Results for 'Ecological engineering'

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  1.  91
    Ecological Engineering: Reshaping Our Environments to Achieve Our Goals.Neil Levy - 2012 - Philosophy and Technology 25 (4):589-604.
    Human beings are subject to a range of cognitive and affective limitations which interfere with our ability to pursue our individual and social goals. I argue that shaping our environment to avoid triggering these limitations or to constrain the harms they cause is likely to be more effective than genetic or pharmaceutical modifications of our capacities because our limitations are often the flip side of beneficial dispositions and because available enhancements seem to impose significant costs. I argue that carefully selected (...)
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  2. Ecological engineering: Approaches to sustainability and biodiversity in the US and China.W. J. Mitsch - 1991 - In Robert Costanza (ed.), Ecological Economics: The Science and Management of Sustainability. Columbia University Press. pp. 428--448.
     
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  3.  29
    The Prophet of Non-Violence: Spirit of Peace, Compassion & Universality in Islam.Asgharali Engineer - 2011 - Vitasta.
    Section 1. Introduction. The prophet of non-violence -- section 2. Women in Islam. Women in the light of hadith -- Violence against women and religion -- section 3. War and peace in Islam. Theory of war and peace in Islam -- Centrality of jihad in post Qurʼanic period -- Jihad? But what about other verses in the Qurʼan? -- Islam, democracy and violence -- A critical look at Qurʼanic verses on war and violence -- section 4. Justice and compassion in (...)
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  4. Integrating Ecology and Evolution: Niche Construction and Ecological Engineering.Gillian Barker & John Odling-Smee - 2014 - In Gillian Barker, Eric Desjardins & Trevor Pearce (eds.), Entangled Life: Organism and Environment in the Biological and Social Sciences. Dordrecht: Springer. pp. 187-211.
  5.  21
    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) (...)
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  6.  17
    Designer Biology: The Ethics of Intensively Engineering Biological and Ecological Systems.Immaculada de Melo Martin, Valentina Urbanek, David Frank, William Kabasenche, Nicholas Agar, S. Matthew Liao, Anders Sandberg, Rebecca Roache, Allen Thompson, Stephen Jackson, Donald S. Maier, Nicole Hassoun, Benjamin Hale, Sune Holm & Scott Simmons (eds.) - 2013 - Lanham: Lexington Books.
    Designer Biology: The Ethics of Intensively Engineering Biological and Ecological Systems consists of thirteen chapters that address the ethical issues raised by technological intervention and design across a broad range of biological and ecological systems. Among the technologies addressed are geoengineering, human enhancement, sex selection, genetic modification, and synthetic biology.
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  7. Gas fuelled engines like ecological alternative for driving of motor vehicles.Stanislav Beroun, Ladislav BARTONÍČEK, Josef Laurin & Celestýn Scholz - 2005 - In Alan Blackwell & David MacKay (eds.), Power. New York: Cambridge University Press. pp. 1.
     
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  8.  90
    Ecological Historicity, Functional Goals, and Novelty in the Anthropocene.Justin Donhauser, Eric Desjardins & Gillian Barker - 2018 - Environmental Values.
    While many recognize that rigid historical and compositional goals are inadequate in a world where climate and other global systems are undergoing unprecedented changes, others contend that promoting ecosystem services and functions encourages practices that can ultimately lower the bar of ecological management. These worries are foregrounded in discussions about Novel Ecosystems (NEs); where some researchers and conservationists claim that NEs provide a license to trash nature as long as some ecosystem services are provided. This criticism arises from what (...)
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  9. Genetically engineered mosquitoes, Zika and other arboviruses, community engagement, costs, and patents: Ethical issues.Zahra Meghani & Christophe Boëte - 2018 - PLoS Neglected Tropical Diseases 7 (12).
    Genetically engineered (GE) insects, such as the GE OX513A Aedes aegypti mosquitoes, have been designed to suppress their wild-type populations so as to reduce the transmission of vector-borne diseases in humans. Apart from the ecological and epidemiological uncertainties associated with this approach, such biotechnological approaches may be used by individual governments or the global community of nations to avoid addressing the underlying structural, systemic causes of those infections... We discuss here key ethical questions raised by the use of GE (...)
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  10.  19
    Designer Biology: The Ethics of Intensively Engineering Biological and Ecological Systems.Ronald L. Sandler & John Basl (eds.) - 2013 - Lanham: Lexington Books.
    This book consists of thirteen chapters that address the ethical issues raised by technological intervention and design across a broad range of biological and ecological systems. Among the technologies addressed are geoengineering, human enhancement, sex selection, genetic modification, and synthetic biology.
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  11.  23
    Activist Engineering: Changing Engineering Practice By Deploying Praxis.Darshan M. A. Karwat, Walter E. Eagle, Margaret S. Wooldridge & Thomas E. Princen - 2015 - Science and Engineering Ethics 21 (1):227-239.
    In this paper, we reflect on current notions of engineering practice by examining some of the motives for engineered solutions to the problem of climate change. We draw on fields such as science and technology studies, the philosophy of technology, and environmental ethics to highlight how dominant notions of apoliticism and ahistoricity are ingrained in contemporary engineering practice. We argue that a solely technological response to climate change does not question the social, political, and cultural tenet of infinite (...)
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  12.  93
    Ecological Inheritance and Cultural Inheritance: What Are They and How Do They Differ?John Odling-Smee & Kevin N. Laland - 2011 - Biological Theory 6 (3):220-230.
    Niche construction theory (NCT) is distinctive for being explicit in recognizing environmental modification by organisms—niche construction—and its legacy—ecological inheritance—to be evolutionary processes in their own right. Humans are widely regarded as champion niche constructors, largely as a direct result of our capacity for the cultural transmission of knowledge and its expression in human behavior, engineering, and technology. This raises the question of how human ecological inheritance relates to human cultural inheritance. If NCT is to provide a conceptual (...)
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  13. Engineered Niches and Naturalized Aesthetics.Richard A. Richards - 2017 - Journal of Aesthetics and Art Criticism 75 (4):465-477.
    Recent scientific approaches to aesthetics include evolutionary theories about the origin of art behavior, psychological investigations into human aesthetic experience and preferences, and neurophysiological explorations of the mechanisms underlying art experience. Critics of these approaches argue that they are ultimately irrelevant to a philosophical aesthetics because they cannot help us understand the distinctive conceptual basis and normativity of our art experience. This criticism may seem plausible given the piecemeal nature of these scientific approaches, but a more comprehensive naturalistic framework can (...)
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  14.  32
    Student-Driven Courses on the Social and Ecological Responsibilities of Engineers: Commentary on “Student-Inspired Activities for the Teaching and Learning of Engineering Ethics”.André Baier - 2013 - Science and Engineering Ethics 19 (4):1469-1472.
    A group of engineering students at the Technical University of Berlin, Germany, designed a course on engineering ethics. The core element of the developed Blue Engineering course are self-contained teaching-units, “building blocks”. These building blocks typically cover one complex topic and make use of various teaching methods using moderators who lead discussions, rather than experts who lecture. Consequently, the students themselves started to offer the credited course to their fellow students who take an active role in further (...)
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  15. The ecological imperative and its application to ethical issues in human genetic technology.W. Malcolm Byrnes - 2003 - Ethics in Science and Environmental Politics 2003:63-65.
    As a species, we are on the cusp of being able to alter that which makes us uniquely human, our genome. Two new genetic technologies, embryo selection and germline engineering, are either in use today or may be developed in the future. Embryo selection acts to alter the human gene pool, reducing genetic diversity, while germline engineering will have the ability to alter directly the genomes of engineered individuals. Our genome has come to be what it is through (...)
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  16.  18
    Ecological reciprocity: a treatise on kindness.Michael Tobias - 2021 - New York: Nova Science Publishers. Edited by Jane Morrison, Niki Stavrou & Michael Tobias.
    This elegant treatise examines the nature of kindness through the fascinating lenses and contexts of ancient, medieval and contemporary philosophy, natural history, theories of mind, of natural selection, eco-psychology and sociobiology. It challenges the reader to consider the myriad potential consequences of human behavior, examining various iconographic moments from the history of art and science as a precursor to the concept and vital potentials for ecological conversion. Focusing on the fundamental mechanisms of reciprocity among humans, other species, communities and (...)
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  17. Ecological Models for Gene Therapy. I. Models for Intraorganismal Ecology.Arnaud Pocheville & Maël Montévil - 2014 - Biological Theory 9 (4):401-413.
    In this paper, we discuss the perspective of intra-organismal ecology by investigating a family of ecological models. We consider two types of models. First order models describe the population dynamics as being directly affected by ecological factors (here understood as nutrients, space, etc). They might be thought of as analogous to Aristotelian physics. Second order models describe the population dynamics as being indirectly affected, the ecological factors now affecting the derivative of the growth rate (that is, the (...)
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  18.  5
    The unconstructable earth: an ecology of separation.Frédéric Neyrat - 2019 - New York, NY: Fordham University Press.
    This book contributes to the environmental humanities field by offering an analysis of the Anthropocene fantasy: the idea that the Anthropocene is an opportunity to remake our terrestrial environment thanks to the power of technology. The author argues that the earth always escapes the human desire to remake and master it.
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  19. Some Ecological Thoughts about Artworks and Perception.William Seeley - forthcoming - In Shyam Wuppulri & Dali Wu (eds.), The Armchair and the Paintbrush.
    Artworks are attentional engines. They are artifacts intentionally designed to direct attention to what we might call their artistically salient features. The artistically salient features of a work are those aspects of their formal-compositional structure that carry information about what they express, their point, purpose, or meaning. These aspects of a work reflect the range of compositional strategies and choices an artist has employed to produce their work. Critically, artists deploy exogenous and endogenous perceptual strategies tailored to direct attention and (...)
     
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  20.  5
    Ecology, Economics, Ethics: The Broken Circle.F. Herbert Bormann & Stephen R. Kellert (eds.) - 1991 - Yale University Press.
    In this book a distinguished group of environmental experts argues that in order to solve global environmental problems, we must view them in a broad interdisciplinary perspective that recognizes the relations—the interconnected circle—among ecology, economics, and ethics. Currently the circle is broken, they say, because environmental policy is decided on short-term estimations of material that take little account of the economic or moral burdens that will be borne by future generations if we deplete our resources now. We must, assert the (...)
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  21.  74
    Ecological politics and democratic theory: the challenge to the deliberative ideal.Mathew Humphrey - 2007 - New York: Routledge.
    This book examines the relationship between environmental and democratic thought and the apparent compatibility of ecology and democracy. Although environmental politics is quite rightly seen as a progressive force, it has also featured a strand of extreme right "eco-authoritarianism" and its proponents have sometimes developed controversial positions on such issues as population policy. There have also been a number of situations where radical environmental activists have broken the laws of democratic societies in pursuit of ecological objectives and the book (...)
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  22.  16
    Genetically Engineered Oil Seed Crops and Novel Terrestrial Nutrients: Ethical Considerations.Chris MacDonald, Stefanie Colombo & Michael T. Arts - 2019 - Science and Engineering Ethics 25 (5):1485-1497.
    Genetically engineered organisms have been at the center of ethical debates among the public and regulators over their potential risks and benefits to the environment and society. Unlike the currently commercial GE crops that express resistance or tolerance to pesticides or herbicides, a new GE crop produces two bioactive nutrients and docosahexaenoic acid ) that heretofore have largely been produced only in aquatic environments. This represents a novel category of risk to ecosystem functioning. The present paper describes why growing oilseed (...)
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  23.  14
    Genetic Engineering, Nature Conservation, and Animal Ethics in advance.Leonie N. Bossert & Thomas Potthast - forthcoming - Environmental Ethics.
    The use of genetic engineering is increasingly discussed for nature conservation. At the same time, recent animal ethics approaches debate whether humans should genetically engineer wild animals to improve their welfare. This paper examines if obligations towards wild sentient animals require humans to genetically engineering wild animals, while arguing that there is no moral need to do so. The focus is on arguments from animal ethics, but they are linked to conservation ethics, highlighting the often neglected overlap between (...)
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  24.  25
    Engineering Innovation in Healthcare.W. Richard Bowen - 2011 - Human Reproduction and Genetic Ethics 17 (2):204-221.
    Engineering makes profound contributions to our health. Many of these contributions benefit whole populations, such as clean water and sewage treatment, buildings, dependable sources of energy, efficient harvesting and storage of food, and pharmaceutical manufacture. Thus, ethical assessment of these and other engineering activities has often emphasized benefits to communities. This is in contrast to medical ethics, which has tended to emphasize the individual patient affected by a doctor’s actions. However, technological innovation is leading to an entanglement of (...)
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  25. Ecological Models for Gene Therapy. II. Niche Construction, Nongenetic Inheritance, and Ecosystem Perturbations.Arnaud Pocheville, Maël Montévil & Régis Ferrière - 2014 - Biological Theory 9 (4):414-422.
    In this paper, we apply the perspective of intra-organismal ecology by investigating a family of ecological models suitable to describe a gene therapy to a particular metabolic disorder, the adenosine deaminase deficiency (ADA-SCID). The gene therapy is modeled as the prospective ecological invasion of an organ (here, bone marrow) by genetically modified stem cells, which then operate niche construction in the cellular environment by releasing an enzyme they synthesize. We show that depending on the chosen order (a choice (...)
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  26.  7
    Ecologies of invention.Andy An-Si Dong (ed.) - 2013 - University of Sydney, NSW, Australia: Sydney University Press.
    Are artists, designers and musicians inventors? Or does the invention originate from scientific discovery alone? Ecologies of Invention is the first collection of essays that brings together writers and scholars of international standing from the University of Sydney and beyond to examine assumptions underlying notions of inventiveness. The writers explain how inventiveness borne out of aesthetic ambitions is impacting on and changing our culture and society. Ecologies of Invention describes the articulation of inventive capacities across disciplines and across multiple scales, (...)
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  27.  7
    Developmental ecology.Meredith West, Andrew King & Gregory Kohn - 2011 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 12 (2):351-371.
    In this article we provide a case history of the development of a communicative system in songbirds. In particular, we explore how brown-headed cowbirds, male and female, cooperate in the development and use of species-typical song. The goal is to show how social interactions between and within sexes create a platform for the production and perception of song. We consider six perspectives. First, we discuss the nature of the acoustic signal. Second, we look at the process of song learning. Third, (...)
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  28.  42
    Developmental ecology: Platform for designing a communication system.Meredith West, Andrew King & Gregory Kohn - 2011 - Interaction Studies 12 (2):351-371.
    In this article we provide a case history of the development of a communicative system in songbirds. In particular, we explore how brown-headed cowbirds, male and female, cooperate in the development and use of species-typical song. The goal is to show how social interactions between and within sexes create a platform for the production and perception of song. We consider six perspectives. First, we discuss the nature of the acoustic signal. Second, we look at the process of song learning. Third, (...)
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  29.  61
    Optimizing Engines: Rational Choice in the Neolithic?Kim Sterelny - 2015 - Philosophy of Science 82 (3):402-423.
    This article has both substantive and methodological goals. Methodologically, it shows that rational choice theory is an especially important tool for guiding research in contexts in which agents appear to be acting against their best interests. The Neolithic transition is one such case, and the article develops a substantive conception of that transition, illustrating the heuristic power of behavioral ecology.
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  30.  28
    Engineering Model Independence.Zachary Pirtle, Jay Odenbaugh, Andrew Hamilton & Zoe Szajnfarber - 2018 - Techné: Research in Philosophy and Technology 22 (2):191-229.
    According to population biologist Richard Levins, every discipline has a “strategy of model building,” which involves implicit assumptions about epistemic goals and the types of abstractions and modeling approaches used. We will offer suggestions about how to model complex systems based upon a strategy focusing on independence in modeling. While there are many possible and desirable modeling strategies, we will contrast a model-independence-focused strategy with the more common modeling strategy of adding increasing levels of detail to a model. Levins calls (...)
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  31.  39
    Engineering Model Independence.Zachary Pirtle, Jay Odenbaugh, Andrew Hamilton & Zoe Szajnfarber - 2018 - Techné: Research in Philosophy and Technology 22 (2):191-229.
    According to population biologist Richard Levins, every discipline has a “strategy of model building,” which involves implicit assumptions about epistemic goals and the types of abstractions and modeling approaches used. We will offer suggestions about how to model complex systems based upon a strategy focusing on independence in modeling. While there are many possible and desirable modeling strategies, we will contrast a model-independence-focused strategy with the more common modeling strategy of adding increasing levels of detail to a model. Levins calls (...)
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  32. Narrative niche construction: Memory ecologies and distributed narrative identities.Richard Heersmink - 2020 - Biology and Philosophy 35 (5):1-23.
    Memories of our personal past are the building blocks of our narrative identity. So, when we depend on objects and other people to remember and construct our personal past, our narrative identity is distributed across our embodied brains and an ecology of environmental resources. This paper uses a cognitive niche construction approach to conceptualise how we engineer our memory ecology and construct our distributed narrative identities. It does so by identifying three types of niche construction processes that govern how we (...)
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  33.  31
    The responsibility of engineers, appropriate technology, and Lesser developed nations.Eugene Schlossberger - 1997 - Science and Engineering Ethics 3 (3):317-326.
    Projects importing technology to lesser developed nations may raise five important concerns: famine resulting from substitution of cash crops for subsistence crops, the use of products banned in the United States but permitted overseas, the use of products safe in the U.S. but unsafe under local conditions, ecological consequences of technological change, and cultural disruption caused by displacing traditional ways of life. Are engineers responsible for the foreseeable hunger, environmental degradation, cultural disruption, and illness that results from the project? (...)
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  34.  2
    Remaking “Nature”: The Ecological Turn in Dutch Water Management.Cornelis Disco - 2002 - Science, Technology, and Human Values 27 (2):206-235.
    The ecological turn in water management has usually been interpreted as a political and cultural rather than technical and professional accomplishment. The dynamics of the uptake of ecological expertise into hydraulic engineering bureaucracies have not been well described. Focusing on the controversy around the damming of the Oosterschelde estuary in the Netherlands in the 1970s, this article shows how public environmental politics transformed the politics of interprofessional competition. Andrew Abbott’s concept of “jurisdictional vacancies” is mobilized to illuminate (...)
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  35.  12
    Purification: Engineering Water and Producing Politics.Astrid Oberborbeck Andersen - 2018 - Science, Technology, and Human Values 43 (3):379-400.
    In Arequipa, Peru’s second largest city, engineers work hard to control water flows and provide different sectors with clean and sufficient water. In 2011, only 10 percent of the totality of water used daily by Arequipa’s then close to 1 million people—in households, tourism, industry, and mining—was treated before it was returned to the river where it continues its flow downstream towards cultivated fields and, finally, into the Pacific Ocean. It takes specialized knowledge and manifold technologies to manage water and (...)
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  36.  27
    Public Concerns in the United Kingdom about General and Specific Applications of Genetic Engineering: Risk, Benefit, and Ethics.Richard Shepherd, Chaya Howard & Lynn J. Frewer - 1997 - Science, Technology and Human Values 22 (1):98-124.
    The repertory grid method was used to determine what terminology respondents use to distinguish between different applications of genetic engineering drawn from food- related, agricultural, and medical applications. Respondents were asked to react to fifteen applications phrased in general terms, and results compared with a second study where fifteen more specific applications were used as stimuli. Both sets of data were submitted to generalized Procrustes analysis. Applications associated with animals or human genetic material were described as causing ethical concern, (...)
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  37.  4
    Engineering knowledge in the technogenic civilization.Irina A. Gerasimova - 2018 - Epistemology and Philosophy of Science 55 (2):6-17.
    The author argues that the radical technological transformations contribute to the raise of new epistemological questions. The XXI century technologies could be described as a large-scale socio-technical system. The author claims that the engineering knowledge in the technogenic civilization combines science and technology, technology and industry, techno-science and art, economics, society and culture. At the same time engineers and technologists while doing their experimental research face with risks and uncertainty. The author argues that the rise of new global risks (...)
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  38.  99
    Ecology and the Deep Forces of Perestroika.Jean-Robert Raviot - 2002 - Diogenes 49 (194):120-125.
    An oasis of authorized criticism in the 1960s and the 1970s, and a privileged public arena for ‘extreme non-conformist’ intellectuals in the same period, ecology was also the matrix for the national movements which precipitated the end of the decaying party-state at the end of the 1980s and which had been in gestation since the late 1960s. Ideal metaphor for the fall of a system emblematized by the catastrophe at Chernobyl (April 1986), the ecological crisis - the crisis in (...)
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  39.  16
    Queer Fire: Ecology, Combustion and Pyrosexual Desire.Kathryn Yusoff & Nigel Clark - 2018 - Feminist Review 118 (1):7-24.
    We set out by noting the preference for circular flows in ecological thought, and the related abhorrence of inefficiency and waste that Western ecology shares with mainstream economic thinking. This has often been manifest in a shared disdain both for uncontained, free-burning fire and for ‘unmanaged’ sexual desire. The paper constructs a ‘pyrosexual’ counter-narrative that explores the mutually constitutive and generative implication of sex and fire. Bringing together the solar ecology of Georges Bataille, feminist and queer thinking about sexuality (...)
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  40.  29
    Genetic Engineering and the Risk of Harm.Matti Häyry & Tuija Lehto - 1998 - The Paideia Archive: Twentieth World Congress of Philosophy 4:51-55.
    There are many risks involved in genetic engineering. The release of genetically altered organisms in the environment can increase human suffering, decrease animal welfare, and lead to ecological disasters. The containment of biotechnological material in laboratories and industrial plants contributes to the risk of accidental release, especially if the handling and storage are inadequate. The purely political dangers include intensified economic inequality, the possibility of large-scale eugenic programs, and totalitarian control over human lives. How should the acceptability of (...)
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  41.  16
    Documentary across platforms: reverse engineering media, place, and politics.Patricia Rodden Zimmermann - 2019 - Bloomington, Indiana: Indiana University Press, Office of Scholarly Publishing, Herman B Wells Library.
    In Documentary Across Platforms, noted scholar of film and experimental media Patricia R. Zimmermann offers a glimpse into the ever-evolving constellation of practices known as "documentary" and the way in which they investigate, engage with, and interrogate the world. Collected here for the first time are her celebrated essays and speculations about documentary, experimental, and new media published outside of traditional scholarly venues. These essays envision documentary as a complex ecology composed of different technologies, sets of practices, and specific relationships (...)
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  42. From environmental to ecological ethics: Toward a practical ethics for ecologists and conservationists.Ben A. Minteer & James P. Collins - 2008 - Science and Engineering Ethics 14 (4):483-501.
    Ecological research and conservation practice frequently raise difficult and varied ethical questions for scientific investigators and managers, including duties to public welfare, nonhuman individuals (i.e., animals and plants), populations, and ecosystems. The field of environmental ethics has contributed much to the understanding of general duties and values to nature, but it has not developed the resources to address the diverse and often unique practical concerns of ecological researchers and managers in the field, lab, and conservation facility. The emerging (...)
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  43.  8
    Revealing Complex Ecological Dynamics via Symbolic Regression.Yize Chen, Marco Tulio Angulo & Yang-Yu Liu - 2019 - Bioessays 41 (12):1900069.
    Understanding the dynamics of complex ecosystems is a necessary step to maintain and control them. Yet, reverse-engineering ecological dynamics remains challenging largely due to the very broad class of dynamics that ecosystems may take. Here, this challenge is tackled through symbolic regression, a machine learning method that automatically reverse-engineers both the model structure and parameters from temporal data. How combining symbolic regression with a “dictionary” of possible ecological functional responses opens the door to correctly reverse-engineering ecosystem (...)
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  44. Ecology and the inescapability of values.Jay Odenbaugh - 2008 - Science and Engineering Ethics 14 (4):593-596.
  45.  6
    Scaling Up: The Institution of Chemical Engineers and the Rise of a New Profession.Colin Divall & Sean F. Johnston - 2000 - Dordrecht, Netherlands: Kluwer Academic.
    Chemical engineering - as a recognised skill in the workplace, as an academic discipline, and as an acknowledged profession - is scarcely a century old. Yet from a contested existence before the First World War, chemical engineering had become one of the 'big four' engineering professions in Britain, and a major contributor to Western economies, by the end of the twentieth century. The subject had distinct national trajectories. In Britain - too long seen as shaped by American (...)
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  46. Human engineering and climate change.S. Matthew Liao, Anders Sandberg & Rebecca Roache - 2013 - In Ronald L. Sandler & John Basl (eds.), Designer Biology: The Ethics of Intensively Engineering Biological and Ecological Systems. Lanham: Lexington Books.
  47.  41
    Redefining ecological ethics: Science, policy, and philosophy at Cape horn.Robert Frodeman - 2008 - Science and Engineering Ethics 14 (4):597-610.
    In the twentieth century, philosophy (especially within the United States) embraced the notion of disciplinary expertise: philosophical research consists of working with and writing for other philosophers. Projects that involve non-philosophers earn the deprecating title of “applied” philosophy. The University of North Texas (UNT) doctoral program in philosophy exemplifies the possibility of a new model for philosophy, where graduate students are trained in academic philosophy and in how to work with scientists, engineers, and policy makers. This “field” (rather than “applied”) (...)
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  48. Engineering for virtue? : toward holistic moral enhancement.William Kabasenche - 2013 - In Ronald L. Sandler & John Basl (eds.), Designer Biology: The Ethics of Intensively Engineering Biological and Ecological Systems. Lanham: Lexington Books.
  49.  12
    Pedagogical Orientations and Evolving Responsibilities of Technological Universities: A Literature Review of the History of Engineering Education.Diana Adela Martin, Gunter Bombaerts, Maja Horst, Kyriaki Papageorgiou & Gianluigi Viscusi - 2023 - Science and Engineering Ethics 29 (6):1-29.
    Current societal changes and challenges demand a broader role of technological universities, thus opening the question of how their role evolved over time and how to frame their current responsibility. In response to urgent calls for debating and redefining the identity of contemporary technological universities, this paper has two aims. The first aim is to identify the key characteristics and orientations marking the development of technological universities, as recorded in the history of engineering education. The second aim is to (...)
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  50.  9
    Finding our niche: toward a restorative human ecology.Philip A. Loring - 2020 - Winnipeg: Fernwood Publishing.
    Western society is steeped in a legacy of white supremacy and colonialism--a worldview that pits humans against nature and that has created numerous pressing social and environmental challenges. So great are these challenges that many of us have come to believe that our species is fundamentally flawed and that our story is destined to be nasty, brutish, and short. In Finding Our Niche I explore these tragedies of western society while offering the makings of an alternative: a set of metaphors (...)
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