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  1. Teaching ethics and technology with agora , an electronic tool.Simone van der Burg & Ibo van de Poel - 2005 - Science and Engineering Ethics 11 (2):277-297.
    Courses on ethics and technology have become compulsory for many students at the three Dutch technical universities during the past few years. During this time, teachers have faced a number of didactic problems, which are partly due to a growing number of students. In order to deal with these challenges, teachers in ethics at the three technical universities in the Netherlands — in Delft, Eindhoven and Twente — have developed a web-based computer program called Agora (see www.ethicsandtechnology.com). This program enables (...)
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  • Teaching ethics and technology with Agora, an electronic tool.Simone Burg & Ibo Poel - 2005 - Science and Engineering Ethics 11 (2):277-297.
    Courses on ethics and technology have become compulsory for many students at the three Dutch technical universities during the past few years. During this time, teachers have faced a number of didactic problems, which are partly due to a growing number of students. In order to deal with these challenges, teachers in ethics at the three technical universities in the Netherlands — in Delft, Eindhoven and Twente — have developed a web-based computer program called Agora (see www.ethicsandtechnology.com). This program enables (...)
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  • Using cases with contrary facts to illustrate and facilitate ethical analysis.Steven S. Coughlin - 2008 - Science and Engineering Ethics 14 (1):103-110.
    There has been increasing interest in developing practical, non-theoretical tools for analyzing ethical problems in public health, biomedicine, and other scientific disciplines so that professionals can make and justify ethical decisions in their own research or practice. Tools for ethical decisionmaking, together with case studies on ethics, are often used in graduate education programs and in continuing professional education. Students can benefit from opportunities to further develop their analytical skills, to recognize ethical issues, and to develop their moral sensitivity. One (...)
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  • Logical Argument Mapping: A cognitive-change-based method for building common ground.Michael H. G. Hoffmann - 2007 - Acm International Conference Proceeding Series; Vol. 280. Proceedings of the 2nd International Conference on Pragmatic Web.
    In this paper, I situate Logical Argument Mapping within.
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  • A case for a duty to feed the hungry: GM plants and the third world.Lucy Carter - 2007 - Science and Engineering Ethics 13 (1):69-82.
    This article is concerned with a discussion of the plausibility of the claim that GM technology has the potential to provide the hungry with sufficient food for subsistence. Following a brief outline of the potential applications of GM in this context, a history of the green revolution and its impact will be discussed in relation to the current developing world agriculture situation. Following a contemporary analysis of malnutrition, the claim that GM technology has the potential to provide the hungry with (...)
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  • Contentious Problems in Bioscience and Biotechnology: A Pilot Study of an Approach to Ethics Education.Roberta M. Berry, Jason Borenstein & Robert J. Butera - 2013 - Science and Engineering Ethics 19 (2):653-668.
    This manuscript describes a pilot study in ethics education employing a problem-based learning approach to the study of novel, complex, ethically fraught, unavoidably public, and unavoidably divisive policy problems, called “fractious problems,” in bioscience and biotechnology. Diverse graduate and professional students from four US institutions and disciplines spanning science, engineering, humanities, social science, law, and medicine analyzed fractious problems employing “navigational skills” tailored to the distinctive features of these problems. The students presented their results to policymakers, stakeholders, experts, and members (...)
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  • Argumentation in higher education: examples of actual practices with argumentation tools.Jerry E. B. Andriessen - 2009 - In Nathalie Muller Mirza & Anne Nelly Perret-Clermont (eds.), Argumentation and education. New York: Springer. pp. 195--214.
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  • Argumentative design.Jerry E. B. Andriessen & Baruch B. Schwarz - 2009 - In Nathalie Muller Mirza & Anne Nelly Perret-Clermont (eds.), Argumentation and education. New York: Springer.
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  • Arguing to Learn: Confronting Cognitions in Computer-Supported Collaborative Learning Environments.Jerry Andriessen, Michael Baker & Daniel Suthers (eds.) - 2003 - Dordrecht, Netherland: Springer.
    This book focuses on how new pedagogical scenarios, task environments and communication tools within Computer-Supported Collaborative Learning environments can favour collaborative and productive confrontations of ideas, evidence, arguments and explanations, or arguing to learn. The first to assemble the work of internationally renowned scholars, this book will be of interest to researchers in education, psychology, computer science, communication and linguistic studies.
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  • Enhancing expertise in informal reasoning.Tim van Gelder - 2004 - Canadian Journal of Experimental Psychology 58:142--152.
    People generally develop some degree of competence in general informal reasoning and argument skills, but how do they go beyond this to attain higher expertise? Ericsson has proposed that high-level expertise in a variety of domains is cultivated through a specific type of practice, referred to as ‘deliberate practice’. Applying this framework yields the empirical hypothesis that high-level expertise in informal reasoning is the outcome of extensive deliberate practice. This paper reports results from two studies evaluating the hypothesis. University student (...)
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