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  1. The Risk of Using Inductive Risk to Challenge the Value-Free Ideal.Inmaculada de Melo-Martín & Kristen Intemann - 2016 - Philosophy of Science 83 (4):500-520.
    The argument from inductive risk has been embraced by many as a successful account of the role of values in science that challenges the value-free ideal. We argue that it is not obvious that the argument from inductive risk actually undermines the value-free ideal. This is because the inductive risk argument endorses an assumption held by proponents of the value-free ideal: that contextual values never play an appropriate role in determining evidence. We show that challenging the value-free ideal ultimately requires (...)
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  • Towards Improving the Ethics of Ecological Research.G. K. D. Crozier & Albrecht I. Schulte-Hostedde - 2015 - Science and Engineering Ethics 21 (3):577-594.
    We argue that the ecological research community should develop a plan for improving the ethical consistency and moral robustness of the field. We propose a particular ethics strategy—specifically, an ongoing process of collective ethical reflection that the community of ecological researchers, with the cooperation of applied ethicists and philosophers of biology, can use to address the needs we identify. We suggest a particular set of conceptual and analytic tools that, we argue, collectively have the resources to provide an empirically grounded (...)
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  • Relevant Features of Science: Values in Conservation Biology.Esther M. van Dijk - 2013 - Science & Education 22 (9):2141-2156.
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  • Biotechnology: Science versus Value—Laden Decisions.Berhanu Abraha Tsegay & Alemayehu Bishaw Tamiru - 2014 - Open Journal of Philosophy 4 (2):151-156.
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  • Science and Sentiment: Grinnell’s Fact-Based Philosophy of Biodiversity Conservation.Ayelet Shavit & James R. Griesemer - 2018 - Journal of the History of Biology 51 (2):283-318.
    At the beginning of the twentieth century, the biologist Joseph Grinnell made a distinction between science and sentiment for producing fact-based generalizations on how to conserve biodiversity. We are inspired by Grinnellian science, which successfully produced a century-long impact on studying and conserving biodiversity that runs orthogonal to some familiar philosophical distinctions such as fact versus value, emotion versus reason and basic versus applied science. According to Grinnell, unlike sentiment-based generalizations, a fact-based generalization traces its diverse commitments and thus becomes (...)
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  • Is co-management a double-edged sword in the protected areas of Sundarbans mangrove?Md Mizanur Rahman - 2022 - Biology and Philosophy 37 (1):1-22.
    The overall objective of the study was to examine the pros and cons of the participatory approach adopted in natural resource management in the ecologically protected areas of the Sundarbans mangrove of Bangladesh. A comparative study was done between the people who are involved and non-involved in this approach. Empirical data was collected through personal interviews with a structured questionnaire. The Gini coefficient was measured first and then embedded with the Lorenz curve to draw a line between perfect equality and (...)
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  • Sahotra Sarkar, biodiversity and environmental philosophy: An introduction.Jay Odenbaugh - 2009 - Biology and Philosophy 24 (4):541-550.
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  • Ecology and the inescapability of values.Jay Odenbaugh - 2008 - Science and Engineering Ethics 14 (4):593-596.
    Science and Engineering Ethics, to appear.
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  • A Scale Problem with the Ecosystem Services Argument for Protecting Biodiversity.Katie H. Morrow - 2023 - Environmental Values 32 (3):271-290.
    The ecosystem services argument is a highly publicised instrumental argument for protecting biodiversity. I develop a new objection to this argument based on the lack of a causal connection from global species losses to local ecosystem changes. I survey some alternative formulations of services arguments, including ones incorporating option value or a precautionary principle, and show that they do not fare much better than the standard version. I conclude that environmental thinkers should rely less on ecosystem services as a means (...)
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  • Improving philosophical dialogue interventions to better resolve problematic value pluralism in collaborative environmental science.Bethany K. Laursen, Chad Gonnerman & Stephen J. Crowley - 2021 - Studies in History and Philosophy of Science Part A 87:54-71.
    Environmental problems often outstrip the abilities of any single scientist to understand, much less address them. As a result, collaborations within, across, and beyond the environmental sciences are an increasingly important part of the environmental science landscape. Here, we explore an insufficiently recognized and particularly challenging barrier to collaborative environmental science: value pluralism, the presence of non-trivial differences in the values that collaborators bring to bear on project decisions. We argue that resolving the obstacles posed by value pluralism to collaborative (...)
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  • The algorithmic turn in conservation biology: Characterizing progress in ethically-driven sciences.James Justus & Samantha Wakil - 2021 - Studies in History and Philosophy of Science Part A 88 (C):181-192.
    As a discipline distinct from ecology, conservation biology emerged in the 1980s as a rigorous science focused on protecting biodiversity. Two algorithmic breakthroughs in information processing made this possible: place-prioritization algorithms and geographical information systems. They provided defensible, data-driven methods for designing reserves to conserve biodiversity that obviated the need for largely intuitive and highly problematic appeals to ecological theory at the time. But the scientific basis of these achievements and whether they constitute genuine scientific progress has been criticized. We (...)
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  • The algorithmic turn in conservation biology: Characterizing progress in ethically-driven sciences.James Justus & Samantha Wakil - 2021 - Studies in History and Philosophy of Science Part A 88 (C):181-192.
    As a discipline distinct from ecology, conservation biology emerged in the 1980s as a rigorous science focused on protecting biodiversity. Two algorithmic breakthroughs in information processing made this possible: place-prioritization algorithms and geographical information systems. They provided defensible, data-driven methods for designing reserves to conserve biodiversity that obviated the need for largely intuitive and highly problematic appeals to ecological theory at the time. But the scientific basis of these achievements and whether they constitute genuine scientific progress has been criticized. We (...)
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  • Distinguishing between legitimate and illegitimate values in climate modeling.Kristen Intemann - 2015 - European Journal for Philosophy of Science 5 (2):217-232.
    While it is widely acknowledged that science is not “free” of non-epistemic values, there is disagreement about the roles that values can appropriately play. Several have argued that non-epistemic values can play important roles in modeling decisions, particularly in addressing uncertainties ; Risbey 2007; Biddle and Winsberg 2010; Winsberg : 111-137, 2012); van der Sluijs 359-389, 2012). On the other hand, such values can lead to bias ; Bray ; Oreskes and Conway 2010). Thus, it is important to identify when (...)
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  • Does environmental science crowd out non-epistemic values?Kinley Gillette, Stephen Andrew Inkpen & C. Tyler DesRoches - 2021 - Studies in History and Philosophy of Science Part A 87 (C):81-92.
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  • Toward a Consensus on the Intrinsic Value of Biodiversity.Katie H. Morrow - forthcoming - Environmental Values.
    This paper addresses the stalemate on the question whether biodiversity has intrinsic value. I distinguish between a “weak” conception and two “strong” conceptions of intrinsic value in the environmental ethics literature. The strong conceptions of intrinsic value are connected, respectively, to moral standing and to a strongly objectivist account of value. Neither of these forms of value likely applies to biodiversity. However, the weak conception of intrinsic value is neutral about both moral standing and the nature of value and plausibly (...)
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  • Conservation Biology.Sahotra Sarkar - 2004 - Stanford Encyclopedia of Philosophy.
    Conservation biology emerged as an organized academic discipline in the United States in the 1980s though much of its theoretical framework was originally developed in Australia. Significant differences of approach in the two traditions were resolved in the late 1990s through the formulation of a consensus framework for the design and adaptive management of conservation area networks. This entry presents an outline of that framework along with a critical analysis of conceptual issues concerning the four theoretical problems that emerge from (...)
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