Results for 'engineering vs. basic sciences'

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  1.  73
    Identification of matrices in science and engineering.Vincent Fella Hendricks, Arne Jakobsen & Stig Andur Pedersen - 2000 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 31 (2):277-305.
    Engineering science is a scientific discipline that from the point of view of epistemology and the philosophy of science has been somewhat neglected. When engineering science was under philosophical scrutiny it often just involved the question of whether engineering is a spin-off of pure and applied science and their methods. We, however, hold that engineering is a science governed by its own epistemology, methodology and ontology. This point is systematically argued by comparing the different sciences (...)
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  2.  31
    Attitudes and Knowledge About Plagiarism Among University Students: Cross-Sectional Survey at the University of Split, Croatia.Željana Bašić, Ivana Kružić, Ivan Jerković, Ivan Buljan & Ana Marušić - 2019 - Science and Engineering Ethics 25 (5):1467-1483.
    Plagiarism is one of the most severe academic integrity issues. This study examined students’ knowledge of and attitudes towards plagiarism, tested their ability to recognize plagiarism, and explored the association of study levels and attendance in courses dealing with referencing rules and plagiarism with students’ attitudes and knowledge. A cross-sectional online survey was conducted at the University of Split, comprising the students of all schools and study levels. Overall, results indicate the students were not very familiar with referencing rules and (...)
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  3.  56
    Basic science through engineering? Synthetic modeling and the idea of biology-inspired engineering.Tarja Knuuttila & Andrea Loettgers - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):158-169.
    Synthetic biology is often understood in terms of the pursuit for well-characterized biological parts to create synthetic wholes. Accordingly, it has typically been conceived of as an engineering dominated and application oriented field. We argue that the relationship of synthetic biology to engineering is far more nuanced than that and involves a sophisticated epistemic dimension, as shown by the recent practice of synthetic modeling. Synthetic models are engineered genetic networks that are implanted in a natural cell environment. Their (...)
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  4.  32
    Basic science through engineering?: Synthetic modeling and the idea of biology-inspired engineering.Tarja Knuuttila & Andrea Loettgers - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):158-169.
    Synthetic biology is often understood in terms of the pursuit for well-characterized biological parts to create synthetic wholes. Accordingly, it has typically been conceived of as an engineering dominated and application oriented field. We argue that the relationship of synthetic biology to engineering is far more nuanced than that and involves a sophisticated epistemic dimension, as shown by the recent practice of synthetic modeling. Synthetic models are engineered genetic networks that are implanted in a natural cell environment. Their (...)
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  5.  22
    A new Turing test: metaphor vs. nonsense.Irving Massey - 2021 - AI and Society 36 (3):677-684.
    My basic argument is that a computer cannot distinguish between metaphor and nonsense. This would be my new “Turing Test.” I was very fond of a particular Italian poem, but I was told by an Italian friend that it was a hackneyed poem of little worth. I then taught myself to experience the poem alternately, as real poetry and as the silly nonsense that my friend claimed it really was. Having done so, I realized that I could do the (...)
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  6.  9
    Science, Engineering, and Sustainable Development: Cases in Planning, Health, Agriculture, and the Environment.Robert Krueger, Yunus Telliel & Wole Soboyejo (eds.) - 2023 - De Gruyter.
    Science and technology plays a critical role, but not the only role, in realizing the United Nation’s Sustainable Development Goals. Not only must we observe the cultural context of scientific and technological interventions, we must respect and support the innovative capacity of those with different backgrounds. To help understand these concerns, this book puts forth the concept of generative justice in science and technology for development. This book presents community case studies concerning technological interventions in global health, the environment, agriculture, (...)
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  7.  5
    Goodness and Infinity: The Meaning of Death and Life in al-Māturīdī and al-Dabūsī’s Metaphysics.Engin Erdem - 2020 - Kader 18 (2):470-487.
    This article aims to analyze the views of two pioneering Ḥanafī scholars, Abū Manṣūr al- Māturīdī and Abū Zayd al-Dabūsī, on the meaning of death and life in terms of their general doctrine of religion. In the first part, the general framework of Māturīdī and Dabūsī’s evidentialist conception of religion are drawn. In the second part, Māturīdī's views on the meaning of death and life and are explored. In the third part, the views of Abū Zayd al-Dabūsī on the meaning (...)
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  8.  29
    The Prophet of Non-Violence: Spirit of Peace, Compassion & Universality in Islam.Asgharali Engineer - 2011 - Vitasta.
    Section 1. Introduction. The prophet of non-violence -- section 2. Women in Islam. Women in the light of hadith -- Violence against women and religion -- section 3. War and peace in Islam. Theory of war and peace in Islam -- Centrality of jihad in post Qurʼanic period -- Jihad? But what about other verses in the Qurʼan? -- Islam, democracy and violence -- A critical look at Qurʼanic verses on war and violence -- section 4. Justice and compassion in (...)
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  9.  13
    The Place of God in Metaphysics: A Short Analysis of Ibn Sīnā’s Critique of Aristotle.Engin Erdem - 2022 - Studia Philosophica Wratislaviensia 17 (1):53-61.
    This article deals with Ibn Sīnā’s criticisms of Aristotle regarding what the place of God should be in the science of metaphysics. From Aristotle’s point of view, the existence of God is proved by the proof of motion in physics and is held as a subject matter in a science that comes after physics, which is metaphysics. According to him, metaphysics is the most sublime science because God is its subject matter. The most striking criticism against Aristotle’s conception of metaphysics (...)
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  10.  9
    University vs. Research Institute? The Dual Pillars of German Science Production, 1950–2010.Jennifer Dusdal, Justin J. W. Powell, David P. Baker, Yuan Chih Fu, Yahya Shamekhi & Manfred Stock - 2020 - Minerva 58 (3):319-342.
    The world’s third largest producer of scientific research, Germany, is the origin of the research university and the independent, extra-university research institute. Its dual-pillar research policy differentiates these organizational forms functionally: universities specialize in advanced research-based teaching; institutes specialize intensely on research. Over the past decades this policy affected each sector differently: while universities suffered a lingering “legitimation crisis,” institutes enjoyed deepening “favored sponsorship”—financial and reputational advantages. Universities led the nation’s reestablishment of scientific prominence among the highly competitive European and (...)
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  11.  10
    Data politics.Didier Bigo, Engin Isin & Evelyn Ruppert - 2017 - Big Data and Society 4 (2).
    The commentary raises political questions about the ways in which data has been constituted as an object vested with certain powers, influence, and rationalities. We place the emergence and transformation of professional practices such as ‘data science’, ‘data journalism’, ‘data brokerage’, ‘data mining’, ‘data storage’, and ‘data analysis’ as part of the reconfiguration of a series of fields of power and knowledge in the public and private accumulation of data. Data politics asks questions about the ways in which data has (...)
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  12.  7
    Lessons from the small and big screens: Barry B. Luokkala: Exploring science through science fiction, second edition. Springer, 2019, 335 pp, € 34.99.Laura Søvsø Thomasen - 2021 - Metascience 31 (1):105-107.
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  13.  8
    Rüdiger Campe, The Game of Probability: Literature and Calculation from Pascal to Kleist. Stanford: Stanford University Press, 2012. Pp. viii+486. ISBN 978-0-8047-6865-8. $35.00. [REVIEW]Laura Søvsø Thomasen & Henrik Kragh Sørensen - 2014 - British Journal for the History of Science 47 (4):727-728.
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  14. Technology vs. science: The cognitive fallacy.Nucci Pearce M. Rosaria & Pearce David - 1989 - Synthese 81 (3):405-419.
    There are fundamental differences between the explanation of scientific change and the explanation of technological change. The differences arise from fundamental differences between scientific and technological knowledge and basic disanalogies between technological advance and scientific progress. Given the influence of economic markets and industrial and institutional structures on the development of technology, it is more plausible to regard technological change as a continuous and incremental process, rather than as a process of Kuhnian crises and revolutions.
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  15.  40
    Technology vs. Science: The Cognitive Fallacy.M. Rosaria Di Nucci Pearce & David Pearce - 1989 - Synthese 81 (3):405 - 419.
    There are fundamental differences between the explanation of scientific change and the explanation of technological change. The differences arise from fundamental differences between scientific and technological knowledge and basic disanalogies between technological advance and scientific progress. Given the influence of economic markets and industrial and institutional structures on the development of technology, it is more plausible to regard technological change as a continuous and incremental process, rather than as a process of Kuhnian crises and revolutions.
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  16. Filosofii︠a︡ polityky.B. A. Hai︠e︡vsʹkyĭ - 2005 - Kyïv: Vyshcha shkola.
  17.  2
    Filosofii︠a︡ politiki.B. A. Hai︠e︡vsʹkyĭ - 1993 - Kiev: Kievskiĭ universitet im. Tarasa Shevchenko, Politologicheskiĭ t︠s︡entr.
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  18.  12
    Finding new stories in eighteenth-century manuscripts.Laura Søvsø Thomasen - 2022 - Metascience 32 (1):141-143.
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  19.  29
    European integrations and policy of multiculturality in Serbia.Goran Basic - 2006 - Filozofija I Društvo 2006 (29):113-118.
    The issue of the policy of multiculturalism toward ethno-cultural minorities in contemporary Serbia has been reviewed within the project Regional and European Aspects of Integrative Processes in Serbia held by the Institute for Philosophy and Social Theory. The aim of this paper is directed toward examination of theoretical and empirical problems regarding the phenomenon of multiculturalism. In spite of the fact that multiculturalism is one of the striking characteristics of modern life in Serbia our social sciences pay a little (...)
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  20.  44
    The past vs. the tiny: historical science and the abductive arguments for realism.Derek D. Turner - 2004 - Studies in History and Philosophy of Science Part A 35 (1):1-17.
    Scientific realism is fundamentally a view about unobservable things, events, processes, and so on, but things can be unobservable either because they are tiny or because they are past. The familiar abductive arguments for scientific realism lend more justification to scientific realism about the tiny than to realism about the past. This paper examines both the “basic” abductive arguments for realism advanced by philosophers such as Ian Hacking and Michael Devitt, as well as Richard Boyd’s version of the inference (...)
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  21.  41
    Similarity and complementarity of science and engineering.Sunny Auyang - manuscript
    Like science, engineering engages in analysis and synthesis. But whereas scientists tend to break matter down to its most basic building blocks, engineers ultimately aim to assemble myriad components into a complex system. Because the components are heterogeneous, engineers must integrate knowledge in many areas, and multidisciplinary teamwork is common practice. Like science, engineering covers both the general and the particular. But whereas scientists tend to design particular experiments for discovering general laws of nature, engineers tend to (...)
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  22. Introduction to Basic Engineering Concepts: For All Students.Gerald Nadler - 1982 - Bulletin of Science, Technology and Society 2 (3):191-204.
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  23.  33
    “The Ennobling Unity of Science and Technology”: Materials Sciences and Engineering, the Department of Energy, and the Nanotechnology Enigma. [REVIEW]Matthew N. Eisler - 2013 - Minerva 51 (2):225-251.
    The ambiguous material identity of nanotechnology is a minor mystery of the history of contemporary science. This paper argues that nanotechnology functioned primarily in discourses of social, not physical or biological science, the problematic knowledge at stake concerning the economic value of state-supported basic science. The politics of taxonomy in the United States Department of Energy’s Office of Basic Energy Sciences in the 1990s reveals how scientists invoked the term as one of several competing and equally valid (...)
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  24.  74
    Closing the gap between ideal and real behavior: Scientific vs. engineering approaches to normativity.Sergei Gepshtein - 2009 - Philosophical Psychology 22 (1):61 – 75.
    Early normative studies of human behavior revealed a gap between the norms of practical rationality (what humans ought to do) and the actual human behavior (what they do). It has been suggested that, to close the gap between the descriptive and the normative, one has to revise norms of practical rationality according to the Quinean, engineering view of normativity. On this view, the norms must be designed such that they effectively account for behavior. I review recent studies of human (...)
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  25.  7
    Religion and Science: The Basics.Philip Clayton - 2011 - Routledge.
    Religion and science are arguably the two most powerful social forces in the world today. But where religion and science were once held to be compatible, most people now perceive them to be in conflict. This unique book provides the best available introduction to the burning debates in this controversial field. Examining the defining questions and controversies, renowned expert Philip Clayton presents the arguments from both sides, asking readers to decide for themselves where they stand: science _or_ religion, or science (...)
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  26.  6
    Richard Boyd.Some Basic Notions - 1991 - In Richard Boyd, Philip Gasper & J. D. Trout (eds.), The Philosophy of Science. MIT Press.
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  27. Representationalism vs. anti-representationalism: A debate for the sake of appearance.Pim Haselager, Andre´ de Groot & Hans van Rappard - 2003 - Philosophical Psychology 16 (1):5-23.
    In recent years the cognitive science community has witnessed the rise of a new, dynamical approach to cognition. This approach entails a framework in which cognition and behavior are taken to result from complex dynamical interactions between brain, body, and environment. The advent of the dynamical approach is grounded in a dissatisfaction with the classical computational view of cognition. A particularly strong claim has been that cognitive systems do not rely on internal representations and computations. Focusing on this claim, we (...)
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  28.  20
    Engineering Students as Co-creators in an Ethics of Technology Course.Gunter Bombaerts, Karolina Doulougeri, Shelly Tsui, Erik Laes, Andreas Spahn & Diana Adela Martin - 2021 - Science and Engineering Ethics 27 (4):1-26.
    Research on the effectiveness of case studies in teaching engineering ethics in higher education is underdeveloped. To add to our knowledge, we have systematically compared the outcomes of two case approaches to an undergraduate course on the ethics of technology: a detached approach using real-life cases and a challenge-based learning approach with students and stakeholders acting as co-creators. We first developed a practical typology of case-study approaches and subsequently tested an evaluation method to assess the students’ learning experiences and (...)
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  29.  56
    Sustaining Engineering Codes of Ethics for the Twenty-First Century.Diane Michelfelder & Sharon A. Jones - 2013 - Science and Engineering Ethics 19 (1):237-258.
    How much responsibility ought a professional engineer to have with regard to supporting basic principles of sustainable development? While within the United States, professional engineering societies, as reflected in their codes of ethics, differ in their responses to this question, none of these professional societies has yet to put the engineer’s responsibility toward sustainability on a par with commitments to public safety, health, and welfare. In this paper, we aim to suggest that sustainability should be included in the (...)
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  30. justifying what ? - two basic types of knowledge claims revisited.Friedrich Wilhelm Grafe - 2023 - Archive.Org.
    ”It is often assumed that knowledge claims must be justified. But what kind of justification is required for knowledge ? . . . ” (*) -/- presupposition: the kind of epistemic justification depends on the type of the knowledge claim and its respective knowledge claim tradeoff ’vague vs. precise’. -/- procedere: in two - almost purely logical - case studies I account for this tradeoff and question in each case what (if any) were its general outcome wrt justification -/- first (...)
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  31.  54
    How science is applied in technology.Mieke Boon - 2006 - International Studies in the Philosophy of Science 20 (1):27 – 47.
    Unlike basic sciences, scientific research in advanced technologies aims to explain, predict, and (mathematically) describe not phenomena in nature, but phenomena in technological artefacts, thereby producing knowledge that is utilized in technological design. This article first explains why the covering-law view of applying science is inadequate for characterizing this research practice. Instead, the covering-law approach and causal explanation are integrated in this practice. Ludwig Prandtl's approach to concrete fluid flows is used as an example of scientific research in (...)
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  32.  64
    Holism vs. wholism.Karl Pribram - 2006 - World Futures 62 (1 & 2):42 – 46.
    Ervin Laszlo's Science and the Akashic Field claims that there is a shift in Zeitgeist that allows us to view a field that entails coherence among residents of the universe, residents that hitherto have seemed far apart both in space and time. I agree with this claim but suggest that we need to clear up several ambiguities that have hindered understanding and therefore acceptance. Basic to clarification are an understanding of waves, spectra, and the formulations of quantum physics.
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  33.  59
    Feature dependence: A method for reconstructing actual causes in engineering failure investigations.Yafeng Wang - 2022 - Studies in History and Philosophy of Science Part A 96:100-111.
    Engineering failure investigations seek to reconstruct the actual causes of major engineering failures. The investigators need to establish the existence of certain past events and the actual causal relationships that these events bear to the failures in question. In this paper, I examine one method for reconstructing the actual causes of failure events, which I call "feature dependence". The basic idea of feature dependence is that some features of an event are informative about the features of its (...)
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  34.  5
    Science and Technology from Global and Historical Perspectives.Bahattin Karagözoğlu - 2017 - Cham: Imprint: Springer.
    This book provides science and technology ethos to a literate person. It starts with a rather detailed treatment of basic concepts in human values, educational status and domains of education, development of science and technology and their contributions to the welfare of society. It describes ways and means of scientific progresses and technological advancements with their historical perspectives including scientific viewpoints of contributing scientists and technologists. The technical, social, and cultural dimensions are surveyed in relation to acquisition and application (...)
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  35.  5
    Basic Problems in Methodology and Linguistics: Part Three of the Proceedings of the Fifth International Congress of Logic, Methodology and Philosophy of Science, London, Ontario, Canada-1975.Robert E. Butts, Jaakko Hintikka & Methodology Philosophy of Science International Congress of Logic - 1977 - Springer.
    The Fifth International Congress of Logic, Methodology and Philosophy of Science was held at the University of Western Ontario, London, Canada, 27 August to 2 September 1975. The Congress was held under the auspices of the International Union of History and Philosophy of Science, Division of Logic, Methodology and Philosophy of Science, and was sponsored by the National Research Council of Canada and the University of Western Ontario. As those associated closely with the work of the Division over the years (...)
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  36.  68
    Luck vs. Capability? Testing Egalitarian Theories.Akira Inoue, Kazumi Shimizu, Daisuke Udagawa & Yoshiki Wakamatsu - 2019 - Review of Philosophy and Psychology 10 (4):809-823.
    The issue of distributive justice receives substantial amount of attention in our society. On the one hand, we are sensitive to whether and the extent to which people are responsible for being worse off. On the other hand, we are mindful of society’s worst-off members. There has been a debate over luck egalitarianism, which relates to the former concern, and relational egalitarianism, which echoes the latter. By investigating the psychological processes of these two concerns, this paper examines the reliability of (...)
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  37.  28
    Ruby vs. Perl – the Languages of Bioinformatics.Maciej Goliński & Agnieszka Kitlas Golińska - 2013 - Studies in Logic, Grammar and Rhetoric 35 (1):143-155.
    Ruby and Perl are programming languages used in many fields. In this paper we would like to present their usefulness with regard to basic bioinformatic problems. We concentrate on a comparison of widely used Perl and relatively rarely used Ruby to show that Ruby can be a very efficient tool in bioinformatics. Both Perl and Ruby have a built-in regular expressions engine, which is essential in solving many problems in bioinformatics. We present some selected examples: printing the file content, (...)
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  38.  75
    The professional approach to engineering ethics: Five research questions.Michael Davis - 2001 - Science and Engineering Ethics 7 (3):379-390.
    This paper argues that research for engineering ethics should routinely involve philosophers, social scientists, and engineers, and should focus for now on certain basic questions such as: Who is an engineer? What is engineering? What do engineers do? How do they make decisions? And how much control do they actually have over what they do?
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  39.  63
    Thomist vs. Scotist Perspectives on Ontic Structural Realism.Travis Dumsday - 2020 - International Philosophical Quarterly 60 (3):323-337.
    Structural realism has re-emerged as part of the debate between scientific realism and antirealism. Since then it has branched into several different versions, notably epistemic structural realism and ontic structural realism. The latter theory is still an important perspective in the realism/antirealism dialectic; however, its significance has expanded well beyond that debate. Today ontic structural realism is also an important player in the metaphysics of science literature, engaging with a variety of ontological questions. One of these pertains to the (...) categories of ontology, with the proponents of ontic structural realism typically advocating a radical rethinking of how to view substance and relation while calling into question the traditional privileging of the former over and against the latter. In this paper I assess ontic structural realism from the perspective of two major systems: Thomism and Scotism. I argue that the basic commitments of Thomism allow for some surprising convergences with ontic structural realism, while Scotism does not. (shrink)
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  40. The Epistemic Basic Structure.Faik Kurtulmus - 2020 - Journal of Applied Philosophy 37 (5):818-835.
    The epistemic basic structure of a society consists of those institutions that have the greatest impact on individuals’ opportunity to obtain knowledge on questions they have an interest in as citizens, individuals, and public officials. It plays a central role in the production and dissemination of knowledge and in ensuring that people have the capability to assimilate this knowledge. It includes institutions of science and education, the media, search engines, libraries, museums, think tanks, and various government agencies. This article (...)
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  41. Genetic engineering: A major threat to vegetarians.Ron Epstein - manuscript
    Imagine a world in which as part of their basic substances tomatoes contain fish and tobacco, potatoes contain chicken, moths and other insects, and corn contains fireflies. Is this science-fiction? No, these plant-animal hybrids already exist today and may soon be on your supermarket shelves without any special labeling to warn you. Furthermore, in a few years the types of these genetically engineered "vegetables" are sure to increase and may very possibly also include human genes. If you are a (...)
     
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  42. Ontological theory for ontological engineering: Biomedical systems information integration.James M. Fielding, Jonathan Simon, Werner Ceusters & Barry Smith - 2004 - In Fielding James M., Simon Jonathan, Ceusters Werner & Smith Barry (eds.), Proceedings of the Ninth International Conference on the Principles of Knowledge Representation and Reasoning (KR2004), Whistler, BC, 2-5 June 2004. pp. 114–120.
    Software application ontologies have the potential to become the keystone in state-of-the-art information management techniques. It is expected that these ontologies will support the sort of reasoning power required to navigate large and complex terminologies correctly and efficiently. Yet, there is one problem in particular that continues to stand in our way. As these terminological structures increase in size and complexity, and the drive to integrate them inevitably swells, it is clear that the level of consistency required for such navigation (...)
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  43.  50
    Detecting and Dealing with Plagiarism in an Engineering Paper: Beyond CrossCheck—A Case Study. [REVIEW]Xin-xin Zhang, Zhao-lin Huo & Yue-Hong Zhang - 2014 - Science and Engineering Ethics 20 (2):433-443.
    In papers in areas such as engineering and the physical sciences, figures, tables and formulae are the basic elements to communicate the authors’ core ideas, workings and results. As a computational text-matching tool, CrossCheck cannot work on these non-textual elements to detect plagiarism. Consequently, when comparing engineering or physical sciences papers, CrossCheck may return a low similarity index even when plagiarism has in fact taken place. A case of demonstrated plagiarism involving engineering papers with (...)
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  44. Science and Ethics.Bernard E. Rollin - 2006 - New York: Cambridge University Press.
    In Science and Ethics, Bernard Rollin examines the ideology that denies the relevance of ethics to science. Providing an introduction to basic ethical concepts, he discusses a variety of ethical issues that are relevant to science and how they are ignored, to the detriment of both science and society. These include research on human subjects, animal research, genetic engineering, biotechnology, cloning, xenotransplantation, and stem cell research. Rollin also explores the ideological agnosticism that scientists have displayed regarding subjective experience (...)
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  45.  4
    Criteria of success for engineering accident investigations: a question-centered account.Wang Yafeng - 2024 - European Journal for Philosophy of Science 14 (16):1-30.
    Engineering accident investigations are systematic inquiries into the facts and causes of engineering accidents. The aims of an engineering accident investigation include identifying significant truths about an accident, learning lessons to prevent similar future accidents, and authoritatively communicating the investigative results to the stakeholders. An important normative dimension along which an engineering accident investigation can be evaluated is its degree of success in fulfilling these aims. In this paper, I propose criteria for evaluating the degree of (...)
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  46.  52
    Mathematical engineering and mathematical change.Jean-Pierre Marquis - 1999 - International Studies in the Philosophy of Science 13 (3):245 – 259.
    In this paper, I introduce and examine the notion of “mathematical engineering” and its impact on mathematical change. Mathematical engineering is an important part of contemporary mathematics and it roughly consists of the “construction” and development of various machines, probes and instruments used in numerous mathematical fields. As an example of such constructions, I briefly present the basic steps and properties of homology theory. I then try to show that this aspect of contemporary mathematics has important consequences (...)
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  47.  5
    Relativity for scientists and engineers.Ray Skinner - 1969 - Mineola, New York: Dover Publications.
    An ideal choice for undergraduate students of science and engineering, this book presents a thorough exploration of the basic concepts of relativity. The treatment provides more than the typical coverage of introductory texts, and it offers maximum flexibility since many sections may be used independently, in altered order, or omitted altogether. Numerous problems -- most with hints and answers -- make this volume ideal for supplementary reading and self-study. Nearly 300 diagrams illuminate the three-part treatment, which examines special (...)
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  48. Severe testing as a basic concept in a neyman–pearson philosophy of induction.Deborah G. Mayo & Aris Spanos - 2006 - British Journal for the Philosophy of Science 57 (2):323-357.
    Despite the widespread use of key concepts of the Neyman–Pearson (N–P) statistical paradigm—type I and II errors, significance levels, power, confidence levels—they have been the subject of philosophical controversy and debate for over 60 years. Both current and long-standing problems of N–P tests stem from unclarity and confusion, even among N–P adherents, as to how a test's (pre-data) error probabilities are to be used for (post-data) inductive inference as opposed to inductive behavior. We argue that the relevance of error probabilities (...)
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  49.  42
    Artificial intelligence vs COVID-19: limitations, constraints and pitfalls.Wim Naudé - 2020 - AI and Society 35 (3):761-765.
    This paper provides an early evaluation of Artificial Intelligence against COVID-19. The main areas where AI can contribute to the fight against COVID-19 are discussed. It is concluded that AI has not yet been impactful against COVID-19. Its use is hampered by a lack of data, and by too much data. Overcoming these constraints will require a careful balance between data privacy and public health, and rigorous human-AI interaction. It is unlikely that these will be addressed in time to be (...)
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  50.  12
    Basic values in artificial intelligence: comparative factor analysis in Estonia, Germany, and Sweden.Anu Masso, Anne Kaun & Colin van Noordt - forthcoming - AI and Society:1-16.
    Increasing attention is paid to ethical issues and values when designing and deploying artificial intelligence (AI). However, we do not know how those values are embedded in artificial artefacts or how relevant they are to the population exposed to and interacting with AI applications. Based on literature engaging with ethical principles and moral values in AI, we designed an original survey instrument, including 15 value components, to estimate the importance of these values to people in the general population. The article (...)
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