Results for 'Design Ethics'

965 found
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  1. Information, Rights, and Social Justice.Network Design - forthcoming - Ethics, Information, and Technology: Readings.
     
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  2. Ethics for Naval Leaders.Roger Wertheimer & USNA Ethics Section - 2002 - Pearson.
    A textbook designed for the mandatory semester ethics course at the United States Naval Academy by USNA Ethics Section, with contributions by the Distinguished Chair in Ethics.
     
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  3. Designing Ethical Organizations: Avoiding the Long-Term Negative Effects of Rewards and Punishments.Melissa S. Baucus & Caryn L. Beck-Dudley - 2005 - Journal of Business Ethics 56 (4):355-370.
    Ethics researchers advise managers of organizations to link rewards and punishments to ethical and unethical behavior, respectively. We build on prior research maintaining that organizations operate at Kohlbergs stages of moral reasoning, and explain how the over-reliance on rewards and punishments encourages employees to operate at Kohlbergs lowest stages of moral reasoning. We advocate designing organizations as ethical communities and relying on different assumptions about employees in order to foster ethical reasoning at higher levels. Characteristics associated with ethical communities (...)
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  4.  51
    Materializing Morality: Design Ethics and Technological Mediation.Peter-Paul Verbeek - 2006 - Science, Technology, and Human Values 31 (3):361-380.
    During the past decade, the “script” concept, indicating how technologies prescribe human actions, has acquired a central place in STS. Until now, the concept has mainly functioned in descriptive settings. This article will deploy it in a normative setting. When technologies coshape human actions, they give material answers to the ethical question of how to act. This implies that engineers are doing “ethics by other means”: they materialize morality. The article will explore the implications of this insight for engineering (...)
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  5. Experimental Design: Ethics, Integrity and the Scientific Method.Jonathan Lewis - 2020 - In Ron Iphofen (ed.), Handbook of Research Ethics and Scientific Integrity. Cham, Switzerland: pp. 459-474.
    Experimental design is one aspect of a scientific method. A well-designed, properly conducted experiment aims to control variables in order to isolate and manipulate causal effects and thereby maximize internal validity, support causal inferences, and guarantee reliable results. Traditionally employed in the natural sciences, experimental design has become an important part of research in the social and behavioral sciences. Experimental methods are also endorsed as the most reliable guides to policy effectiveness. Through a discussion of some of the (...)
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  6.  23
    Designing Ethical Management Control: Overcoming the Harmful Effect of Management Control Systems on Job-Related Stress.Stefan Linder, Bernard Leca, Adrián Zicari & Veronica Casarin - 2020 - Journal of Business Ethics 172 (4):747-764.
    Ethical aspects of management control systems are attracting increasing attention among scholars and practitioners. Much of the work centers on their aims. We complement this scholarship by applying the ethical principle of “no harm,” i.e., non-maleficence, to examine how those aims are achieved. We illustrate this approach by exploring the effects of four MCS designs on job-related stress drawing on the differentiation of stress into two dimensions: a challenge and a threat dimension. Results from a lagged field-survey with 471 managers (...)
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  7.  98
    Toward an horizon in design ethics.Philippe D’Anjou - 2010 - Science and Engineering Ethics 16 (2):355-370.
    This paper suggests that design ethics can be enriched by considering ethics beyond the traditional approaches of deontology, teleology, and virtue ethics. Design practice and design ethics literature tend to frame ethics in design according to these approaches. The paper argues that a fundamental and concrete ethical understanding of design ethics can also be found in Sartrean Existentialism, a philosophy centered on the individual and his/her absolute freedom. Through the (...)
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  8.  20
    Designing ethical artifacts has resulted in creative design.Kaira Sekiguchi & Koichi Hori - 2021 - AI and Society 36 (1):101-148.
    Ethical aspects in engineering design have become increasingly important in recent years. A typical example is the recent rise of artificial intelligence ethics. This paper applies user studies of a design support tool to empirically verify that our ethical framework improves the creativity of an engineer’s design activity. The design support tool provides an environment for the promotion of ethical design perspectives and description. The experiments focus on two functionalities: semi-automatic generation and scenario path (...)
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  9.  12
    Sustainability and Design Ethics.Thomas H. Russ - 2010 - Taylor & Francis.
    From microcosm to macrocosm, ecodesign, green design, environmental design, and triple bottom line are quickly becoming more than just catchy phrases that describe touchy-feely trends. Increases in climate uncertainty and energy costs as well as food, water, and services insecurity are just a few of the challenges driving the growing demand for sustainable design outcomes. Sustainability and Design Ethics provides a systematic value analysis that makes a reasoned argument the rethinking of current design methods (...)
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  10.  9
    Sustainability and design ethics.Jean Russ - 2019 - Boca Raton, FL: CRC Press. Edited by Thomas H. Russ.
    Sustainability as a concept remains just as challenging and important today as it was when the first edition of this book was published. The Second Edition of Sustainability and Design Ethics explores the ethical obligations of knowledgeable people such as design professionals, taking into consideration the numerous changes that have taken place in recent years. This book expands the growing discussion on the principles of sustainability to further include the role of businesses and governments and considers the (...)
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  11.  5
    Scientific Design, Ethics, and Monitoring: IRB Review of Randomized Clinical Trials. [REVIEW]Dale H. Cowan - 1980 - IRB: Ethics & Human Research 2 (9):1.
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  12.  9
    Steve jobs’ understanding of design: Ethical dimention.O. V. Savvina - 2017 - RUDN Journal of Philosophy 19 (3):371-378.
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  13.  18
    The Ethics of Engineering Ethics Education Curriculum Design, Ethics Pedagogies, and the Moral Responsibilities of Ethics Educators.Qin Zhu, Dayoung Kim & Roel Snieder - forthcoming - Teaching Ethics.
    In this paper, we argue that engineering ethics education does have moral implications. More specifically, practices in engineering ethics education can lead to negative moral consequences if not conducted appropriately. Engineering ethics educators are often passionate about teaching students ways to examine the ethical implications of engineering and technology. However, ethics educators may overlook the moral significance of their instructional classroom practices. In this paper, we discuss two issues: First, we discuss the moral impacts of (...) curriculum and pedagogies on students’ learning experiences. Then we discuss the professional responsibilities of educators who are involved in designing ethics learning experiences for engineering students. The reflections presented in this paper will serve as catalysts for more comprehensive discussions regarding the impact of engineering ethics education on the ethical development of engineering students. (shrink)
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  14.  75
    Ethical Design in the Internet of Things.Gianmarco Baldini, Maarten Botterman, Ricardo Neisse & Mariachiara Tallacchini - 2018 - Science and Engineering Ethics 24 (3):905-925.
    Even though public awareness about privacy risks in the Internet is increasing, in the evolution of the Internet to the Internet of Things these risks are likely to become more relevant due to the large amount of data collected and processed by the “Things”. The business drivers for exploring ways to monetize such data are one of the challenges identified in this paper for the protection of Privacy in the IoT. Beyond the protection of privacy, this paper highlights the need (...)
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  15. Ethics and technology design.Anders Albrechtslund - 2006 - Ethics and Information Technology 9 (1):63-72.
    This article offers a discussion of the connection between technology and values and, specifically, I take a closer look at ethically sound design. In order to bring the discussion into a concrete context, the theory of Value Sensitive Design (VSD) will be the focus point. To illustrate my argument concerning design ethics, the discussion involves a case study of an augmented window, designed by the VSD Research Lab, which has turned out to be a potentially surveillance-enabling (...)
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  16.  3
    Ethics at the Intersection: Human-Centered AI & User Experience Design.Christopher Quintana - forthcoming - In Maria Axente, Jean-Louise Denis, Atsuo Kishimoto & Catherine Régis (eds.), Human-Centered AI: a Multidisciplinary Perspective for Policy-Makers, Auditors and Users. Routledge’s Chapman & Hall/CRC Artificial Intelligence and Robotics Series.
    As various forms of artificial intelligence become increasingly integrated into our daily lives, understanding the ethical challenges that can be met by the development of human-centered AI is vital. This paper investigates the intersection of the philosophy of technology, moral philosophy, and user experience design to explore points of interaction between humans and machines. The paper suggests that examining the context in which AI is often deployed, including social and digital environments, offers a rich vein for examining the mechanisms (...)
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  17. The Ecological Turn in Design: Adopting A Posthumanist Ethics to Inform Value Sensitive Design.Steven Umbrello - 2021 - Philosophies 6 (2):29.
    Design for Values (DfV) philosophies are a series of design approaches that aim to incorporate human values into the early phases of technological design to direct innovation into beneficial outcomes. The difficulty and necessity of directing advantageous futures for transformative technologies through the application and adoption of value-based design approaches are apparent. However, questions of whose values to design are of critical importance. DfV philosophies typically aim to enrol the stakeholders who may be affected by (...)
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  18.  9
    Operationalizing Ethical Becoming as a Theoretical Framework for Teaching Engineering Design Ethics.Grant A. Fore & Justin L. Hess - 2020 - Science and Engineering Ethics 26 (3):1353-1375.
    Ethical becoming represents a novel framework for teaching engineering ethics. This framework insists on the complementarity of pragmatism, care, and virtue. The dispositional nature of the self is a central concern, as are relational considerations. However, unlike previous conceptual work, this paper introduces additional lenses for exploring ethical relationality by focusing on indebtedness, harmony, potency, and reflective thought. This paper first reviews relevant contributions in the engineering ethics literature. Then, the relational process ontology of Alfred North Whitehead is (...)
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  19. Does the Sustainability Movement Sustain a Sustainable Design Ethic for Architecture?Tom Spector - 2006 - Environmental Ethics 28 (3):265-283.
    The sustainability movement, currently gathering considerable attention from architects, derives much of its moral foundation from the theoretical initiatives of environmental ethics. How is the value of sustainability to mesh with architecture’s time-tested values? The idea that an ethic of sustainability might serve architects’ efforts to reground their practices in something that opposes consumer values of the marketplace has intuitive appeal and makes a certain amount of sense. However, it is far from obvious that the sustainability movement provides a (...)
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  20. Integrating ethics in design through the value-sensitive design approach.Mary L. Cummings - 2006 - Science and Engineering Ethics 12 (4):701-715.
    The Accreditation Board of Engineering and Technology (ABET) has declared that to achieve accredited status, “engineering programs must demonstrate that their graduates have an understanding of professional and ethical responsibility.” Many engineering professors struggle to integrate this required ethics instruction in technical classes and projects because of the lack of a formalized ethics-in-design approach. However, one methodology developed in human-computer interaction research, the Value-Sensitive Design approach, can serve as an engineering education tool which bridges the gap (...)
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  21.  12
    Does the Sustainability Movement Sustain a Sustainable Design Ethic for Architecture?Tom Spector - 2006 - Environmental Ethics 28 (3):265-283.
    The sustainability movement, currently gathering considerable attention from architects, derives much of its moral foundation from the theoretical initiatives of environmental ethics. How is the value of sustainability to mesh with architecture’s time-tested values? The idea that an ethic of sustainability might serve architects’ efforts to reground their practices in something that opposes consumer values of the marketplace has intuitive appeal and makes a certain amount of sense. However, it is far from obvious that the sustainability movement provides a (...)
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  22. The banality of simulated evil: Designing ethical gameplay. [REVIEW]Miguel Sicart - 2009 - Ethics and Information Technology 11 (3):191-202.
    This paper offers an analytical description of the ethics of game design and its influence in the ethical challenges computer games present. The paper proposes a set of game design suggestions based on the Information Ethics concept of Levels of Abstraction which can be applied to formalise ethical challenges into gameplay mechanics; thus allowing game designers to incorporate ethics as part of the experience of their games. The goal of this paper is twofold: to address (...)
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  23.  38
    Patient Access to Experimental Drugs and AIDS Clinical Trial Designs: Ethical Issues.Udo Schüklenk & Carlton Hogan - 1996 - Cambridge Quarterly of Healthcare Ethics 5 (3):400.
    Today's clinical AIDS research is in trouble. Principal investigators are confronted with young and frequently highly knowledgeable patients. Many of these people with AIDS are often unwilling to adhere to the trial protocols. These PWAs believe they are ethically justified in breaching trial protocols because they do not consider themselves true volunteers in such trials. PWAs argue that they do not really volunteer because existing legislation prevents them from buying and using experimental drugs or from testing alternative treatment strategies. Their (...)
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  24.  71
    Teaching Ethics to Engineers: Ethical Decision Making Parallels the Engineering Design Process.Bridget Bero & Alana Kuhlman - 2011 - Science and Engineering Ethics 17 (3):597-605.
    In order to fulfill ABET requirements, Northern Arizona University’s Civil and Environmental engineering programs incorporate professional ethics in several of its engineering courses. This paper discusses an ethics module in a 3rd year engineering design course that focuses on the design process and technical writing. Engineering students early in their student careers generally possess good black/white critical thinking skills on technical issues. Engineering design is the first time students are exposed to “grey” or multiple possible (...)
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  25. Patient Access to Expenmental Drugs and AlDS Clinical Tnal Designs: Ethical lssues.Udo Scluiklenk & Carlton Hogan - forthcoming - Bioethics: An Anthology.
     
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  26. Designing and Delivering Business Ethics Teaching and Learning.Ronald R. Sims & Edward L. Felton - 2006 - Journal of Business Ethics 63 (3):297-312.
    The recent corporate scandals in the United States have caused a renewed interest and focus on teaching business ethics. Business schools and their faculties are reexamining the teaching of business ethics and are reassessing their responsibilities to produce honest and truthful managers who live lives of integrity and ethical accountability. The authors recognize that no agreement exists among business schools and their faculties regarding what should be the content and pedagogy of a course in business ethics. However, (...)
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  27.  29
    Business ethics: best practices for designing and managing ethical organizations.Denis Collins - 2019 - Los Angeles: SAGE Publications. Edited by Patricia Kanashiro.
    Business Ethics: Best Practices for Designing and Managing Ethical Organizations, Third Edition focuses on how to create organizations of high integrity and superior performance. Author Denis Collins shows how to design organizations that reinforce ethical behavior and reduce ethical risks using his unique Ethical Systems Model that outlines how to hire and train ethical employees, make ethical decisions, and create a trusting, productive work environment. Taking a practical approach, this text is packed with tips, strategies, and real-world case (...)
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  28.  29
    An Ethical Framework for the Design, Development, Implementation, and Assessment of Drones Used in Public Healthcare.Dylan Cawthorne & Aimee Robbins-van Wynsberghe - 2020 - Science and Engineering Ethics 26 (5):2867-2891.
    The use of drones in public healthcare is suggested as a means to improve efficiency under constrained resources and personnel. This paper begins by framing drones in healthcare as a social experiment where ethical guidelines are needed to protect those impacted while fully realizing the benefits the technology offers. Then we propose an ethical framework to facilitate the design, development, implementation, and assessment of drones used in public healthcare. Given the healthcare context, we structure the framework according to the (...)
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  29.  71
    Ethics of generative AI and manipulation: a design-oriented research agenda.Michael Klenk - 2024 - Ethics and Information Technology 26 (1):1-15.
    Generative AI enables automated, effective manipulation at scale. Despite the growing general ethical discussion around generative AI, the specific manipulation risks remain inadequately investigated. This article outlines essential inquiries encompassing conceptual, empirical, and design dimensions of manipulation, pivotal for comprehending and curbing manipulation risks. By highlighting these questions, the article underscores the necessity of an appropriate conceptualisation of manipulation to ensure the responsible development of Generative AI technologies.
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  30.  26
    Ethics for Robots: how to design a moral algorithm.Derek Leben - 2018 - Routledge.
    Ethics for Robots describes and defends a method for designing and evaluating ethics algorithms for autonomous machines, such as self-driving cars and search and rescue drones. Derek Leben argues that such algorithms should be evaluated by how effectively they accomplish the problem of cooperation among self-interested organisms, and therefore, rather than simulating the psychological systems that have evolved to solve this problem, engineers should be tackling the problem itself, taking relevant lessons from our moral psychology. Leben draws on (...)
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  31. Designing cities and buildings as if they were ethical choices.Jessica Woolliams - 2010 - In Craig Hanks (ed.), Technology and values: essential readings. Malden, MA: Wiley-Blackwell.
     
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  32.  57
    Design, development, and evaluation of an interactive simulator for engineering ethics education (seee).Christopher A. Chung & Michael Alfred - 2009 - Science and Engineering Ethics 15 (2):189-199.
    Societal pressures, accreditation organizations, and licensing agencies are emphasizing the importance of ethics in the engineering curriculum. Traditionally, this subject has been taught using dogma, heuristics, and case study approaches. Most recently a number of organizations have sought to increase the utility of these approaches by utilizing the Internet. Resources from these organizations include on-line courses and tests, videos, and DVDs. While these individual approaches provide a foundation on which to base engineering ethics, they may be limited in (...)
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  33.  39
    Can designing and selling low-quality products be ethical?Willem Bakker & Michael C. Loui - 1997 - Science and Engineering Ethics 3 (2):153-170.
    Whereas previous studies have criticized low-quality products for inadequate safety, this paper considers only safe products, and it examines the ethics of designing and selling low-quality products. Product quality is defined as suitability to a general purpose. The duty that companies owe to consumers is summarized in the Consumer-Oriented Process principle: “to place an increase in the consumer’s quality of life as the primary goal for producing products.” This principle is applied in analyzing the primary ethical justifications for low-quality (...)
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  34.  13
    Important Design Questions for Algorithmic Ethics Consultation.Danton Char - 2022 - American Journal of Bioethics 22 (7):38-40.
    Answering the design questions inherent to building and deploying machine learning tools —based on algorithms that can learn from and make predictions on large data sets without being explicitl...
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  35.  22
    Can designing and selling low-quality products be ethical?I. I. Bakker & Michael C. Loui - 1997 - Science and Engineering Ethics 3 (2):153-170.
    Whereas previous studies have criticized low-quality products for inadequate safety, this paper considers only safe products, and it examines the ethics of designing and selling low-quality products. Product quality is defined as suitability to a general purpose. The duty that companies owe to consumers is summarized in the Consumer-Oriented Process principle: “to place an increase in the consumer’s quality of life as the primary goal for producing products.” This principle is applied in analyzing the primary ethical justifications for low-quality (...)
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  36.  40
    Co-design and implementation research: challenges and solutions for ethics committees.Felicity Goodyear-Smith, Claire Jackson & Trisha Greenhalgh - 2015 - BMC Medical Ethics 16 (1):1-5.
    BackgroundImplementation science research, especially when using participatory and co-design approaches, raises unique challenges for research ethics committees. Such challenges may be poorly addressed by approval and governance mechanisms that were developed for more traditional research approaches such as randomised controlled trials.DiscussionImplementation science commonly involves the partnership of researchers and stakeholders, attempting to understand and encourage uptake of completed or piloted research. A co-creation approach involves collaboration between researchers and end users from the onset, in question framing, research (...) and delivery, and influencing strategy, with implementation and broader dissemination strategies part of its design from gestation. A defining feature of co-creation is its emergent and adaptive nature, making detailed pre-specification of interventions and outcome measures impossible. This methodology sits oddly with ethics committee protocols that require precise pre-definition of interventions, mode of delivery, outcome measurements, and the role of study participants. But the strict requirements of ethics committees were developed for a purpose – to protect participants from harm and help ensure the rigour and transparency of studies. We propose some guiding principles to help square this circle. First, ethics committees should acknowledge and celebrate the diversity of research approaches, both formally and informally ; without active support, their members may not understand or value participatory designs. Second, ground rules should be established for co-design applications and communicated to committee members and stakeholders. Third, the benefits of power-sharing should be recognised and credit given to measures likely to support this important goal, especially in research with vulnerable communities. Co-design is considered best practice, for example, in research involving indigenous peoples in New Zealand, Australia and Canada. (shrink)
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  37.  27
    Ethical Considerations for Outcome‐adaptive Trial Designs: A Clinical Researcher's Perspective.Scott Brian Saxman - 2014 - Bioethics 29 (2):59-65.
    In a typical comparative clinical trial the randomization scheme is fixed at the beginning of the study, and maintained throughout the course of the trial. A number of researchers have championed a randomized trial design referred to as ‘outcome-adaptive randomization.’ In this type of trial, the likelihood of a patient being enrolled to a particular arm of the study increases or decreases as preliminary information becomes available suggesting that treatment may be superior or inferior. While the design merits (...)
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  38.  49
    Investigating ethical issues in engineering design.Ibo Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is an important topic (...)
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  39.  93
    Investigating ethical issues in engineering design.Ibo van de Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is an important topic (...)
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  40.  16
    Design Factors of Ethics and Responsibility in Social Media: A Systematic Review of Literature and Expert Review of Guiding Principles.Kate Sangwon Lee & Huaxin Wei - 2022 - Journal of Media Ethics 37 (3):156-178.
    Large-scale social media services have been challenged due to their lack of ethical principles, which has resulted in allegations of user manipulation such as propagation of fake news related to COVID-19 vaccination and biased algorithmic curations that lead to social polarization. We studied current social media community guidelines and conducted a systematic literature review to identify the core values needed for the establishment of guidelines for responsible social media services. Through expert interviews, a framework and guidelines are proposed for each (...)
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  41.  13
    Selecting Ethical Design Materials to Overcome Choice Paralysis in STEM in advance.Sherri Lynn Conklin - forthcoming - Teaching Ethics.
    Ethical choice paralysis is a major barrier to the implementation of ethical design materials into the technology design process. Choice paralysis seems to result from tacit background assumptions propagated by humanistic modes of critical inquiry. I propose that one way of obviating choice paralysis at the professional level is to educate STEM students on how to select ethical design materials for a project. In order to advance that endeavor, I propose some obligations especially for humanistically trained STEM (...)
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  42.  5
    Book Review: Brad J. Kallenberg, By Design: Ethics, Theology, and the Practice of Engineering. [REVIEW]W. Richard Bowen - 2014 - Studies in Christian Ethics 27 (3):353-357.
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  43.  19
    The Ethics of Humanitarian Innovation: Mapping Values Statements and Engaging with Value-Sensitive Design.Lilia Brahimi, Gautham Krishnaraj, John Pringle, Lisa Schwartz, Dónal O’Mathúna & Matthew Hunt - 2023 - Canadian Journal of Bioethics / Revue canadienne de bioéthique 6 (2):1-10.
    The humanitarian sector continually faces organizational and operational challenges to respond to the needs of populations affected by war, disaster, displacement, and health emergencies. With the goal of improving the effectiveness and efficiency of response efforts, humanitarian innovation initiatives seek to develop, test, and scale a variety of novel and adapted practices, products, and systems. The innovation process raises important ethical considerations, such as appropriately engaging crisis-affected populations in defining problems and identifying potential solutions, mitigating risks, ensuring accountability, sharing benefits (...)
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  44.  25
    Book Review: Brad J. Kallenberg, By Design: Ethics, Theology, and the Practice of Engineering. [REVIEW]W. Richard Bowen - 2014 - Studies in Christian Ethics 27 (3):353-357.
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  45. Robots: ethical by design.Gordana Dodig Crnkovic & Baran Çürüklü - 2012 - Ethics and Information Technology 14 (1):61-71.
    Among ethicists and engineers within robotics there is an ongoing discussion as to whether ethical robots are possible or even desirable. We answer both of these questions in the positive, based on an extensive literature study of existing arguments. Our contribution consists in bringing together and reinterpreting pieces of information from a variety of sources. One of the conclusions drawn is that artifactual morality must come in degrees and depend on the level of agency, autonomy and intelligence of the machine. (...)
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  46.  13
    Designing in Ethics.Jeroen van den Hoven, Seumas Miller & Thomas Pogge (eds.) - 2017 - New York: Cambridge University Press.
    Many of our interactions in the twenty-first century - both good and bad - take place by means of institutions, technology, and artefacts. We inhabit a world of implements, instruments, devices, systems, gadgets, and infrastructures. Technology is not only something that we make, but is also something that in many ways makes us. The discipline of ethics must take this constitutive feature of institutions and technology into account; thus, ethics must in turn be embedded in our institutions and (...)
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  47.  27
    Editorial: Ethics and Engineering Design.Peter-Paul Verbeek & Ibo van de Poel - 2006 - Science, Technology, and Human Values 31 (3):223-236.
    Engineering ethics and science and technology studies have until now developed as separate enterprises. The authors argue that they can learn a lot from each other. STS insights can help make engineering ethics open the black box of technology and help discern ethical issues in engineering design. Engineering ethics, on the other hand, might help STS to overcome its normative sterility. The contributions in this special issue show in various ways how the gap between STS and (...)
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  48.  21
    Participatory design as ethical practice – concepts, reality and conditions.Bernd Carsten Stahl - 2014 - Journal of Information, Communication and Ethics in Society 12 (1):10-13.
    Purpose– The purpose of this paper is to provide a response to Christiansen's paper, Ellen Christiansen “From ‘ethics of the eye’ to ‘ethics of the hand’ by collaborative prototyping”,Journal of Information, Communication and Ethics in Society, Vol. 12 No. 1.Design/methodology/approach– Reflection and critique of Christiansen's position.Findings– The paper raises questions about the conceptual basis, the realisation of participation and the conditions required for participative practice to be more broadly employed.Originality/value– It is an original response.
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  49.  44
    Ethical assurance: a practical approach to the responsible design, development, and deployment of data-driven technologies.Christopher Burr & David Leslie - forthcoming - AI and Ethics.
    This article offers several contributions to the interdisciplinary project of responsible research and innovation in data science and AI. First, it provides a critical analysis of current efforts to establish practical mechanisms for algorithmic auditing and assessment to identify limitations and gaps with these approaches. Second, it provides a brief introduction to the methodology of argument-based assurance and explores how it is currently being applied in the development of safety cases for autonomous and intelligent systems. Third, it generalises this method (...)
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  50. Designing the Health-related Internet of Things: Ethical Principles and Guidelines.Brent Mittelstadt - 2017 - Information 8 (3):77.
    The conjunction of wireless computing, ubiquitous Internet access, and the miniaturisation of sensors have opened the door for technological applications that can monitor health and well-being outside of formal healthcare systems. The health-related Internet of Things (H-IoT) increasingly plays a key role in health management by providing real-time tele-monitoring of patients, testing of treatments, actuation of medical devices, and fitness and well-being monitoring. Given its numerous applications and proposed benefits, adoption by medical and social care institutions and consumers may be (...)
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