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  1. Realism and Impartiality: Making Sustainability Effective in Decision-Making.Miquel Bastons & Jaume Armengou - 2017 - Science and Engineering Ethics 23 (4):969-987.
    There is both individual and collective widespread concern in society about the impact of human activity and the effects of our decisions on the physical and social environment. This concern is included within the idea of sustainability. The meaning of the concept is still ambiguous and its practical effectiveness disputed. Like many other authors, this article uses as a starting point the definition proposed by the World Commission on Environment and Development, considering it to be a proposal for changing the (...)
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  • Ethical Risk Management Education in Engineering: A Systematic Review.Yoann Guntzburger, Thierry C. Pauchant & Philippe A. Tanguy - 2017 - Science and Engineering Ethics 23 (2):323-350.
    Risk management is certainly one of the most important professional responsibilities of an engineer. As such, this activity needs to be combined with complex ethical reflections, and this requirement should therefore be explicitly integrated in engineering education. In this article, we analyse how this nexus between ethics and risk management is expressed in the engineering education research literature. It was done by reviewing 135 articles published between 1980 and March 1, 2016. These articles have been selected from 21 major journals (...)
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  • Design and Development of a Course in Professionalism and Ethics for CDIO Curriculum in China.Yinghui Fan, Xingwei Zhang & Xinlu Xie - 2015 - Science and Engineering Ethics 21 (5):1381-1389.
    At Shantou University in 2008, a stand-alone engineering ethics course was first included within a Conceive–Design–Implement–Operate curriculum to address the scarcity of engineering ethics education in China. The philosophy of the course design is to help students to develop an in-depth understanding of social sustainability and to fulfill the obligations of engineers in the twenty-first century within the context of CDIO engineering practices. To guarantee the necessary cooperation of the relevant parties, we have taken advantage of the top-down support from (...)
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  • A Social Licence for Carbon Dioxide Capture and Storage: How Engineers and Managers Describe Community Relations.Anne-Maree Dowd & Mallory James - 2014 - Social Epistemology 28 (3-4):364-384.
    Although extensive research has been devoted to public perceptions and acceptance of controversial energy innovations, the perspectives of people developing and implementing such technologies are relatively under-examined. Other industries, such as mining, and social researchers have adopted the term “social licence to operate” (SLO) to conceptualise community–industry relationships. Despite its potential applicability to carbon dioxide capture and storage (CCS) technology, SLO has received very little attention in this context, specifically from an engineering and managerial perspective. The internationally contested nature of (...)
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  • 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 material growth, (...)
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