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Engineering ethics: concepts and cases

Boston, MA: Cengage. Edited by Michael S. Pritchard, Ray W. James, Elaine E. Englehardt & Michael J. Rabins (2009)

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  1. Classification and Moral Evaluation of Uncertainties in Engineering Modeling.Colleen Murphy, Paolo Gardoni & Charles E. Harris - 2011 - Science and Engineering Ethics 17 (3):553-570.
    Engineers must deal with risks and uncertainties as a part of their professional work and, in particular, uncertainties are inherent to engineering models. Models play a central role in engineering. Models often represent an abstract and idealized version of the mathematical properties of a target. Using models, engineers can investigate and acquire understanding of how an object or phenomenon will perform under specified conditions. This paper defines the different stages of the modeling process in engineering, classifies the various sources of (...)
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  • Situating Moral Agency: How Postphenomenology Can Benefit Engineering Ethics.L. Alexandra Morrison - 2020 - Science and Engineering Ethics 26 (3):1377-1401.
    This article identifies limitations in traditional approaches to engineering ethics pedagogy, reflected in an overreliance on disaster case studies. Researchers in the field have pointed out that these approaches tend to occlude ethically significant aspects of day-to-day engineering practice and thus reductively individualize and decontextualize ethical decision-making. Some have proposed, as a remedy for these defects, the use of research and theory from Science and Technology Studies to enrich our understanding of the ways in which technology and engineering practice are (...)
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  • Ethics Across the Curriculum: Prospects for Broader (and Deeper) Teaching and Learning in Research and Engineering Ethics.Carl Mitcham & Elaine E. Englehardt - 2016 - Science and Engineering Ethics 25 (6):1735-1762.
    The movements to teach the responsible conduct of research and engineering ethics at technological universities are often unacknowledged aspects of the ethics across the curriculum movement and could benefit from explicit alliances with it. Remarkably, however, not nearly as much scholarly attention has been devoted to EAC as to RCR or to engineering ethics, and RCR and engineering ethics educational efforts are not always presented as facets of EAC. The emergence of EAC efforts at two different institutions—the Illinois Institute of (...)
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  • Enhancing Engineering Ethics: Role Ethics and Corporate Social Responsibility.Carl Mitcham, Jessica M. Smith, Qin Zhu & Nicole M. Smith - 2021 - Science and Engineering Ethics 27 (3):1-21.
    Engineering ethics calls the attention of engineers to professional codes of ethical responsibility and personal values, but the practice of ethics in corporate settings can be more complex than either of these. Corporations too have cultures that often include corporate social responsibility (CSR) practices and policies, but few discussions of engineering ethics make any explicit reference to CSR. This article proposes critical attention to CSR and role ethics as an opportunity to help prepare engineers to think through the ethics of (...)
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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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  • Development of a tissue engineered heart valve for pediatrics: A case study in bioengineering ethics.W. David Merryman - 2008 - Science and Engineering Ethics 14 (1):93-101.
    The following hypothetical case study was developed for bioengineering students and is concerned with choosing between two devices used for development of a pediatric tissue engineered heart valve (TEHV). This case is intended to elicit assessment of the devices, possible future outcomes, and ramifications of the decision making. It is framed in light of two predominant ethical theories: utilitarianism and rights of persons. After the case was presented to bioengineering graduate students, they voted on which device should be released. The (...)
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  • Software Engineering Ethics.Daniela Marcu, Dan Laurenţiu Milici & Mirela Danubianu - 2020 - Postmodern Openings 11 (4):248-261.
    Over the past 30 years, computer engineering has developed a lot. Currently, computer and software applications have a central role in business, medicine, security, communications, industry, education, and everyday life. Software developers, peoples who manage computer networks, data security analysts can do well, but they also have the potential to cause suffering and harm to the clients or ordinary peoples, willingly or not. For this reason, IT activities must be regulated by specific laws. From the beginning, we argue that the (...)
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  • Prolegomena to virtue-theoretic studies in the philosophy of mathematics.James V. Martin - 2020 - Synthese 199 (1-2):1409-1434.
    Additional theorizing about mathematical practice is needed in order to ground appeals to truly useful notions of the virtues in mathematics. This paper aims to contribute to this theorizing, first, by characterizing mathematical practice as being epistemic and “objectual” in the sense of Knorr Cetina The practice turn in contemporary theory, Routledge, London, 2001). Then, it elaborates a MacIntyrean framework for extracting conceptions of the virtues related to mathematical practice so understood. Finally, it makes the case that Wittgenstein’s methodology for (...)
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  • Ethics education for professionals in japan: A critical review.Yasushi Maruyama & Tetsu Ueno - 2010 - Educational Philosophy and Theory 42 (4):438-447.
    Ethics education for professionals has become popular in Japan over the last two decades. Many professional schools now require students to take an applied ethics or professional ethics course. In contrast, very few courses of professional ethics for teaching exist or have been taught in Japan. In order to obtain suggestions for teacher education, this paper reviews and examines practices of ethics education for engineers and nurses in Japan that have been successfully implemented. The paper concludes that difficulties in professional (...)
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  • A Multi-level Review of Engineering Ethics Education: Towards a Socio-technical Orientation of Engineering Education for Ethics.Diana Adela Martin, Eddie Conlon & Brian Bowe - 2021 - Science and Engineering Ethics 27 (5):1-38.
    This paper aims to review the empirical and theoretical research on engineering ethics education, by focusing on the challenges reported in the literature. The analysis is conducted at four levels of the engineering education system. First, the individual level is dedicated to findings about teaching practices reported by instructors. Second, the institutional level brings together findings about the implementation and presence of ethics within engineering programmes. Third, the level of policy situates findings about engineering ethics education in the context of (...)
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  • Second-Guessing Scientists and Engineers: Post Hoc Criticism and the Reform of Practice in Green Chemistry and Engineering.William T. Lynch - 2015 - Science and Engineering Ethics 21 (5):1217-1240.
    The article examines and extends work bringing together engineering ethics and Science and Technology Studies, which had built upon Diane Vaughan’s analysis of the Challenger shuttle accident as a test case. Reconsidering the use of her term “normalization of deviance,” the article argues for a middle path between moralizing against and excusing away engineering practices contributing to engineering disaster. To explore an illustrative pedagogical case and to suggest avenues for constructive research developing this middle path, it examines the emergence of (...)
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  • Educational technologies and the teaching of ethics in science and engineering.Michael C. Loui - 2005 - Science and Engineering Ethics 11 (3):435-446.
    To support the teaching of ethics in science and engineering, educational technologies offer a variety of functions: communication between students and instructors, production of documents, distribution of documents, archiving of class sessions, and access to remote resources. Instructors may choose to use these functions of the technologies at different levels of intensity, to support a variety of pedagogies, consistent with accepted good practices. Good pedagogical practices are illustrated in this paper with four examples of uses of educational technologies in the (...)
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  • Commentary on: “The Greening of engineers: A cross-cultural experience” (A. ansari).M. C. Loui - 2001 - Science and Engineering Ethics 7 (1):125-127.
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  • “Things that went well — No serious injuries or deaths”: Ethical reasoning in a normal engineering design process.Peter Lloyd & Jerry Busby - 2003 - Science and Engineering Ethics 9 (4):503-516.
    We argue that considering only a few ‘big’ ethical decisions in any engineering design process — both in education and practice — only reinforces the mistaken idea of engineering design as a series of independent sub-problems. Using data collected in engineering design organisations over a seven year period, we show how an ethical component to engineering decisions is much more pervasive. We distinguish three types of ethical justification for engineering decisions: (1) consequential, (2) deontological or non-consequential, and (3) virtue-based. We (...)
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  • Designing games to teach ethics.Peter Lloyd & Ibo van de Poel - 2008 - Science and Engineering Ethics 14 (3):433-447.
    This paper describes a teaching methodology whereby students can gain practical experience of ethical decision-making in the engineering design process. We first argue for the necessity to teach a ‘practical’ understanding of ethical issues in engineering education along with the usual theoretical or hypothetical approaches. We then show how this practical understanding can be achieved by using a collaborative design game, describing how, for example, the concept of responsibility can be explored from this practical basis. We conclude that the use (...)
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  • Engineering Identities, Epistemologies and Values: Engineering Education and Practice in Context.Byron Newberry, Carl Mitcham, Martin Meganck, Andrew Jamison, Christelle Didier & Steen Hyldgaard Christensen (eds.) - 2015 - Springer Verlag.
    This second companion volume on engineering studies considers engineering practice including contextual analyses of engineering identity, epistemologies and values. Key overlapping questions examine such issues as an engineering identity, engineering self-understandings enacted in the professional world, distinctive characters of engineering knowledge and how engineering science and engineering design interact in practice. -/- Authors bring with them perspectives from their institutional homes in Europe, North America, Australia\ and Asia. The volume includes 24 contributions by more than 30 authors from engineering, the (...)
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  • Engineering Practice and Engineering Ethics.Ronald Kline & William T. Lynch - 2000 - Science, Technology, and Human Values 25 (2):195-225.
    Diane Vaughan’s analysis of the causes of the Challenger accident suggests ways to apply science and technology studies to the teaching of engineering ethics. By sensitizing future engineers to the ongoing construction of risk during mundane engineering practice, we can better prepare them to address issues of public health, safety, and welfare before they require heroic intervention. Understanding the importance of precedents, incremental change, and fallible engineering judgment in engineering design may help them anticipate potential threats to public safety arising (...)
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  • Ethical Issues in Engineering Models: An Operations Researcher’s Reflections.J. Kleijnen - 2011 - Science and Engineering Ethics 17 (3):539-552.
    This article starts with an overview of the author’s personal involvement—as an Operations Research consultant—in several engineering case-studies that may raise ethical questions; e.g., case-studies on nuclear waste, water management, sustainable ecology, military tactics, and animal welfare. All these case studies employ computer simulation models. In general, models are meant to solve practical problems, which may have ethical implications for the various stakeholders; namely, the modelers, the clients, and the public at large. The article further presents an overview of codes (...)
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  • The Importance of Formative Assessment in Science and Engineering Ethics Education: Some Evidence and Practical Advice.Matthew W. Keefer, Sara E. Wilson, Harry Dankowicz & Michael C. Loui - 2013 - Science and Engineering Ethics 20 (1):249-260.
    Recent research in ethics education shows a potentially problematic variation in content, curricular materials, and instruction. While ethics instruction is now widespread, studies have identified significant variation in both the goals and methods of ethics education, leaving researchers to conclude that many approaches may be inappropriately paired with goals that are unachievable. This paper speaks to these concerns by demonstrating the importance of aligning classroom-based assessments to clear ethical learning objectives in order to help students and instructors track their progress (...)
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  • Technological Enthusiasm: Morally Commendable or Reprehensible?Mahdi Kafaee - 2020 - Science and Engineering Ethics 26 (2):969-980.
    Technological enthusiasm is a value that can influence engineering, shape technologies and subsequently transform human lifestyles. Despite its significant role, up until now, there has been little research done on this value. The dominant idea is that this value is commendable. However, based on consequentialism, a recently proposed idea describes TE as neither morally commendable nor reprehensible. In this paper, three arguments are presented against this recent idea, and a new idea is introduced, which challenges not only commendation for TE (...)
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  • Technological Enthusiasm: Morally Commendable or Reprehensible?Mahdi Kafaee - 2020 - Science and Engineering Ethics 26 (2):969-980.
    Technological enthusiasm is a value that can influence engineering, shape technologies and subsequently transform human lifestyles. Despite its significant role, up until now, there has been little research done on this value. The dominant idea is that this value is commendable. However, based on consequentialism, a recently proposed idea describes TE as neither morally commendable nor reprehensible. In this paper, three arguments are presented against this recent idea, and a new idea is introduced, which challenges not only commendation for TE (...)
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  • How should we Foster the professional integrity of engineers in japan? A pride-based approach.Tetsuji Iseda - 2008 - Science and Engineering Ethics 14 (2):165-176.
    I discuss the predicament that engineering-ethics education in Japan now faces and propose a solution to this. The predicament is professional motivation, i.e., the problem of how to motivate engineering students to maintain their professional integrity. The special professional responsibilities of engineers are often explained either as an implicit social contract between the profession and society (the “social-contract” view), or as requirements for membership in the profession (the “membership-requirement” view). However, there are empirical data that suggest that such views will (...)
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  • International Perspectives on Engineering Education: Engineering Education and Practice in Context.Byron Newberry, Carl Mitcham, Martin Meganck, Andrew Jamison, Christelle Didier & Steen Hyldgaard Christensen (eds.) - 2015 - Springer Verlag.
    This inclusive cross-cultural study rethinks the nexus between engineering education and context. In so doing the book offers a reflection on contextual boundaries with an overall boundary crossing ambition and juxtaposes important cases of critical participation within engineering education with sophisticated scholarly reflection on both opportunities and discontents. -/- Whether and in what way engineering education is or ought to be contextualized or de-contextualized is an object of heated debate among engineering educators. The uniqueness of this study is that this (...)
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  • Ethics, Culture, and Structure in the Negotiation of Straw Bale Building Codes.Kathryn Henderson - 2006 - Science, Technology, and Human Values 31 (3):261-288.
    This study explores building code negotiation between straw bale advocates’ ecology-oriented values and health and safety values that underlie building codes in general by focusing on how values and ethics are articulated and embodied in practice and discourse in the two states where straw bale building standards were first initiated. The local, contingent nature of interactions, grounded in particular practices, material culture, and written and visual texts in which values were embedded, coupled with organizational factors contributed to strategies for a (...)
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  • Can instruction in engineering ethics change students' feelings about professional responsibility?Golnaz Hashemian & Michael C. Loui - 2010 - Science and Engineering Ethics 16 (1):201-215.
    How can a course on engineering ethics affect an undergraduate student’s feelings of responsibility about moral problems? In this study, three groups of students were interviewed: six students who had completed a specific course on engineering ethics, six who had registered for the course but had not yet started it, and six who had not taken or registered for the course. Students were asked what they would do as the central character, an engineer, in each of two short cases that (...)
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  • The good engineer: Giving virtue its due in engineering ethics.Charles E. Harris - 2008 - Science and Engineering Ethics 14 (2):153-164.
    During the past few decades, engineering ethics has been oriented towards protecting the public from professional misconduct by engineers and from the harmful effects of technology. This “preventive ethics” project has been accomplished primarily by means of the promulgation of negative rules. However, some aspects of engineering professionalism, such as (1) sensitivity to risk (2) awareness of the social context of technology, (3) respect for nature, and (4) commitment to the public good, cannot be adequately accounted for in terms of (...)
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  • Commentary on: “The Greening of engineers: A cross-cultural experience” (A. ansari).Charles E. Harris - 2001 - Science and Engineering Ethics 7 (1):117-119.
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  • Ethics and Academic Integrity Elements of Ethics in Electrical Engineering.Oana Vasilica Grosu & Eusebiu Toader - 2020 - Postmodern Openings 11 (4):193-206.
    Ethics is the science that studies the theoretical part of the human condition and its values. The individual has the responsibility to conduct ethic decisions and to have an ethical behavior. This article presents the ethics from the research and engineering perspective, its main characteristics; lack of honesty, confidentiality, conflict of interests and intellectual property. The engineering teaching is the act which includes multiple ethic subjects in order to educate the student about the importance of ethics and its repercussions. The (...)
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  • A team-taught interdisciplinary approach to engineering ethics.Glenn C. Graber & Christopher D. Pionke - 2006 - Science and Engineering Ethics 12 (2):313-320.
    This paper outlines the development and implementation of a new course in Engineering Ethics at the University of Tennessee. This is a three-semester-hour course and is jointly taught by an engineering professor and a philosophy professor. While traditional pedagogical techniques such as case studies, position papers, and classroom discussions are used, additional activities such as developing a code of ethics and student-developed scenarios are employed to encourage critical thinking. Among the topics addressed in the course are engineering as a profession (...)
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  • A Framework for Strategic Network Design Assessment, Decision Making, and Moral Imagination.Michael E. Gorman & Matthew M. Mehalik - 2006 - Science, Technology, and Human Values 31 (3):289-308.
    This article presents a framework for practitioners who may be interested in maintaining adaptive stability of sociotechnical networks. The framework is developed from assembling several concepts that are useful for assessing and for drawing on appropriate moral reasoning strategies as sociotechnical networks are designed, constructed, and adapted. One such strategy involves the ability to assess degrees of perspective sharing and trading relationships in networks using moral imagination. The article uses the case of the design of an environmentally sustainable fabric to (...)
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  • Validity and Reliability of an Instrument for Assessing Case Analyses in Bioengineering Ethics Education.Ilya M. Goldin, Rosa Lynn Pinkus & Kevin Ashley - 2015 - Science and Engineering Ethics 21 (3):789-807.
    Assessment in ethics education faces a challenge. From the perspectives of teachers, students, and third-party evaluators like the Accreditation Board for Engineering and Technology and the National Institutes of Health, assessment of student performance is essential. Because of the complexity of ethical case analysis, however, it is difficult to formulate assessment criteria, and to recognize when students fulfill them. Improvement in students’ moral reasoning skills can serve as the focus of assessment. In previous work, Rosa Lynn Pinkus and Claire Gloeckner (...)
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  • Teaching Virtue: Pedagogical Implications of Moral Psychology. [REVIEW]William J. Frey - 2010 - Science and Engineering Ethics 16 (3):611-628.
    Moral exemplar studies of computer and engineering professionals have led ethics teachers to expand their pedagogical aims beyond moral reasoning to include the skills of moral expertise. This paper frames this expanded moral curriculum in a psychologically informed virtue ethics. Moral psychology provides a description of character distributed across personality traits, integration of moral value into the self system, and moral skill sets. All of these elements play out on the stage of a social surround called a moral ecology. Expanding (...)
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  • Practitioners' Views on Responsibility: Applying Nanoethics. [REVIEW]Rider W. Foley, Ira Bennett & Jameson M. Wetmore - 2012 - NanoEthics 6 (3):231-241.
    Significant efforts have been made to define ethical responsibilities for professionals engaged in nanotechnology innovation. Rosalyn Berne delineated three ethical dimensions of nanotechnological innovation: non-negotiable concerns, negotiable socio-cultural claims, and tacitly ingrained norms. Braden Allenby demarcated three levels of responsibility: the individual, professional societies (e.g. engineering codes), and the macro-ethical. This article will explore how these definitions of responsibility map onto practitioners’ understanding of their responsibilities and the responsibilities of others using the nanotechnology innovation community of the greater Phoenix area, (...)
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  • Leadership, Engineering and Ethical Clashes at Boeing.Elaine Englehardt, Patricia H. Werhane & Lisa H. Newton - 2021 - Science and Engineering Ethics 27 (1):1-17.
    When there are disasters in our society, whether on an individual, organizational or systemic level, individuals or groups of individuals are often singled out for blame, and commonly it is assumed that the alleged culprits engaged in deliberate misdeeds. But sometimes, at least, these disasters occur not because of deliberate malfeasance, but rather because of complex organizational and systemic circumstances that result in these negative outcomes. Using the Boeing Corporation and its 737 MAX aircraft crashes as an example, this ethical (...)
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  • Responsibility Ascriptions in Technology Development and Engineering: Three Perspectives. [REVIEW]Neelke Doorn - 2012 - Science and Engineering Ethics 18 (1):69-90.
    In the last decades increasing attention is paid to the topic of responsibility in technology development and engineering. The discussion of this topic is often guided by questions related to liability and blameworthiness. Recent discussions in engineering ethics call for a reconsideration of the traditional quest for responsibility. Rather than on alleged wrongdoing and blaming, the focus should shift to more socially responsible engineering, some authors argue. The present paper aims at exploring the different approaches to responsibility in order to (...)
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  • Ethics and the complexity of technology: a design approach.Marc J. de Vries - 2006 - Philosophia Reformata 71 (2):118-131.
    In this article I will show how the conceptual framework for analyzing reality as developed in reformational philosophy can help us to get a fuller understanding of the ethics of technology than in popular reductionist views. Thereby I will use Caroline Whitbeck’s suggestion that ethical problems should be dealt with as if they were design problems. Reformational philosophy helps us to understand the nature of complexity in design and also how order in this complex chaos can be created by observing (...)
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  • Interdisciplinarity in ethics and the ethics of interdisciplinarity.Anne Balsamo & Carl Mitcham - 2010 - In Julie Thompson Klein & Carl Mitcham (eds.), The Oxford Handbook of Interdisciplinarity. Oxford University Press. pp. 259.
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  • On the Net: Baran, Dreyfus, Merleau-Ponty, and Austin.Yusuke Kaneko - 2020 - The Basis : The Annual Bulletin of Research Center for Liberal Education, Musashino University 10:183-201.
    The Internet was born in 1960’s, then Internet ethics appeared as a branch of information ethics. It seems, however, our status on the Net is not yet scrutinized. We investigate this problem with the help of philosophers like Dreyfus, Merleau-Ponty, and Austin.
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  • The Experts Role in Nanoscience and Technology.Edward Munn Sanchez - 2004 - In Baird D. (ed.), Discovering the Nanoscale. Ios.
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