Results for 'Implementation science'

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  1.  19
    Implementation Science and Bioethics: Lessons From European Empirical Bioethics Research?Jonathan Ives, Giles Birchley & Richard Huxtable - 2020 - American Journal of Bioethics 20 (4):80-82.
    Volume 20, Issue 4, May 2020, Page 80-82.
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  2.  17
    Implementation Science Can Do Even More for Translational Ethics.Katherine W. Saylor & Megan C. Roberts - 2020 - American Journal of Bioethics 20 (4):83-85.
    Volume 20, Issue 4, May 2020, Page 83-85.
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  3.  27
    The Cultural Politics of ‘Implementation Science’.Richard Boulton, Jane Sandall & Nick Sevdalis - 2020 - Journal of Medical Humanities 41 (3):379-394.
    Despite the growing profile of ‘implementation science’, its status as a field of study remains ambiguous. Implementation science originates in the evidence-based movement and attempts to broaden the scope of evidence-based medicine to improve ‘clinical effectiveness’ and close the ‘implementation gap’. To achieve this agenda, implementation science draws on methodologies from the social sciences to emphasise coherence between qualitative and quantitative approaches. In so doing, we ask if this is at the expense of (...)
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  4.  8
    Using Implementation Science to Enact Specific Ethical Norms: The Case of Code Status Policy.Emily Shearer & David Magnus - 2020 - American Journal of Bioethics 20 (4):6-7.
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  5.  31
    The “Ought-Is” Problem: An Implementation Science Framework for Translating Ethical Norms Into Practice.Bryan A. Sisk, Jessica Mozersky, Alison L. Antes & James M. DuBois - 2020 - American Journal of Bioethics 20 (4):62-70.
    We argue that once a normative claim is developed, there is an imperative to effect changes based on this norm. As such, ethicists should adopt an “implementation mindset” when formulating...
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  6.  22
    'Wicked problems, community engagement and the need for an implementation science for research ethics.James V. Lavery - 2018 - Journal of Medical Ethics Recent Issues 44 (3):163-164.
    In 1973, Rittel and Webber coined the term ‘wicked problems’, which they viewed as pervasive in the context of social and policy planning. 1 Wicked problems have 10 defining characteristics: they are not amenable to definitive formulation; it is not obvious when they have been solved; solutions are not true or false, but good or bad; there is no immediate, or ultimate, test of a solution; every implemented solution is consequential, it leaves traces that cannot be undone; there are no (...)
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  7.  48
    ‘Wicked problems’, community engagement and the need for an implementation science for research ethics.James V. Lavery - 2018 - Journal of Medical Ethics 44 (3):163-164.
    In 1973, Rittel and Webber coined the term ‘wicked problems’, which they viewed as pervasive in the context of social and policy planning.1 Wicked problems have 10 defining characteristics: they are not amenable to definitive formulation; it is not obvious when they have been solved; solutions are not true or false, but good or bad; there is no immediate, or ultimate, test of a solution; every implemented solution is consequential, it leaves traces that cannot be undone; there are no criteria (...)
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  8.  26
    The Ethical Urgency of Advancing Implementation Science.Mildred Z. Solomon - 2010 - American Journal of Bioethics 10 (8):31-32.
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  9.  8
    Implementing the Objective Structured Clinical Examination (OSCE) in postgraduate education in nursing science—a pilot project to assess ethical competences in nursing practice and research.Christine Dunger & Martin W. Schnell - 2022 - Ethik in der Medizin 34 (3):451-465.
    Background Teaching ethical competencies is an essential component of professional and postgraduate curricula. Developing practical–ethical problem-solving competencies as well as appraising program-specific studies and related research ethics are topics typically addressed. However, assessment of these ethical competencies poses a challenge. Written or oral assessment formats addressing relevant learning objectives is mainly limited to knowledge testing alone, often not capturing relevant skills or attitudes pertinent to those competencies. Aim During the reaccreditation of the masters of science program in Nursing (...) at Witten/Herdecke University, this challenge was addressed by implementation of an innovative examination format for postgraduate education. Procedure For the module “Ethics in nursing practice and research” a format based on the Objective Structured Clinical Examination format was developed. This assessment method incorporates evaluation of acquired skills and attitudes of nursing students. Conclusion The article demonstrates development and adaption of the OSCE format for this purpose. (shrink)
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  10. Teachers implementing writing‐to‐learn strategies in junior secondary science: A case study.Brian Hand & Vaughan Prain - 2002 - Science Education 86 (6):737-755.
     
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  11. Implementing inquiry kit curriculum: Obstacles, adaptations, and practical knowledge development in two middle school science teachers.Mark T. Jones & Charles J. Eick - 2007 - Science Education 91 (3):492-513.
     
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  12. A science teacher's reflections and knowledge growth about STS instruction after actual implementation.Chin‐Chung Tsai - 2002 - Science Education 86 (1):23-41.
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  13.  50
    Implementation of the National Science Foundation's “Broader Impacts”: Efficiency Considerations and Alternative Approaches.Warren W. Burggren - 2009 - Social Epistemology 23 (3):221-237.
    The National Science Foundation (NSF) has, since 1997, attempted to diversify and enrich science research and education in the USA through the Broader Impacts Criterion (BIC), also known as “Criterion Two” or the “Second Criterion”. In doing so, NSF has so successfully integrated BIC into its discovery grant funding programmes that it has become difficult to assess the efficiency (in an economic sense) of BIC activities, as opposed to cataloguing its products (number of trainees, publications, etc.). Moreover, current (...)
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  14. Science-Technology-Society Education Implementation in the State of Florida.D. Kumar & P. Fritzer - 1998 - Journal of Social Studies Research 22:14-18.
  15. Science of the Phenomenology of spirit" : Hegel's program and its implementation.Hans-Friedrich Fulda - 2008 - In Dean Moyar & Michael Quante (eds.), Hegel's Phenomenology of Spirit: A Critical Guide. New York: Cambridge University Press.
     
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  16.  9
    The Implementation and Evaluation of a Media Literacy Intervention About PAES Use in Sport Science Students.Luca Mallia, Andrea Chirico, Arnaldo Zelli, Federica Galli, Tommaso Palombi, Laura Bortoli, Cristiana Conti, Pierluigi Diotaiuti, Claudio Robazza, Federico Schena, Francesca Vitali, Thomas Zandonai & Fabio Lucidi - 2020 - Frontiers in Psychology 11.
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  17.  42
    "Science of the phenomenology of spirit": Hegel's program and its implementation.Hans Friedrich Fulda - unknown
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  18. On implementing a computation.David J. Chalmers - 1994 - Minds and Machines 4 (4):391-402.
    To clarify the notion of computation and its role in cognitive science, we need an account of implementation, the nexus between abstract computations and physical systems. I provide such an account, based on the idea that a physical system implements a computation if the causal structure of the system mirrors the formal structure of the computation. The account is developed for the class of combinatorial-state automata, but is sufficiently general to cover all other discrete computational formalisms. The (...) relation is non-vacuous, so that criticisms by Searle and others fail. This account of computation can be extended to justify the foundational role of computation in artificial intelligence and cognitive science. (shrink)
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  19.  64
    Mutualism in the human sciences: Towards the implementation of a theory.Arthur Still & James M. M. Good - 1992 - Journal for the Theory of Social Behaviour 22 (2):105–128.
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  20.  29
    Being there: Why implementation matters to cognitive science.Andy Clark - 1987 - AI Review 1:231-44.
  21.  70
    Dewey, Implementation, and Creating a Democratic Civic University.Ira Harkavy - 2023 - The Pluralist 18 (1):49-75.
    In lieu of an abstract, here is a brief excerpt of the content:Dewey, Implementation, and Creating a Democratic Civic UniversityIra HarkavyThinking begins in... a forked-road situation, a situation that is ambiguous, that presents a dilemma, that poses alternatives.—John Dewey (How We Think 122)The social philosopher, dwelling in the region of his concepts, “solves” problems by showing the relationship of ideas, instead of helping men solve problems in the concrete by supplying them hypotheses to be used and tested in projects (...)
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  22.  21
    Comparing Varieties of Agency Theory in Political Science, Economics, and Sociology: An Illustration from State Policy Implementation.Edgar Kiser - 1991 - Sociological Theory 17 (2):146-70.
    As rational choice theory has moved from economics into political science and sociology, it has been dramatically transformed. The intellectual diffusion of agency theory illustrates this process. Agency theory is a general model of social relations involving the delegation of authority, and generally resulting in problems of control, which has been applied to a broad range of substantive contexts. This paper analyzes applications of agency theory to state policy implementation in economics, political science, and sociology. After documenting (...)
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  23.  31
    Toward Implementing the ADC Model of Moral Judgment in Autonomous Vehicles.Veljko Dubljević - 2020 - Science and Engineering Ethics 26 (5):2461-2472.
    Autonomous vehicles —and accidents they are involved in—attest to the urgent need to consider the ethics of artificial intelligence. The question dominating the discussion so far has been whether we want AVs to behave in a ‘selfish’ or utilitarian manner. Rather than considering modeling self-driving cars on a single moral system like utilitarianism, one possible way to approach programming for AI would be to reflect recent work in neuroethics. The agent–deed–consequence model :3–20, 2014a, Behav Brain Sci 37:487–488, 2014b) provides a (...)
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  24.  24
    Incompatible Implementations of Physical Symbol Systems.Peter Beim Graben - 2004 - Mind and Matter 2 (2):29-51.
    Classical cognitive science assumes that intelligently behaving systems must be symbol processors that are implemented in physical systems such as brains or digital computers. By contrast, connectionists suppose that symbol manipulating systems could be approximations of neural networks dynamics. Both classicists and connectionists argue that symbolic computation and subsymbolic dynamics are incompatible, though on different grounds. While classicists say that connectionist architectures and symbol processors are either incompatible or the former are mere implementations of the latter, connectionists reply that (...)
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  25.  72
    Implementation as Resemblance.André Curtis-Trudel - 2021 - Philosophy of Science 88 (5):1021-1032.
    This article advertises a new account of computational implementation. According to the resemblance account, implementation is a matter of resembling a computational architecture. The resemblance account departs from previous theories by denying that computational architectures are exhausted by their formal, mathematical features. Instead, they are taken to be permeated with causality, spatiotemporality, and other nonmathematical features. I argue that this approach comports well with computer scientific practice and offers a novel response to so-called triviality arguments.
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  26.  14
    I Know I Can, but Do I Have the Time? The Role of Teachers’ Self-Efficacy and Perceived Time Constraints in Implementing Cognitive-Activation Strategies in Science.Nani Teig, Ronny Scherer & Trude Nilsen - 2019 - Frontiers in Psychology 10.
    Considerable research has demonstrated that teachers’ self-efficacy plays a major role in implementing instructional practices in classroom lessons. Only few studies, however, have examined the interplay between how teachers’ self-efficacy and the challenges that lie outside their influence are related to their implementation of cognitive-activation strategies (CAS), especially in science classrooms. Using the Trends in Mathematics and Science Study (TIMSS) 2015 data from Grades 4, 5, 8, and 9, we explored the extent to which teachers’ self-efficacy in (...)
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  27. Science Communication and the Problematic Impact of Descriptive Norms.Uwe Peters - 2023 - British Journal for the Philosophy of Science 74 (3):713-738.
    When scientists or science reporters communicate research results to the public, this often involves ethical and epistemic risks. One such risk arises when scientific claims cause cognitive or behavioural changes in the audience that contribute to the self-fulfilment of these claims. I argue that the ethical and epistemic problems that such self-fulfilment effects may pose are much broader and more common than hitherto appreciated. Moreover, these problems are often due to a specific psychological phenomenon that has been neglected in (...)
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  28.  46
    A cognitive theory of graphical and linguistic reasoning: Logic and implementation. Cognitive science.Keith Stenning & Jon Oberlander - 1995 - Cognitive Science 19 (1):97-140.
    We discuss external and internal graphical and linguistic representational systems. We argue that a cognitive theory of peoples' reasoning performance must account for (a) the logical equivalence of inferences expressed in graphical and linguistic form; and (b) the implementational differences that affect facility of inference. Our theory proposes that graphical representations limit abstraction and thereby aid processibility. We discuss the ideas of specificity and abstraction, and their cognitive relevance. Empirical support comes from tasks (i) involving and (ii) not involving the (...)
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  29.  41
    Implementation of Clinical Ethics Consultation in German Hospitals.Maximilian Schochow, Dajana Schnell & Florian Steger - 2019 - Science and Engineering Ethics 25 (4):985-991.
    In order to build on the information that was obtained in the course of the first study, a follow-up survey was conducted first by phone and subsequently in a written form between August and October 2014. We contacted 1.858 hospitals in all of Germany for the follow-up survey by phone. In cases where a hospital had not participated in the first study, the willingness to participate in the follow-up survey was established in advance. The survey’s dispatch was ensured in the (...)
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  30.  88
    Implementation and innovation in total synthesis.William Goodwin - 2008 - Foundations of Chemistry 10 (3):177-186.
    This article investigates how understanding the theory of organic chemistry facilitates the total synthesis of organic compounds. After locating the philosophical significance of this question within the methodology or epistemology of applied science, I summarize the results of previous work on this issue—roughly that theoretical organic chemistry underwrites a sequence of heuristic policies that help to isolate plausible synthetic routes from the array of possibilities provided by structural or descriptive organic chemistry. While this prior account makes a solid start, (...)
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  31.  24
    Implementing Biosecurity Education: Approaches, Resources and Programmes.Masamichi Minehata, Judi Sture, Nariyoshi Shinomiya & Simon Whitby - 2013 - Science and Engineering Ethics 19 (4):1473-1486.
    This paper aims to present possible approaches, resources and programmes to introduce the topic of biosecurity to life scientists and engineers at the higher education level. Firstly, we summarise key findings from a number of international surveys on biosecurity education that have been carried out in the United States, Europe, Israel and the Asia–Pacific region. Secondly, we describe the development of our openly-accessible education resource, illustrating the scope and content of these materials. Thirdly, we report on actual cases of biosecurity (...)
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  32.  44
    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 design (...)
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  33.  20
    Implementing the Triple Helix Model: Means-Ends Decoupling at the State Level?Myroslava Hladchenko & Romulo Pinheiro - 2019 - Minerva 57 (1):1-22.
    The Triple Helix is a global model originating in developed economies but less developed countries have also made attempts to implement it into their national contexts. Meanwhile, the national context can be characterised by means-ends decoupling at the state level which implies that policies and practices of the state are disconnected from its core goal of creating public welfare. It refers to the oligarchic economies in which the state is captured by exploitative, rent-seeking oligarchies in business and politics. Ukraine is (...)
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  34. Implementation is Semantic Interpretation.Willam J. Rapaport - 1999 - The Monist 82 (1):109-130.
    What is the computational notion of “implementation”? It is not individuation, instantiation, reduction, or supervenience. It is, I suggest, semantic interpretation.
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  35. The Implementation, Interpretation, and Justification of Likelihoods in Cosmology.C. D. McCoy - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 62:19-35.
    I discuss the formal implementation, interpretation, and justification of likelihood attributions in cosmology. I show that likelihood arguments in cosmology suffer from significant conceptual and formal problems that undermine their applicability in this context.
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  36.  55
    Implementing a Clinical Ethics Needs Assessment Survey: Results of a Pilot Study (Part 2 of 2). [REVIEW]Andrea Frolic, Sandra Andreychuk, Wendy Seidlitz, Angela Djuric-Paulin, Barb Flaherty, Barb Jennings & Donna Peace - 2013 - HEC Forum 25 (1):61-78.
    This paper details the implementation of the Clinical Ethics Needs Assessment Survey (CENAS) through a pilot study in five units within Hamilton Health Sciences. We describe how these pilot sites were selected, how we implemented the survey, the significant results and our interpretation of the findings. The primary goal of this paper is to share our experiences using this tool, specifically the challenges we encountered conducting a staff ethics needs assessment across different units in a large teaching hospital, and (...)
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  37.  22
    Simulation as an ethical imperative and epistemic responsibility for the implementation of medical guidelines in health care.Luciana Garbayo & James Stahl - 2017 - Medicine, Health Care and Philosophy 20 (1):37-42.
    Guidelines orient best practices in medicine, yet, in health care, many real world constraints limit their optimal realization. Since guideline implementation problems are not systematically anticipated, they will be discovered only post facto, in a learning curve period, while the already implemented guideline is tweaked, debugged and adapted. This learning process comes with costs to human health and quality of life. Despite such predictable hazard, the study and modeling of medical guideline implementation is still seldom pursued. In this (...)
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  38.  36
    Implementing AI Ethics in the Design of AI-assisted Rescue Robots.Désirée Martin, Michael W. Schmidt & Rafaela Hillerbrand - 2023 - Ieee International Symposium on Ethics in Engineering, Science, and Technology (Ethics).
    For implementing ethics in AI technology, there are at least two major ethical challenges. First, there are various competing AI ethics guidelines and consequently there is a need for a systematic overview of the relevant values that should be considered. Second, if the relevant values have been identified, there is a need for an indicator system that helps assessing if certain design features are positively or negatively affecting their implementation. This indicator system will vary with regard to specific forms (...)
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  39.  34
    Sciences From Below: Feminisms, Postcolonialities, and Modernities.Sandra Harding - 2008 - Duke University Press.
    In _Sciences from Below_, the esteemed feminist science studies scholar Sandra Harding synthesizes modernity studies with progressive tendencies in science and technology studies to suggest how scientific and technological pursuits might be more productively linked to social justice projects around the world. Harding illuminates the idea of multiple modernities as well as the major contributions of post-Kuhnian Western, feminist, and postcolonial science studies. She explains how these schools of thought can help those seeking to implement progressive social (...)
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  40. The physics of implementing logic: Landauer's principle and the multiple-computations theorem.Meir Hemmo & Orly Shenker - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 68:90-105.
    This paper makes a novel linkage between the multiple-computations theorem in philosophy of mind and Landauer’s principle in physics. The multiple-computations theorem implies that certain physical systems implement simultaneously more than one computation. Landauer’s principle implies that the physical implementation of “logically irreversible” functions is accompanied by minimal entropy increase. We show that the multiple-computations theorem is incompatible with, or at least challenges, the universal validity of Landauer’s principle. To this end we provide accounts of both ideas in terms (...)
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  41. Developing a program to improve science education in Pakistan: A six year implementation cycle.John C. Hill & Sardar A. Tanveer - 1990 - Science Education 74 (2):241-251.
     
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  42.  17
    Undone Science: Charting Social Movement and Civil Society Challenges to Research Agenda Setting.David J. Hess, Gwen Ottinger, Joanna Kempner, Jeff Howard, Sahra Gibbon & Scott Frickel - 2010 - Science, Technology, and Human Values 35 (4):444-473.
    ‘‘Undone science’’ refers to areas of research that are left unfunded, incomplete, or generally ignored but that social movements or civil society organizations often identify as worthy of more research. This study mobilizes four recent studies to further elaborate the concept of undone science as it relates to the political construction of research agendas. Using these cases, we develop the argument that undone science is part of a broader politics of knowledge, wherein multiple and competing groups struggle (...)
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  43. Implementation of Moral Uncertainty in Intelligent Machines.Kyle Bogosian - 2017 - Minds and Machines 27 (4):591-608.
    The development of artificial intelligence will require systems of ethical decision making to be adapted for automatic computation. However, projects to implement moral reasoning in artificial moral agents so far have failed to satisfactorily address the widespread disagreement between competing approaches to moral philosophy. In this paper I argue that the proper response to this situation is to design machines to be fundamentally uncertain about morality. I describe a computational framework for doing so and show that it efficiently resolves common (...)
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  44. Issues and problems related to science curriculum implementation in Pakistan: Perceptions of three Pakistani curriculum managers.Peter John Aubusson & Kevin Watson - 1999 - Science Education 83 (5):603-620.
  45.  55
    Implementing the netherlands code of conduct for scientific practice—a case study.Daan Schuurbiers, Patricia Osseweijer & Julian Kinderlerer - 2009 - Science and Engineering Ethics 15 (2):213-231.
    Widespread enthusiasm for establishing scientific codes of conduct notwithstanding, the utility of such codes in influencing scientific practice is not self-evident. It largely depends on the implementation phase following their establishment—a phase which often receives little attention. The aim of this paper is to provide recommendations for guiding effective implementation through an assessment of one particular code of conduct in one particular institute. Based on a series of interviews held with researchers at the Department of Biotechnology of Delft (...)
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  46.  47
    Implementing Ethics in Healthcare AI-Based Applications: A Scoping Review.Robyn Clay-Williams, Elizabeth Austin & Magali Goirand - 2021 - Science and Engineering Ethics 27 (5):1-53.
    A number of Artificial Intelligence (AI) ethics frameworks have been published in the last 6 years in response to the growing concerns posed by the adoption of AI in different sectors, including healthcare. While there is a strong culture of medical ethics in healthcare applications, AI-based Healthcare Applications (AIHA) are challenging the existing ethics and regulatory frameworks. This scoping review explores how ethics frameworks have been implemented in AIHA, how these implementations have been evaluated and whether they have been successful. (...)
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  47. Beyond Formal Structure: A Mechanistic Perspective on Computation and Implementation.Marcin Miłkowski - 2011 - Journal of Cognitive Science 12 (4):359-379.
    In this article, after presenting the basic idea of causal accounts of implementation and the problems they are supposed to solve, I sketch the model of computation preferred by Chalmers and argue that it is too limited to do full justice to computational theories in cognitive science. I also argue that it does not suffice to replace Chalmers’ favorite model with a better abstract model of computation; it is necessary to acknowledge the causal structure of physical computers that (...)
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  48. Characteristics of senior high school science teachers in Israel as related to their educational goals and their perception of the implemented curriculum.Pinchas Tamir - 1990 - Science Education 74 (1):53-67.
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  49. Implementing a Computing System: A Pluralistic Approach.Syed AbuMusab - 2023 - Global Philosophy 33 (1):1-19.
    In chapter eleven of "On The Foundation of Computing," Primiero takes on the implementation debate in computer science. He contrasts his theory with two other views—the Semantic and the specification—artifact. In this paper, I argue that there is a way to fine-tune the implementation concept further. Firstly, contrary to Primiero, I claim it is problematic to separate the implementation relationship from the conditions which make it correct. Secondly, by taking a pluralistic approach to implementation, I (...)
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  50.  28
    Landscape of Machine Implemented Ethics.Vivek Nallur - 2020 - Science and Engineering Ethics 26 (5):2381-2399.
    This paper surveys the state-of-the-art in machine ethics, that is, considerations of how to implement ethical behaviour in robots, unmanned autonomous vehicles, or software systems. The emphasis is on covering the breadth of ethical theories being considered by implementors, as well as the implementation techniques being used. There is no consensus on which ethical theory is best suited for any particular domain, nor is there any agreement on which technique is best placed to implement a particular theory. Another unresolved (...)
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