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  1. Value in ethics and economics.Elizabeth Anderson - 1993 - Cambridge, Mass.: Harvard University Press.
    Women as commercial baby factories, nature as an economic resource, life as one big shopping mall: This is what we get when we use the market as a common ...
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  • Can the Science of Well-Being Be Objective?Anna Alexandrova - 2018 - British Journal for the Philosophy of Science 69 (2):421-445.
    Well–being, health and freedom are some of the many phenomena of interest to science whose definitions rely on a normative standard. Empirical generalizations about them thus present a special case of value-ladenness. I propose the notion of a ‘mixed claim’ to denote such generalizations. Against the prevailing wisdom, I argue that we should not seek to eliminate them from science. Rather, we need to develop principles for their legitimate use. Philosophers of science have already reconciled values with objectivity in several (...)
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  • Inserting the public into science.Heather Douglas - 2005 - In Sabine Maasen & Peter Weingart (eds.), Democratization of expertise?: exploring novel forms of scientific advice in political decision-making. London: Springer. pp. 153--169.
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  • Does a public environmental philosophy need convergence hypothesis?Andrew Light - 2009 - In Ben Minteer (ed.), Nature in Common?: Environmental Ethics and the Contested Foundations of Environmental Policy. Philadelphia: Temple University Press.
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  • Unity among environmentalists? Debating the values-policy link in environmental ethics.Ben A. Minteer - 2009 - In Ben Minteer (ed.), Nature in Common?: Environmental Ethics and the Contested Foundations of Environmental Policy. Philadelphia: Temple University Press.
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  • Objectivity, value judgment, and theory choice.Thomas S. Kuhn - 1981 - In David Zaret (ed.), Review of Thomas S. Kuhn The Essential Tension: Selected Studies in Scientific Tradition and Change. Duke University Press. pp. 320--39.
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  • The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • Values and Uncertainties in the Predictions of Global Climate Models.Eric Winsberg - 2012 - Kennedy Institute of Ethics Journal 22 (2):111-137.
    Over the last several years, there has been an explosion of interest and attention devoted to the problem of Uncertainty Quantification (UQ) in climate science—that is, to giving quantitative estimates of the degree of uncertainty associated with the predictions of global and regional climate models. The technical challenges associated with this project are formidable, and so the statistical community has understandably devoted itself primarily to overcoming them. But even as these technical challenges are being met, a number of persistent conceptual (...)
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  • Accountability and values in radically collaborative research.Eric Winsberg, Bryce Huebner & Rebecca Kukla - 2014 - Studies in History and Philosophy of Science Part A 46:16-23.
    This paper discusses a crisis of accountability that arises when scientific collaborations are massively epistemically distributed. We argue that social models of epistemic collaboration, which are social analogs to what Patrick Suppes called a “model of the experiment,” must play a role in creating accountability in these contexts. We also argue that these social models must accommodate the fact that the various agents in a collaborative project often have ineliminable, messy, and conflicting interests and values; any story about accountability in (...)
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  • Defining “Biodiversity”; Assessing Biodiversity.Sahotra Sarkar - 2001 - The Monist 85 (1):131-155.
    This paper analyzes the concept of biodiversity in conservation biology and assesses potential methods for its measurement.
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  • The Scientist Qua Scientist Makes Value Judgments.Richard Rudner - 1953 - Philosophy of Science 20 (1):1-6.
    The question of the relationship of the making of value judgments in a typically ethical sense to the methods and procedures of science has been discussed in the literature at least to that point which e. e. cummings somewhere refers to as “The Mystical Moment of Dullness.” Nevertheless, albeit with some trepidation, I feel that something more may fruitfully be said on the subject.
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  • Feminist philosophy of science: history, contributions, and challenges.Sarah S. Richardson - 2010 - Synthese 177 (3):337-362.
    Feminist philosophy of science has led to improvements in the practices and products of scientific knowledge-making, and in this way it exemplifies socially relevant philosophy of science. It has also yielded important insights and original research questions for philosophy. Feminist scholarship on science thus presents a worthy thought-model for considering how we might build a more socially relevant philosophy of science—the question posed by the editors of this special issue. In this analysis of the history, contributions, and challenges faced by (...)
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  • What constitutes ecosystem health.David J. Rapport - 1989 - Perspectives in Biology and Medicine 33 (1):120-132.
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  • The diverse aims of science.Angela Potochnik - 2015 - Studies in History and Philosophy of Science Part A 53:71-80.
    There is increasing attention to the centrality of idealization in science. One common view is that models and other idealized representations are important to science, but that they fall short in one or more ways. On this view, there must be an intermediary step between idealized representation and the traditional aims of science, including truth, explanation, and prediction. Here I develop an alternative interpretation of the relationship between idealized representation and the aims of science. In my view, continuing, widespread idealization (...)
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  • Values, Advocacy and Conservation Biology.Jay Odenbaugh - 2003 - Environmental Values 12 (1):55 - 69.
    In this essay, I examine the controversy concerning the advocacy of ethical values in conservation biology. First, I argue, as others have, that conservation biology is a science laden with values both ethical and non-ethical. Second, after clarifying the notion of advocacy at work, I contend that conservation biologists should advocate the preservation of biological diversity. Third, I explore what ethical grounds should be used for advocating the preservation of ecological systems by conservation biologists. I argue that conservation biologists should (...)
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  • Philosophy of Science for Sustainability Science.Michiru Nagatsu, Taylor Thiel Davis, C. Tyler DesRoches, Inkeri Koskinen, Miles MacLeod, Milutin Stojanovic & Henrik Thorén - 2020 - Sustainability Science 1 (N/A):1-11.
    Sustainability science seeks to extend scientific investigation into domains characterized by a distinct problem-solving agenda, physical and social complexity, and complex moral and ethical landscapes. In this endeavor it arguably pushes scientific investigation beyond its usual comfort zones, raising fundamental issues about how best to structure such investigation. Philosophers of science have long scrutinized the structure of science and scientific practices, and the conditions under which they operate effectively. We propose a critical engagement between sustainability scientists and philosophers of science (...)
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  • Pragmatism in Environmental Ethics.Ben A. Minteer & Robert E. Manning - 1999 - Environmental Ethics 21 (2):191-207.
    A growing number of contributors to environmental philosophy are beginning to rethink the field’s mission and practice. Noting that the emphasis of protracted conceptual battles over axiology may not get us very far in solving environmental problems, many environmental ethicists have begun to advocate a more pragmatic, pluralistic, and policy-based approach in philosophical discussions abouthuman-nature relationships. In this paper, we argue for the legitimacy of this approach, stressing that public deliberation and debate over alternative environmental ethics is necessary for a (...)
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  • Model Coupling in Resource Economics: Conditions for Effective Interdisciplinary Collaboration.MacLeod Miles & Michiru Nagatsu - 2016 - Philosophy of Science 83 (3):412-433.
    In this article we argue for the importance of studying interdisciplinary collaborations by focusing on the role that good choice and design of model-building frameworks and strategies can play overcoming the inherent difficulties of collaborative research. We provide an empirical study of particular collaborations between economists and ecologists in resource economics. We discuss various features of how models are put together for interdisciplinary collaboration in these cases and show how the use of a coupled-model framework in this case to coordinate (...)
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  • Ecosystem Health.Katie Mcshane - 2004 - Environmental Ethics 26 (3):227-245.
    On most understandings of what an ecosystem is, it is a kind of thing that can be literally, not just metaphorically, healthy or unhealthy. Health is best understood as a kind of well-being; a thing’s health is a matter of retaining those structures and functions that are good for it. While it is true both that what’s good for an ecosystem depends on how we define the system and that how we define the system depends on our interests, these facts (...)
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  • The plaza and the pendulum: two concepts of ecological science.Sagoff Mark - 2003 - Biology and Philosophy 18 (4):529-552.
    This essay explores two strategies of inquiryin ecological science. Ecologists may regardthe sites they study either as contingentcollections of plants and animals, therelations of which are place-specific andidiosyncratic, or as structured systems andcommunites that are governed by general rules,forces, or principles. Ecologists who take thefirst approach rely on observation, induction,and experiment – a case-study or historicalmethod – to determine the causes of particularevents. Ecologists who take the secondapproach, seeking to explain by inferringevents from general patterns or principles,confront four conceptual obstacles (...)
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  • Pragmatism in Environmental Ethics.Robert E. Manning - 1999 - Environmental Ethics 21 (2):191-207.
    A growing number of contributors to environmental philosophy are beginning to rethink the field’s mission and practice. Noting that the emphasis of protracted conceptual battles over axiology may not get us very far in solving environmental problems, many environmental ethicists have begun to advocate a more pragmatic, pluralistic, and policy-based approach in philosophical discussions abouthuman-nature relationships. In this paper, we argue for the legitimacy of this approach, stressing that public deliberation and debate over alternative environmental ethics is necessary for a (...)
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  • Science as Social Knowledge: Values and Objectivity in Scientific Inquiry.Helen E. Longino - 1990 - Princeton University Press.
    This is an important book precisely because there is none other quite like it.
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  • A philosophy of science for the twenty‐first century.Janet A. Kourany - 2003 - Philosophy of Science 70 (1):1-14.
    Two major reasons feminists are concerned with science relate to science's social effects: that science can be a powerful ally in the struggle for equality for women; and that all too frequently science has been a generator and perpetuator of inequality. This concern with the social effects of science leads feminists to a different mode of appraising science from the purely epistemic one prized by most contemporary philosophers of science. The upshot, I suggest, is a new program for philosophy of (...)
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  • Ecosystem Health: Some Preventive Medicine.Dale Jamieson - 1995 - Environmental Values 4 (4):333 - 344.
    Some ecologists, philosophers, and policy analysts believe that ecosystem health can be defined in a rigorous way and employed as a management goal in environmental policy. The idea of ecosystem health may have something to recommend it as part of a rhetorical strategy, but I am dubious about its utility as a technical term in environmental policy. I develop several objections to this latest version of scientism in environmental policy, and conclude that our environmental problems fundamentally involve problems in our (...)
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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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  • When Ecology Needs Economics and Economics Needs Ecology: Interdisciplinary Exchange during the Anthropocene.S. Andrew Inkpen & C. Tyler DesRoches - 2020 - Ethics, Policy and Environment 23 (2):203-221.
    1. A multidisciplinary group of scholars within the International Commission on Stratigraphy – known as the Anthropocene Working Group – recently recommended the Anthropocene as a new geological ep...
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  • Are humans disturbing conditions in ecology?S. Andrew Inkpen - 2017 - Biology and Philosophy 32 (1):51-71.
    In this paper I argue, first, that ecologists have routinely treated humans—or more specifically, anthropogenic causal factors—as disturbing conditions. I define disturbing conditions as exogenous variables, variables “outside” a model, that when present in a target system, inhibit the applicability or accuracy of the model. This treatment is surprising given that humans play a dominant role in many ecosystems and definitions of ecology contain no fundamental distinction between human and natural. Second, I argue that the treatment of humans as disturbing (...)
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  • Demarcating Nature, Defining Ecology: Creating a Rationale for the Study of Nature’s “Primitive Conditions”.S. Andrew Inkpen - 2017 - Perspectives on Science 25 (3):355-392.
    The relationship of man himself to his environment is an inseparable part of ecology; for he also is an organism and other organisms are a part of his environment. Ecology, therefore, broadly conceived and rightly understood, instead of being an academic science merely, out of touch with humanistic interests, is really that part of every other biological science which brings it into immediate relation to human kind. The proper place of humans in ecological study has been a recurring issue for (...)
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  • Enfranchising all affected interests, and its alternatives.Robert E. Goodin - 2007 - Philosophy and Public Affairs 35 (1):40–68.
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  • Nonepistemic Values and the Multiple Goals of Science.Kevin C. Elliott & Daniel J. McKaughan - 2014 - Philosophy of Science 81 (1):1-21.
    Recent efforts to argue that nonepistemic values have a legitimate role to play in assessing scientific models, theories, and hypotheses typically either reject the distinction between epistemic and nonepistemic values or incorporate nonepistemic values only as a secondary consideration for resolving epistemic uncertainty. Given that scientific representations can legitimately be evaluated not only based on their fit with the world but also with respect to their fit with the needs of their users, we show in two case studies that nonepistemic (...)
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  • Cognitive Attitudes and Values in Science.Kevin C. Elliott & David Willmes - unknown - Philosophy of Science (5):807-817.
    We argue that the analysis of cognitive attitudes should play a central role in developing more sophisticated accounts of the proper roles for values in science. First, we show that the major recent efforts to delineate appropriate roles for values in science would be strengthened by making clearer distinctions among cognitive attitudes. Next, we turn to a specific example and argue that a more careful account of the distinction between the attitudes of belief and acceptance can contribute to a better (...)
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  • The Ethical Limitations of the Market.Elizabeth Anderson - 1990 - Economics and Philosophy 6 (2):179.
    A distinctive feature of modern capitalist societies is the tendency of the market to take over the production, maintenance, and distribution of goods that were previously produced, maintained, and distributed by nonmarket means. Yet, there is a wide range of disagreement regarding the proper extent of the market in providing many goods. Labor has been treated as a commodity since the advent of capitalism, but not without significant and continuing challenges to this arrangement. Other goods whose production for and distribution (...)
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  • The Value of Cognitive Values.Heather Douglas - 2013 - Philosophy of Science 80 (5):796-806.
    Traditionally, cognitive values have been thought of as a collective pool of considerations in science that frequently trade against each other. I argue here that a finer-grained account of the value of cognitive values can help reduce such tensions. I separate the values into groups, minimal epistemic criteria, pragmatic considerations, and genuine epistemic assurance, based in part on the distinction between values that describe theories per se and values that describe theory-evidence relationships. This allows us to clarify why these values (...)
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  • On the Concept and Conservation of Critical Natural Capital.C. Tyler DesRoches - 2020 - International Studies in the Philosophy of Science (N/A):1-22.
    Ecological economics is an interdisciplinary science that is primarily concerned with developing interventions to achieve sustainable ecological and economic systems. While ecological economists have, over the last few decades, made various empirical, theoretical, and conceptual advancements, there is one concept in particular that remains subject to confusion: critical natural capital. While critical natural capital denotes parts of the environment that are essential for the continued existence of our species, the meaning of terms commonly associated with this concept, such as ‘non-substitutable’ (...)
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  • The value of the world's ecosystem services and natural capital.Robert Costanza, Ralph D'Arge, Rudolf de Groot, Stephen Farber, Monica Grasso, Bruce Hannon, Karin Limburg, Shahid Naeem, Robert V. O'Neill, Jose Paruelo, Robert G. Raskin, Paul Sutton & Marjan van den Belt - 1997 - Nature 387 (6630):253-260.
    The services of ecological systems and the natural capital stocks that produce them are critical to the functioning of the Earth's life-support system. They contribute to human welfare, both directly and indirectly, and therefore represent part of the total economic value of the planet. We have estimated the current economic value of 17 ecosystem services for 16 biomes, based on published studies and a few original calculations. For the entire biosphere, the value is estimated to be in the range of (...)
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  • Current Controversies in Values and Science.Kevin Christopher Elliott & Daniel Steel (eds.) - 2016 - New York: Routledge.
    _Current Controversies in Values and Science_ asks ten philosophers to debate five questions that are driving contemporary work in this important area of philosophy of science. The book is perfect for the advanced student, building up her knowledge of the foundations of the field while also engaging its most cutting-edge questions. Introductions and annotated bibliographies for each debate, preliminary descriptions of each chapter, study questions, and a supplemental guide to further controversies involving values in science help provide clearer and richer (...)
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  • The Value of Ecosystem Health.J. Baird Callicott - 1995 - Environmental Values 4 (4):345 - 361.
    The concept of ecosystem health is problematic. Do ecosystems as such exist? Is health an objective condition of organisms or is it socially constructed? Can 'health' be unequivocally predicated of ecosystems? Is ecosystem health both objective and valuative? Are ecosystem health and biological integrity identical? How do these concepts interface with the concept of biodiversity? Ecosystems exist, although they are turning out to be nested sets of linked process-functions with temporal boundaries, not tangible superorganisms with spatial boundaries. Ecosystem health – (...)
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  • Values in Science beyond Underdetermination and Inductive Risk.Matthew J. Brown - 2013 - Philosophy of Science 80 (5):829-839.
    Proponents of the value ladenness of science rely primarily on arguments from underdetermination or inductive risk, which share the premise that we should only consider values where the evidence runs out or leaves uncertainty; they adopt a criterion of lexical priority of evidence over values. The motivation behind lexical priority is to avoid reaching conclusions on the basis of wishful thinking rather than good evidence. This is a real concern, however, that giving lexical priority to evidential considerations over values is (...)
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  • Ecosystem Health: New Goals for Environmental Management.Robert Costanza & Bryan G. Norton - 1992
    Discusses managing the environment from philosophical, scientific, and political perspectives.
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  • Second Nature: A Gardener's Education.Michael Pollan - 2007 - Open Road + Grove/Atlantic.
    “One of the distinguished gardening books of our time,” from the #1 New York Times–bestselling author of The Omnivore’s Dilemma (USA Today). Chosen by the American Horticultural Society as one of the 75 greatest books ever written about gardening After Michael Pollan bought an old Connecticut dairy farm, he planted a garden and attempted to follow Thoreau’s example: do not impose your will upon the wilderness, the woodchucks, or the weeds. That ethic did not, of course, work. But neither did (...)
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  • Toward Unity Among Environmentalists.Bryan G. Norton - 1991 - Oxford University Press.
    The focus of Norton's book is the distinction between objectives and values in developing environmental policies. Norton argues that environmentalism is a coalition of many groups working toward common objectives, but unlike other social action movements the environmental coalition does not have shared moral principles.
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  • The Honest Broker: Making Sense of Science in Policy and Politics.Roger A. Pielke Jr - 2007 - Cambridge University Press.
    Relevant to a wide range of scientific disciplines, this is a practical guide for scientists, politicians and citizens to the relationship between science and politics.
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  • Rethinking Expertise.Harry Collins & Robert Evans - 2007 - University of Chicago Press.
    ISBN-13: 978-0-226-11360-9 (cloth : alk. paper) ISBN-10: 0-226-11360-4 ... HM651.C64 2007 158.1—dc22 2007022671 The paper used in this publication meets the minimum requirements of the American National Standard for Information ...
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  • Why Some Things Should Not Be for Sale: The Moral Limits of Markets.Debra Satz - 2010 - New York, US: Oxford University Press.
    In Why Some Things Should Not Be for Sale, philosopher Debra Satz takes a penetrating look at those commodity exchanges that strike most of us as problematic. What considerations, she asks, ought to guide the debates about such markets? What is it about a market involving prostitution or the sale of kidneys that makes it morally objectionable? How is a market in weapons or pollution different than a market in soybeans or automobiles? Are laws and social policies banning the more (...)
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  • Contested Commodities.Margaret Jane Radin - 1996 - Harvard Univ Pr.
    In recent years, the free market position has been gaining strength. In this book, Radin provides a nuanced response to its sweeping generalization.
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  • The Preservation Paradox and Natural Capital.C. Tyler DesRoches - 2020 - Ecosystem Services: Science, Policy and Practice 101058 (N/A):1-7.
    Many ecological economists have argued that some natural capital should be preserved for posterity. Yet, among environmental philosophers, the preservation paradox entails that preserving parts of nature, including those denoted by natural capital, is impossible. The paradox claims that nature is a realm of phenomena independent of intentional human agency, that preserving and restoring nature require intentional human agency, and, therefore, no one can preserve or restore nature (without making it artificial). While this article argues that the preservation paradox is (...)
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  • Linking social and ecological systems: management practices and social mechanisms for building resilience.Fikret Berkes, Carl Folke & Johan Colding (eds.) - 1998 - New York, NY, USA: Cambridge University Press.
    It is usually the case that scientists examine either ecological systems or social systems, yet the need for an interdisciplinary approach to the problems of environmental management and sustainable development is becoming increasingly obvious. Developed under the auspices of the Beijer Institute in Stockholm, this new book analyses social and ecological linkages in selected ecosystems using an international and interdisciplinary case study approach. The chapters provide detailed information on a variety of management practices for dealing with environmental change. Taken as (...)
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  • Ecosystem Health.David Rapport, Robert Costanza, Paul R. Epstein, Connie Gaudet & Richard Levins - 2000 - Environmental Values 9 (3):389-390.
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  • What is Natural about Natural Capital during the Anthropocene?C. Tyler DesRoches - 2018 - Sustainability 1 (10):806.
    The concept of natural capital denotes a rich variety of natural processes, such as ecosystems, that produce economically valuable goods and services. The Anthropocene signals a diminished state of nature, however, with some scholars claiming that no part of the Earth’s surface remains untouched. What are ecological economists to make of natural capital during the Anthropocene? Is natural capital still a coherent concept? What is the conceptual relationship between nature and natural capital? This article wrestles with John Stuart Mill’s two (...)
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