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  1. Engaging students in ethical decision-making: a case study from an undergraduate geoscience course.Carl-Georg Bank & Anne Marie Ryan - 2020 - International Journal of Ethics Education 5 (1):51-65.
    The teaching of ethics in science within the disciplines provides an avenue to deepen students’ scientific understanding and to develop their critical thinking skills. This study showcases a module which connects ethics to science within a large introductory geoscience course. The module components, a tutorial plus homework assignment and an exam question, require students to decide on ethical issues using a 5-step approach that mirrors the scientific decision-making process. The assignment is graded using a developed rubric. An analysis of exam (...)
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  • Innovative education tools for developing ethical skills in university science lessons. The case of the moral cross dilemma.Jesús Sánchez-Martín, Francisco Zamora-Polo, José Moreno-Losada & Juan P. Parejo-Ayuso - 2017 - Ramon Llull Journal of Applied Ethics 8 (8):225-245.
    This article presents the feasibility of teaching generic competences through Sciencelessons at university level. The authors have implemented a new instrumentcalled “Moral Cross Dilemma” which involves the use of argumentationand moral reasoning within the students of Primary EducationDegree. This tool seems to be an effectivepedagogical resource in Higher Education Levels. It is a step forward fromthe well-known dilemma, a consolidated strategy for the development ofethical competences based on argumentative and discursive methodologies.This paper is focused on the description of this technique (...)
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  • Introducing Survival Ethics into Engineering Education and Practice.C. Verharen, J. Tharakan, G. Middendorf, M. Castro-Sitiriche & G. Kadoda - 2011 - Science and Engineering Ethics 19 (2):599-623.
    Given the possibilities of synthetic biology, weapons of mass destruction and global climate change, humans may achieve the capacity globally to alter life. This crisis calls for an ethics that furnishes effective motives to take global action necessary for survival. We propose a research program for understanding why ethical principles change across time and culture. We also propose provisional motives and methods for reaching global consensus on engineering field ethics. Current interdisciplinary research in ethics, psychology, neuroscience and evolutionary theory grounds (...)
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  • Strategies for Teaching Professional Ethics to IT Engineering Degree Students and Evaluating the Result.Rafael Miñano, Ángel Uruburu, Ana Moreno-Romero & Diego Pérez-López - 2017 - Science and Engineering Ethics 23 (1):263-286.
    This paper presents an experience in developing professional ethics by an approach that integrates knowledge, teaching methodologies and assessment coherently. It has been implemented for students in both the Software Engineering and Computer Engineering degree programs of the Technical University of Madrid, in which professional ethics is studied as a part of a required course. Our contribution of this paper is a model for formative assessment that clarifies the learning goals, enhances the results, simplifies the scoring and can be replicated (...)
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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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  • Understanding Engineering Professionalism: A Reflection on the Rights of Engineers.James A. Stieb - 2011 - Science and Engineering Ethics 17 (1):149-169.
    Engineering societies such as the National Society of Professional Engineers (NSPE) and associated entities have defined engineering and professionalism in such a way as to require the benefit of humanity (NSPE 2009a, Engineering Education Resource Document. NSPE Position Statements. Governmental Relations). This requirement has been an unnecessary and unfortunate add-on. The trend of the profession to favor the idea of requiring the benefit of humanity for professionalism violates an engineer’s rights. It applies political pressure that dissuades from inquiry, approaches to (...)
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