophy -epistemology, ontology, value theory, and political theory. In each of (...)
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  12.  86
    Homo methodologicus and the origin of science and civilisation.Krauss Alexander - 2023 - Heliyon 9 (10).
    Few things have impacted our lives as much as science and technology, but how we developed science and civilisation is one of the most challenging questions that has not yet been well explained. Attempting to identify the central driver, leading scientists have highlighted the role of culture, cooperation and geography. They focus thus on broad factors that are important basic preconditions but that we cannot directly influence. To better address the question, this paper integrates evidence from evolutionary biology, cognitive science, (...)
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  13. Flora naczyniowa doliny Olszowki [Kotlina Sandomierska] - walory i zagadnienia ochrony.Adam P. Kubiak - 2009 - Chrońmy Przyrodę Ojczystą 4 (65):303-310.
    The study area was a small lowland river valley within a range of 4750 m length and approx. 150 m width (about 62 ha), situated in the south-east of Poland, in the middle of Sandomierz Basin (Fig. 1). Flora and the chosen most valuable plant communities of the river bed with adjacent ecotone zone were investigated in 2007. During the study 291 species of vascular plants were found. Among them 10 are protected: Batrachium peltatum, Convallaria majalis, Dactylorhiza majalis, Daphne mezereum, (...)
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  14. Global Catastrophic and Existential Risks Communication Scale.Alexey Turchin & Denkeberger David - 2018 - Futures:not defiend yet.
    Existential risks threaten the future of humanity, but they are difficult to measure. However, to communicate, prioritize and mitigate such risks it is important to estimate their relative significance. Risk probabilities are typically used, but for existential risks they are problematic due to ambiguity, and because quantitative probabilities do not represent some aspects of these risks. Thus, a standardized and easily comprehensible instrument is called for, to communicate dangers from various global catastrophic and existential risks. In this article, inspired by (...)
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  15. Plankton diversity and density in Pandey Taal of Gonda district, Uttar Pradesh, India.S. K. Srivastava - 2020 - International Journal of Applied Research 6 (12):453-455.
    The importance of the plankton is well recognized as these have vital part in food chain and play a key role in cycling of organic matter in the aquatic ecosystem. The inadequate knowledge of plankton and their dynamics is a major drawback for the better understanding of the life process of fresh water bodies. In the present investigation, total 23 species of phytoplankton and 22 species of zooplankton were also recorded. Bimodal pattern of seasonal variation of plankton was observed with (...)
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  16. Agricultural technologies as living machines: toward a biomimetic conceptualization of technology.V. Blok & H. G. J. Gremmen - 2018 - Ethics, Policy and Environment 21 (2):246-263.
    Smart Farming Technologies raise ethical issues associated with the increased corporatization and industrialization of the agricultural sector. We explore the concept of biomimicry to conceptualize smart farming technologies as ecological innovations which are embedded in and in accordance with the natural environment. Such a biomimetic approach of smart farming technologies takes advantage of its potential to mitigate climate change, while at the same time avoiding the ethical issues related to the industrialization of the agricultural sector. We explore six principles of (...)
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  17. Fair agricultural innovation for a changing climate.Zoë Robaey & Cristian Timmermann - 2018 - In Erinn Gilson & Sarah Kenehan (eds.), Food, Environment and Climate Change. Lanham: Rowman & Littlefield International. pp. 213-230.
    Agricultural innovation happens at different scales and through different streams. In the absence of a common global research agenda, decisions on which innovations are brought to existence, and through which methods, are taken with insufficient view on how innovation affects social relations, the environment, and future food production. Mostly, innovations are considered from the standpoint of economic efficiency, particularly in relationship to creating jobs for technology-exporting countries. Increasingly, however, the realization that innovations cannot be successful on their technical prowess alone (...)
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  18. Understanding Biology in the Age of Artificial Intelligence.Adham El Shazly, Elsa Lawerence, Srijit Seal, Chaitanya Joshi, Matthew Greening, Pietro Lio, Shantung Singh, Andreas Bender & Pietro Sormanni - manuscript
    Modern life sciences research is increasingly relying on artificial intelligence (AI) approaches to model biological systems, primarily centered around the use of machine learning (ML) models. Although ML is undeniably useful for identifying patterns in large, complex data sets, its widespread application in biological sciences represents a significant deviation from traditional methods of scientific inquiry. As such, the interplay between these models and scientific understanding in biology is a topic with important implications for the future of scientific research, (...)
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  19. Urban Agriculture and Environmental Imagination.Samantha Noll - 2019 - In Sharon Meagher, Samantha Noll & Joseph S. Biehl (eds.), The Routledge Handbook of Philosophy of the City. New York, NY, USA: pp. 100-130.
    While we are currently experiencing a renaissance in philosophical work on agriculture and food ( Barnhill, Budolfson, & Doggett 2016 ; Thompson 2015 ; Kaplan 2012 ), these topics were common sources of discussion throughout the three-thousand-year history of Western thought. For example, the Ancient Greek philosopher Aristotle (2014 ) explored connections between fulfi lling human promise and systems of agriculture ( Thompson & Noll 2015 ) and Hippocrates (1923 ) stressed the importance of cultivating agricultural products provided (...)
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  20. Biological normativity: a new hope for naturalism?Walter Veit - 2021 - Medicine, Health Care and Philosophy 24 (2):291-301.
    Since Boorse [Philos Sci 44(4):542–573, 1977] published his paper “Health as a theoretical concept” one of the most lively debates within philosophy of medicine has been on the question of whether health and disease are in some sense ‘objective’ and ‘value-free’ or ‘subjective’ and ‘value-laden’. Due to the apparent ‘failure’ of pure naturalist, constructivist, or normativist accounts, much in the recent literature has appealed to more conciliatory approaches or so-called ‘hybrid accounts’ of health and disease. A recent paper by Matthewson (...)
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  21. Field Deaths in Plant Agriculture.Bob Fischer & Andy Lamey - 2018 - Journal of Agricultural and Environmental Ethics 31 (4):409-428.
    We know that animals are harmed in plant production. Unfortunately, though, we know very little about the scale of the problem. This matters for two reasons. First, we can’t decide how many resources to devote to the problem without a better sense of its scope. Second, this information shortage throws a wrench in arguments for veganism, since it’s always possible that a diet that contains animal products is complicit in fewer deaths than a diet that avoids them. In this paper, (...)
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  22.  52
    The evolution of the biological sciences.Nathalie Gontier - 2024 - In Nathalie Gontier, Andy Lock & Chris Sinha (eds.), The Oxford Handbook of Human Symbolic Evolution. OUP. pp. 3-25.
    This chapter introduces the main research schools and paradigms along which the field of evolutionary biology has been developing. Evolutionary thinking was originally founded upon the Neo-Darwinian paradigm that combines the teachings of traditional Darwinism with those of the Modern Synthesis. The Neo-Darwinian paradigm has since further diversified into the Micro-, Meso-, and Macroevolutionary schools, and it has also started to integrate the school of Ecology. Together, these schools establish the paradigm called Ecological Evolutionary Developmental Biology (Eco-Evo-Devo). A final school (...)
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  23. Agriculture in Bulgaria: from European Union accession to the COVID-19 pandemic.Maksym Bezpartochnyi, Igor Britchenko & Radostin Vazov - 2021 - In Concepts, strategies and mechanisms of economic systems management in the context of modern world challenges. pp. 187-206.
    Agriculture in Bulgaria is one of sectors country’s economy in which significant changes have taken place over the past three decades: in the field of economic relations, the structure of farms, the size and production activity of enterprises, income and profit. These changes are due to the agrarian reform carried out in the 1990s, accession Bulgaria to the European Union, and the implementation of measures and mechanisms of the Common Agricultural Policy (CAP). In the period before accession Bulgaria to (...)
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  24. “Cultural Racism”: Biology and Culture in Racist Thought.Lawrence Blum - 2023 - Journal of Social Philosophy 54 (3):350-369.
    Observers have noted a decline (in the US) in attributions of genetically-based inferiority (e.g. in intelligence) to Blacks, and a rise in attributions of culturally-based inferiority. Is this "culturalism" merely warmed-over racism ("cultural racism") or a genuinely distinct way of thinking about racial groups? The question raises a larger one about the relative place of biology and culture in racist thought. I develop a typology of culturalisms as applied to race: (1) inherentist or essentialist culturalism (inferiorizing cultural characteristics wrongly but (...)
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  25. CURRENT AGRICULTURAL POLICY REFORM IN THE EU.Olesia Bezpartochna - 2018 - In Гринько Т.В (ed.), Управління розвитком суб’єктів підприємництва: механізми, реалії, перспективи. pp. 16-18.
    Support for agricultural producers in the European Union remained uneven, as preferences were given to the most economically stable regions and businesses. Intensive farming methods continued to be used, with consequences for both the environment and animal health. In addition, the applicant countries that joined the European Union had to adopt legislation, i.e. meet the parameters and criteria that exist in the Single Market for agricultural products, namely: to ensure appropriate product quality, update the technical and technological base of production, (...)
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  26. Absolute Biological Needs.Stephen McLeod - 2014 - Bioethics 28 (6):293-301.
    Absolute needs (as against instrumental needs) are independent of the ends, goals and purposes of personal agents. Against the view that the only needs are instrumental needs, David Wiggins and Garrett Thomson have defended absolute needs on the grounds that the verb ‘need’ has instrumental and absolute senses. While remaining neutral about it, this article does not adopt that approach. Instead, it suggests that there are absolute biological needs. The absolute nature of these needs is defended by appeal to: (...)
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  27. Biological Atomism and Cell Theory.Daniel J. Nicholson - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):202-211.
    Biological atomism postulates that all life is composed of elementary and indivisible vital units. The activity of a living organism is thus conceived as the result of the activities and interactions of its elementary constituents, each of which individually already exhibits all the attributes proper to life. This paper surveys some of the key episodes in the history of biological atomism, and situates cell theory within this tradition. The atomistic foundations of cell theory are subsequently dissected and discussed, (...)
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  28. Biological Individuals.Robert A. Wilson & Matthew J. Barker - 2024 - Stanford Encyclopedia of Philosophy.
    The impressive variation amongst biological individuals generates many complexities in addressing the simple-sounding question what is a biological individual? A distinction between evolutionary and physiological individuals is useful in thinking about biological individuals, as is attention to the kinds of groups, such as superorganisms and species, that have sometimes been thought of as biological individuals. More fully understanding the conceptual space that biological individuals occupy also involves considering a range of other concepts, such as life, (...)
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  29. Impermanent Biological Phenomena.Sun Kyeong Yu - 2021 - In Buddhism and Culture. Seoul, South Korea:
    “Impermanent Biological Phenomena” July 2021, Buddhism and Culture (a Korean-language Buddhist magazine sponsored by the Foundation for the Promotion of Korean Buddhism), Korea.
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  30. Evolutionary biology meets consciousness: essay review of Simona Ginsburg and Eva Jablonka’s The Evolution of the Sensitive Soul.Heather Browning & Walter Veit - 2021 - Biology and Philosophy 36 (1):1-11.
    In this essay, we discuss Simona Ginsburg and Eva Jablonka’s The Evolution of the Sensitive Soul from an interdisciplinary perspective. Constituting perhaps the longest treatise on the evolution of consciousness, Ginsburg and Jablonka unite their expertise in neuroscience and biology to develop a beautifully Darwinian account of the dawning of subjective experience. Though it would be impossible to cover all its content in a short book review, here we provide a critical evaluation of their two key ideas—the role of Unlimited (...)
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  31. A Biologically Informed Hylomorphism.Christopher J. Austin - 2017 - In William M. R. Simpson, Robert C. Koons & Nicholas J. Teh (eds.), Neo-Aristotelian Perspectives on Contemporary Science. Routledge. pp. 185-210.
    Although contemporary metaphysics has recently undergone a neo-Aristotelian revival wherein dispositions, or capacities are now commonplace in empirically grounded ontologies, being routinely utilised in theories of causality and modality, a central Aristotelian concept has yet to be given serious attention – the doctrine of hylomorphism. The reason for this is clear: while the Aristotelian ontological distinction between actuality and potentiality has proven to be a fruitful conceptual framework with which to model the operation of the natural world, the distinction between (...)
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  32. How Biological Technology Should Inform the Causal Selection Debate.Janella Baxter - 2019 - Philosophy, Theory, and Practice in Biology 11.
    Waters’s (2007) actual difference making and Weber’s (2013, 2017) biological normality approaches to causal selection have received many criticisms, some of which miss their target. Disagreement about whether Waters’s and Weber’s views succeed in providing criteria that uniquely singles out the gene as explanatorily significant in biology has led philosophers to overlook a prior problem. Before one can address whether Waters’s and Weber’s views successfully account for the explanatory significance of genes, one must ask whether either view satisfactorily meets (...)
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  33. From Biological Synapses to "Intelligent" Robots.Birgitta Dresp-Langley - 2022 - Electronics 11:1-28.
    This selective review explores biologically inspired learning as a model for intelligent robot control and sensing technology on the basis of specific examples. Hebbian synaptic learning is discussed as a functionally relevant model for machine learning and intelligence, as explained on the basis of examples from the highly plastic biological neural networks of invertebrates and vertebrates. Its potential for adaptive learning and control without supervision, the generation of functional complexity, and control architectures based on self-organization is brought forward. Learning (...)
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  34. Well-Structured Biology: Numerical Taxonomy's Epistemic Vision for Systematics.Beckett Sterner - 2014 - In Andrew Hamilton (ed.), Patterns in Nature. University of California Press. pp. 213-244.
    What does it look like when a group of scientists set out to re-envision an entire field of biology in symbolic and formal terms? I analyze the founding and articulation of Numerical Taxonomy between 1950 and 1970, the period when it set out a radical new approach to classification and founded a tradition of mathematics in systematic biology. I argue that introducing mathematics in a comprehensive way also requires re-organizing the daily work of scientists in the field. Numerical taxonomists sought (...)
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  35. Mathematical biology and the existence of biological laws.Mauro Dorato - 2012 - In D. Dieks, S. Hartmann, T. Uebel & M. Weber (eds.), Probabilities, Laws and Structure. Springer.
    An influential position in the philosophy of biology claims that there are no biological laws, since any apparently biological generalization is either too accidental, fact-like or contingent to be named a law, or is simply reducible to physical laws that regulate electrical and chemical interactions taking place between merely physical systems. In the following I will stress a neglected aspect of the debate that emerges directly from the growing importance of mathematical models of biological phenomena. My main (...)
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  36. Are biological traits explained by their 'selected effect' functions?Joshua R. Christie, Carl Brusse, Pierrick Bourrat, Peter Takacs & Paul Edmund Griffiths - forthcoming - Australasian Philosophical Review.
    The selected effects or ‘etiological’ theory of Proper function is a naturalistic and realist account of biological teleology. It is used to analyse normativity in philosophy of language, philosophy of mind, philosophy of medicine and elsewhere. The theory has been developed with a simple and intuitive view of natural selection. Traits are selected because of their positive effects on the fitness of the organisms that have them. These ‘selected effects’ are the Proper functions of the traits. Proponents argue that (...)
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  37. How Biology Became Social and What It Means for Social Theory.Maurizio Meloni - 2014 - The Sociological Review 62:593-614.
    In this paper I first offer a systematic outline of a series of conceptual novelties in the life-sciences that have favoured, over the last three decades, the emergence of a more social view of biology. I focus in particular on three areas of investigation: (1) technical changes in evolutionary literature that have provoked a rethinking of the possibility of altruism, morality and prosocial behaviours in evolution; (2) changes in neuroscience, from an understanding of the brain as an isolated data processor (...)
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  38. Principles for Incorporating Farmers in the Ethical Assessment of Genetically Modified Crops.Jason Behrmann & Bryn Williams-Jones - 2010 - Ethics in Biology, Engineering and Medicine 1 (2):83-99.
    A current advance within the agricultural industry is the use of genetic engineering to produce novel crops for food production. This technology raises questions about how societies should position themselves with respect to genetically modified (GM) crop development and implementation; namely, how should the potentials and risks of this technology be evaluated? We argue that current methods to evaluate the risks and benefits of GM crops are inadequate and not conducive to the strategic development of this technology, where a way (...)
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  39. Adapting agriculture to a changing climate: a social justice perspective.Cristian Timmermann - 2021 - In Hanna Schübel & Ivo Wallimann-Helmer (eds.), Justice and food security in a changing climate. Wageningen Academic Publishers. pp. 31-35.
    We are already past the point where climate change mitigation alone does not suffice and major efforts need to be undertaken to adapt agriculture to climate change. As this situation was both foreseeable and avoidable, it is urgent to see that particularly people who have historically contributed the least to climate change do not end up assuming most of the costs. Climate change will have the worst effects on agriculture in the tropical region in the form of droughts, (...)
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  40. Biological Essentialism, Projectable Human Kinds, and Psychiatric Classification.Jonathan Y. Tsou - 2022 - Philosophy of Science 89 (5):1155-1165.
    A minimal essentialism (‘intrinsic biological essentialism’) about natural kinds is required to explain the projectability of human science terms. Human classifications that yield robust and ampliative projectable inferences refer to biological kinds. I articulate this argument with reference to an intrinsic essentialist account of HPC kinds. This account implies that human sciences (e.g., medicine, psychiatry) that aim to formulate predictive kind categories should classify biological kinds. Issues concerning psychiatric classification and pluralism are examined.
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  41. Universal Biology: Assessing universality from a single example.Carlos Mariscal - 2015 - In The Impact of Discovering Life Beyond Earth. Cambridge, UK: pp. 113-126.
    Is it possible to know anything about life we have not yet encountered? We know of only one example of life: our own. Given this, many scientists are inclined to doubt that any principles of Earth’s biology will generalize to other worlds in which life might exist. Let’s call this the “N = 1 problem.” By comparison, we expect the principles of geometry, mechanics, and chemistry would generalize. Interestingly, each of these has predictable consequences when applied to biology. The surface-to-volume (...)
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  42. Everything Flows: Towards a Processual Philosophy of Biology.Daniel J. Nicholson & John Dupré (eds.) - 2018 - Oxford, United Kingdom: Oxford University Press.
    This collection of essays explores the metaphysical thesis that the living world is not made up of substantial particles or things, as has often been assumed, but is rather constituted by processes. The biological domain is organised as an interdependent hierarchy of processes, which are stabilised and actively maintained at different timescales. Even entities that intuitively appear to be paradigms of things, such as organisms, are actually better understood as processes. Unlike previous attempts to articulate processual views of biology, (...)
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  43. Our Identity, Responsibility and Biology.Simon Beck - 2004 - Philosophical Papers:3-14.
    Eric Olson argues in The Human Animal that thought-experiments involving body-swapping do not in the end offer any support to psychological continuity theories, nor do they pose any threat to his Biological View. I argue that he is mistaken in at least the second claim.
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  44. Synthetic Biology and Synthetic Knowledge.Christophe Malaterre - 2013 - Biological Theory (8):346–356.
    Probably the most distinctive feature of synthetic biology is its being “synthetic” in some sense or another. For some, synthesis plays a unique role in the production of knowledge that is most distinct from that played by analysis: it is claimed to deliver knowledge that would otherwise not be attained. In this contribution, my aim is to explore how synthetic biology delivers knowledge via synthesis, and to assess the extent to which this knowledge is distinctly synthetic. On the basis of (...)
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  45. Biologically Unavoidable Sequences.Samuel Alexander - 2013 - Electronic Journal of Combinatorics 20 (1):1-13.
    A biologically unavoidable sequence is an infinite gender sequence which occurs in every gendered, infinite genealogical network satisfying certain tame conditions. We show that every eventually periodic sequence is biologically unavoidable (this generalizes König's Lemma), and we exhibit some biologically avoidable sequences. Finally we give an application of unavoidable sequences to cellular automata.
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  46. The Multiple Realizability of Biological Individuals.Ellen Clarke - 2013 - Journal of Philosophy 110 (8):413-435.
    Biological theory demands a clear organism concept, but at present biologists cannot agree on one. They know that counting particular units, and not counting others, allows them to generate explanatory and predictive descriptions of evolutionary processes. Yet they lack a unified theory telling them which units to count. In this paper, I offer a novel account of biological individuality, which reconciles conflicting definitions of ‘organism’ by interpreting them as describing alternative realisers of a common functional role, and then (...)
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  47. Biological-mereological coincidence.Judith K. Crane - 2012 - Philosophical Studies 161 (2):309-325.
    This paper presents and defends an account of the coincidence of biological organisms with mereological sums of their material components. That is, an organism and the sum of its material components are distinct material objects existing in the same place at the same time. Instead of relying on historical or modal differences to show how such coincident entities are distinct, this paper argues that there is a class of physiological properties of biological organisms that their coincident mereological sums (...)
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  48. A Manifesto for a Processual Philosophy of Biology.John A. Dupre & Daniel J. Nicholson - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press.
    This chapter argues that scientific and philosophical progress in our understanding of the living world requires that we abandon a metaphysics of things in favour of one centred on processes. We identify three main empirical motivations for adopting a process ontology in biology: metabolic turnover, life cycles, and ecological interdependence. We show how taking a processual stance in the philosophy of biology enables us to ground existing critiques of essentialism, reductionism, and mechanicism, all of which have traditionally been associated with (...)
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  49. Biological Parenthood: Gestational, Not Genetic.Anca Gheaus - 2018 - Australasian Journal of Philosophy 96 (2):225-240.
    Common sense morality and legislations around the world ascribe normative relevance to biological connections between parents and children. Procreators who meet a modest standard of parental competence are believed to have a right to rear the children they brought into the world. I explore various attempts to justify this belief and find most of these attempts lacking. I distinguish between two kinds of biological connections between parents and children: the genetic link and the gestational link. I argue that (...)
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  50. What, If anything, Is Biological Altruism?Topaz Halperin & Arnon Levy - forthcoming - British Journal for the Philosophy of Science.
    The study of biological altruism is a cornerstone of modern evolutionary biology. Associated with foundational issues about natural selection, it is often supposed that explaining altruism is key to understanding social behavior more generally. Typically, biological altruism is defined in purely effects-based, behavioral terms – as an interaction in which one organism contributes fitness to another, at its own expense. Crucially, such a definition isn’t meant to rest on psychological or intentional assumptions. We show that, appearances and official (...)
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