Results for 'Engineering functions'

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  1.  12
    Self-Managed 5G Networks 1.Jorge Martín-Pérez, Lina Magoula, Kiril Antevski, Carlos Guimarães, Jorge Baranda, Carla Fabiana Chiasserini, Andrea Sgambelluri, Chrysa Papagianni, Andrés García-Saavedra, Ricardo Martínez, Francesco Paolucci, Sokratis Barmpounakis, Luca Valcarenghi, Claudio EttoreCasetti, Xi Li, Carlos J. Bernardos, Danny De Vleeschauwer, Koen De Schepper, Panagiotis Kontopoulos, Nikolaos Koursioumpas, Corrado Puligheddu, Josep Mangues-Bafalluy & Engin Zeydan - 2021 - In Communication Networks and Service Management in the Era of Artificial Intelligence and Machine Learning. Wiley. pp. 69-100.
    Meeting 5G high bandwidth rates, ultra-low latencies, and high reliabilities requires of network infrastructures that automatically increase/decrease the resources based on their customers’ demand. An autonomous and dynamic management of a 5G network infrastructure represents a challenge, as any solution must account for the radio access network, data plane traffic, wavelength allocation, network slicing, and network functions’ orchestration. Furthermore, federation among administrative domains (ADs) must be considered in the network management. Given the increased dynamicity of 5G networks, artificial intelligence/machine (...)
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  2. If engineering function is a family resemblance concept: Assessing three formalization strategies.Massimiliano Carrara, Pawel Garbacz & Pieter E. Vermaas - 2011 - Applied ontology 6 (2):141-163.
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  3.  50
    The physical connection: engineering function ascriptions to technical artefacts and their components.Pieter E. Vermaas - 2006 - Studies in History and Philosophy of Science Part A 37 (1):62-75.
    In this paper I evaluate the ICE-theory of function ascriptions to technical artefacts as proposed by Houkes and Vermaas, 2004a and Houkes and Vermaas, 2004b. This account adds non-structural concepts to functional description of artefacts, which are typically not employed by engineers when they ascribe functions to artefacts. The aim of this paper is to analyse to what extent the ICE-theory can reproduce the engineering view that artefacts have their functions in virtue of their physicochemical structure. It (...)
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  4.  34
    The Conceptual Elusiveness of Engineering Functions.Pieter E. Vermaas, Dingmar van Eck & Peter Kroes - 2013 - Philosophy and Technology 26 (2):159-185.
    In this paper, we describe the conceptual elusiveness of the notion of function as used in engineering practice. We argue that it should be accepted as an ambiguous notion, and then review philosophical argumentations in which engineering functions occur in order to identify the consequences of this ambiguity. Function is a key notion in engineering, yet is used by engineers systematically in a variety of meanings. First, we demonstrate that this ambiguous use is rational for engineers (...)
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  5.  64
    The Conceptual Elusiveness of Engineering Functions[REVIEW]Pieter E. Vermaas, Dingmar Eck & Peter Kroes - 2013 - Philosophy and Technology 26 (2):159-185.
    In this paper, we describe the conceptual elusiveness of the notion of function as used in engineering practice. We argue that it should be accepted as an ambiguous notion, and then review philosophical argumentations in which engineering functions occur in order to identify the consequences of this ambiguity. Function is a key notion in engineering, yet is used by engineers systematically in a variety of meanings. First, we demonstrate that this ambiguous use is rational for engineers (...)
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  6. Function-Based Conceptual Engineering and the Authority Problem.Matthieu Queloz - 2022 - Mind 131 (524):1247-1278.
    In this paper, I identify a central problem for conceptual engineering: the problem of showing concept-users why they should recognise the authority of the concepts advocated by engineers. I argue that this authority problem cannot generally be solved by appealing to the increased precision, consistency, or other theoretical virtues of engineered concepts. Outside contexts in which we anyway already aim to realise theoretical virtues, solving the authority problem requires engineering to take a functional turn and attend to the (...)
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  7.  46
    Functional Decomposition: On Rationality and Incommensurability in Engineering.D. Van Eck - unknown
    The concept of technical function is a key concept to describe technical artifacts and artifacts-to-be-designed. Engineers often give such descriptions in terms of functional decomposition models, which represent relationships between functions and sets of other functions. Despite the importance of the concept of function there is no consensus among engineers about its meaning. Models of functional decomposition are likewise conceptually divergent. Although this conceptual diversity hampers information exchange between engineers, they accept and maintain it. Engineers do not, by (...)
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  8.  89
    Deflating the functional turn in conceptual engineering.Jared Riggs - 2021 - Synthese 199 (3-4):11555-11586.
    Conceptual engineers have recently turned to the notion of conceptual functions to do a variety of explanatory work. Functions are supposed to explain what speakers are debating about in metalinguistic negotiations, to capture when two concepts are about the same thing, and to help guide our normative inquiries into which concepts we should use. In this paper, I argue that this recent “functional turn” should be deflated. Contra most interpreters, we should not try to use a substantive notion (...)
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  9. Metaphysics, Function and the Engineering of Life: the Problem of Vitalism.Charles T. Wolfe, Bohang Chen & Cécilia Bognon-Küss - 2018 - Kairos 20 (1):113-140.
    Vitalism was long viewed as the most grotesque view in biological theory: appeals to a mysterious life-force, Romantic insistence on the autonomy of life, or worse, a metaphysics of an entirely living universe. In the early twentieth century, attempts were made to present a revised, lighter version that was not weighted down by revisionary metaphysics: “organicism”. And mainstream philosophers of science criticized Driesch and Bergson’s “neovitalism” as a too-strong ontological commitment to the existence of certain entities or “forces”, over and (...)
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  10.  26
    Functions as Epistemic Highlighters: An Engineering Account of Technical, Biological and Other Functions.Pieter E. Vermaas & Wybo Houkes - 2013 - In Philippe Huneman (ed.), Functions: Selection and Mechanisms. Springer. pp. 213--231.
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  11.  18
    An engineered glove for investigating the neural correlates of finger movements using functional magnetic resonance imaging.Laura Bonzano, Andrea Tacchino, Luca Roccatagliata, Matilde Inglese, Giovanni Luigi Mancardi, Antonio Novellino & Marco Bove - 2015 - Frontiers in Human Neuroscience 9.
  12.  39
    How to Engineer a Human Being: Passions and Functional Explanation in Descartes.Amy M. Schmitter - 2007 - In Janet Broughton & John Carriero (eds.), A Companion to Descartes. Oxford, UK: Blackwell. pp. 426-444.
    This chapter contains section titled: The Rejection of Teleology and Its Limits Reconciling God's Goodness with Misjudgment and Misperception The Clock Analogy and Engineering the Body The Special Place of the Passions The Structure of the Passions of the Soul The Need for a General Remedy Notes References and Further Reading.
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  13. Reverse Engineering Epistemic Evaluations.Sinan Dogramaci - 2012 - Philosophy and Phenomenological Research 84 (3):513-530.
    This paper begins by raising a puzzle about what function our use of the word ‘rational’ could serve. To solve the puzzle, I introduce a view I call Epistemic Communism: we use epistemic evaluations to promote coordination among our basic belief-forming rules, and the function of this is to make the acquisition of knowledge by testimony more efficient.
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  14.  19
    Improving Conceptual Engineering by Differentiating the Functions of Concepts.Rogelio Miranda Vilchis - 2022 - Logos and Episteme 13 (4):359-379.
    The leading assumption of this paper is that we can improve the methodology of conceptual engineering if we differentiate between the different functions of our concepts. There is a growing body of research that emphasizes the revisionist virtues of conceptual engineering against the descriptive task of conceptual analysis. Yet, it also has faced severe critiques. Among the difficulties raised are the problems of conceptual identification and continuity. That is why several philosophers are trying to resolve these problems (...)
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  15.  77
    The good, the bad and the insignificant—assessing concept functions for conceptual engineering.Sigurd Jorem - 2022 - Synthese 200 (2):1-20.
    Many theorists of conceptual engineering appeal to the functions, roles, purposes or aims of concepts to articulate how conceptual engineering ought to be done. The functional approach to conceptual engineering is well-motivated: It promises a good account of the limits of revision, and of what makes some concept good. In this paper, I raise a problem for the functional approach which concerns the existence of harmful and methodologically insignificant concept functions. I examine whether we can (...)
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  16.  27
    Conceptual engineering, predictive processing, and a new implementation problem.Guido Löhr & Christian Michel - 2024 - Mind and Language 39 (2):201-219.
    According to predictive processing, an increasingly influential paradigm in cognitive science, the function of the brain is to minimize the prediction error of its sensory input. Conceptual engineering is the practice of assessing and changing concepts or word meanings. We contribute to both strands of research by proposing the first cognitive account of conceptual engineering, using the predictive processing framework. Our model reveals a new kind of implementation problem as prediction errors are only minimized if enough agents embrace (...)
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  17.  12
    The Role of Functionality in the Mental Representations of Engineering Students: Some Differences in the Early Stages of Expertise.Jarrod Moss, Kenneth Kotovsky & Jonathan Cagan - 2006 - Cognitive Science 30 (1):65-93.
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  18.  10
    Engineering Engineering: its Role and Function in Human Society. Edited by William H. Davenport and Daniel Rosenthal. New York: Pergamon Press. 1967. Pp. xii + 284. 63s. [REVIEW]R. A. Buchanan - 1969 - British Journal for the History of Science 4 (4):415-415.
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  19.  74
    Program Verification and Functioning of Operative Computing Revisited: How about Mathematics Engineering[REVIEW]Uri Pincas - 2011 - Minds and Machines 21 (2):337-359.
    The issue of proper functioning of operative computing and the utility of program verification, both in general and of specific methods, has been discussed a lot. In many of those discussions, attempts have been made to take mathematics as a model of knowledge and certitude achieving, and accordingly infer about the suitable ways to handle computing. I shortly review three approaches to the subject, and then take a stance by considering social factors which affect the epistemic status of both mathematics (...)
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  20. Agent causation, functional explanation, and epiphenomenal engines: Can conscious mental events be causally efficacious?Stuart Silvers - 2003 - Journal of Mind and Behavior 24 (2):197-228.
    Agent causation presupposes that actions are behaviors under the causal control of the agent’s mental states, its beliefs and desires. Here the idea of conscious causation in causal explanations of actions is examined, specifically, actions said to be the result of conscious efforts. Causal–functionalist theories of consciousness purport to be naturalistic accounts of the causal efficacy of consciousness. Flanagan argues that his causal–functionalist theory of consciousness satisfies naturalistic constraints on causation and that his causal efficacy thesis is compatible with results (...)
     
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  21. Conceptual Engineering: For What Matters.Sebastian Köhler & Herman Veluwenkamp - forthcoming - Mind:fzad064.
    Conceptual engineering is the enterprise of evaluating and improving our representational devices. But how should we conduct this enterprise? One increasingly popular answer to this question proposes that conceptual engineering should proceed in terms of the functions of our representational devices. In this paper, we argue that the best way of understanding this suggestion is in terms of normative functions, where normative functions of concepts are, roughly, things that they allow us to do that matter (...)
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  22.  84
    Functions and Health at the Interface of Biology and Technology.Elselijn Kingma - 2020 - Noûs 54 (1):182-203.
    Synthetic biology promises to eliminate the distinction between biology and engineering by delivering a philosophically interesting new kind of entity: a biological organism that is wholly designed and constructed by humans. The possibility of such organisms raises interesting questions in three domains: the analysis of (1) biological functions, (2) engineering functions, and (3) health and disease. This paper identifies and systematically answers these questions. This does not only establish how we should think about functions and (...)
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  23.  24
    On the Structure and Epistemic Value of Function Ascriptions in Biology and Engineering Sciences.Erik Weber, Dingmar van Eck & Julie Mennes - 2019 - Foundations of Science 24 (3):559-581.
    In this paper we chart epistemological similarities between shared function talk in biology and the engineering sciences, focusing on the notions of biological advantage function and technical advantage function. We start by showing that biological advantage function ascriptions are common in biology and that technical advantage function ascriptions are common in engineering science. We then proceed to show that these ascriptions have a very similar structure and that their epistemic value also is similar: both biological advantage function and (...)
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  24.  63
    Is engineering a profession everywhere?Michael Davis - 2009 - Philosophia 37 (2):211-225.
    Though this paper is mostly about a sense of “profession” common in much of the West, it explains how the term might apply in any country (especially how the profession of engineering differs from the function, discipline, and occupation of engineering). To do that, I have to explain the connection between “profession” (in my preferred sense) and another hard-to-translate term, “code of ethics” (in the sense it has in the expression “code of engineering ethics”). To understand (...) (or any other occupation) as a profession is to adopt a certain conception of it, one neither old nor (yet) universal. With that conception in hand, it should be possible for social science to answer the question posed in the title. (shrink)
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  25.  31
    Conceptual Engineering and Philosophy of Technology: Amelioration or Adaptation?Jeroen Hopster & Guido Löhr - 2023 - Philosophy and Technology 36 (4):1-17.
    Conceptual Engineering (CE) is thought to be generally aimed at ameliorating deficient concepts. In this paper, we challenge this assumption: we argue that CE is frequently undertaken with the orthogonal aim of _conceptual adaptation_. We develop this thesis with reference to the interplay between technology and concepts. Emerging technologies can exert significant pressure on conceptual systems and spark ‘conceptual disruption’. For example, advances in Artificial Intelligence raise the question of whether AIs are agents or mere objects, which can be (...)
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  26.  67
    Conceptual engineering via experimental philosophy.Jennifer Nado - 2021 - Inquiry: An Interdisciplinary Journal of Philosophy 64 (1-2):76-96.
    ABSTRACT Conceptual engineering provides a prima facie attractive alternative to traditional, conceptual analysis based approaches to philosophical method – particularly for those with doubts about the epistemic merits of intuition. As such, it seems to be a natural fit for those persuaded by the critiques of intuition offered by experimental philosophy. Recently, a number of authors [Schupbach, J. 2015. “Experimental Explication.” Philosophy and Phenomenological Research 94 : 672–710; Shepherd, J., and J. Justus. 2015. “X-Phi and Carnapian Explication.” Erkenntnis 80 (...)
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  27. Conceptual engineering, truth, and efficacy.Jennifer Nado - 2019 - Synthese 198 (Suppl 7):1507-1527.
    Traditional views on philosophical methodology characterize our primary philosophical goal as production of a successful conceptual analysis. The notion of conceptual analysis, however, faces several challenges—from experimental philosophy to more traditional worries such as the paradox of analysis. This paper explores an alternate approach, commonly called conceptual engineering, which aims at recommending conceptual revisions. An important question for the conceptual engineer is as follows: what counts as a case of successful conceptual engineering? What sorts of revisions are permitted, (...)
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  28.  11
    Re-Engineering the Human Resource Strategies Amid and Post-Pandemic Crisis: Probing into the Moderated Mediation Model of the High-Performance Work Practices and Employee's Outcomes.Ma Zhiqiang, Hira Salah ud din Khan, Muhammad Salman Chughtai & Li Mingxing - 2021 - Frontiers in Psychology 12:710266.
    By incorporating the conservation of resource theory, this study examines how high-performance work practices (HPWPs) affect the employee's in-role performance (EIRP) and employee's task performance (ETP) during the coronavirus disease 2019 (COVID-19) pandemic. Furthermore, this study investigates how organization-based self-esteem (OBSE) and positive psychological capital (PPC) affect the relationship between HPWPs and outcomes of employees such as EIRP and ETP. A quantitative technique based on the survey method was used to gather the primary data of the investigation. Two hundred and (...)
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  29. Engineering Trustworthiness in the Online Environment.Hugh Desmond - 2023 - In Mark Alfano & David Collins (eds.), The Moral Psychology of Trust. Rowman and Littlefield. pp. 215-237.
    Algorithm engineering is sometimes portrayed as a new 21st century return of manipulative social engineering. Yet algorithms are necessary tools for individuals to navigate online platforms. Algorithms are like a sensory apparatus through which we perceive online platforms: this is also why individuals can be subtly but pervasively manipulated by biased algorithms. How can we better understand the nature of algorithm engineering and its proper function? In this chapter I argue that algorithm engineering can be best (...)
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  30.  70
    Engineering the Brain: Ethical Issues and the Introduction of Neural Devices.Eran Klein, Tim Brown, Matthew Sample, Anjali R. Truitt & Sara Goering - 2015 - Hastings Center Report 45 (6):26-35.
    Neural engineering technologies such as implanted deep brain stimulators and brain-computer interfaces represent exciting and potentially transformative tools for improving human health and well-being. Yet their current use and future prospects raise a variety of ethical and philosophical concerns. Devices that alter brain function invite us to think deeply about a range of ethical concerns—identity, normality, authority, responsibility, privacy, and justice. If a device is stimulating my brain while I decide upon an action, am I still the author of (...)
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  31.  28
    Climate Engineering and the Playing God Critique.Laura M. Hartman - 2017 - Ethics and International Affairs 31 (3):313-333.
    Climate engineering is subject to the “playing God” critique, which charges that humans should not undertake to control nature in ways that seem to overstep the proper scope of human agency. This argument is easily discredited, and in fact the opposite—that we should “play God”—may be equally valid in some circumstances. To revive the playing God critique, I argue that it functions not on a logical but on a symbolic and emotional level to highlight nostalgia for functional dualisms (...)
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  32. Broad-Spectrum Conceptual Engineering.Manuel Gustavo Https://Orcidorg Isaac - 2021 - Ratio: An International Journal for Analytic Philosophy 34 (4):286-302.
    Conceptual engineering is the method for assessing and improving our representational devices. On its ‘broad-spectrum’ version, it is expected to be appropriately applicable to any of our representation-involving cognitive activities, with major consequences for our whole cognitive life. This paper is about the theoretical foundations of conceptual engineering thus characterised. With a view to ensuring the actionability of conceptual engineering as a broad-spectrum method, it addresses the issue of how best to construe the subject matter of conceptual (...)
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  33.  18
    Broad-spectrum conceptual engineering.Manuel Gustavo Https://Orcidorg Isaac - 2021 - Ratio 34 (4):286-302.
    Conceptual engineering is the method for assessing and improving our representational devices. On its ‘broad‐spectrum’ version, it is expected to be appropriately applicable to any of our representation‐involving cognitive activities, with major consequences for our whole cognitive life. This paper is about the theoretical foundations of conceptual engineering thus characterised. With a view to ensuring the actionability of conceptual engineering as a broad‐spectrum method, it addresses the issue of how best to construe the subject matter of conceptual (...)
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  34.  39
    Validating Function-Based Design Methods: an Explanationist Perspective.Dingmar van Eck - 2015 - Philosophy and Technology 28 (4):511-531.
    Analysis of the adequacy of engineering design methods, as well as analysis of the utility of concepts of function often invoked in these methods, is a neglected topic in both philosophy of technology and in engineering proper. In this paper, I present an approach—dubbed an explanationist perspective—for assessing the adequacy of function-based design methods. Engineering design is often intertwined with explanation, for instance, in reverse engineering and subsequent redesign, knowledge base-assisted designing, and diagnostic reasoning. I argue (...)
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  35.  15
    The existential pleasures of engineering.Samuel C. Florman - 1994 - New York: St. Martin's Griffin.
    Humans have always sought to change their environment—building houses, monuments, temples, and roads. In the process, they have remade the fabric of the world into newly functional objects that are also works of art to be admired. In this second edition of his popular Existential Pleasures of Engineering, Samuel Florman explores how engineers think and feel about their profession. A deeply insightful and refreshingly unique text, this book corrects the myth that engineering is cold and passionless. Indeed, Florman (...)
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  36.  39
    Genetic engineering and the dignity of creatures.Robert Heeger - 2000 - Journal of Agricultural and Environmental Ethics 13 (1):43-51.
    The Swiss expert report suggests thatthe inherent dignity of a living being be identifiedwith its inherent value. But the phrase ``inherentvalue of a living being'' seems to connote two conceptsof inherent value. One has a morally obligatingcharacter but is counterintuitive because of itsegalitarianism. The other is one of non-moral value.It is more compatible with considered intuitions butinsufficient for substantiating the expert report'sclaim that human beings have moral duties towardsanimals and plants. The paper discusses theseconcepts. Consideration is then given to the (...)
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  37.  36
    Genetic Engineering.Dan W. Brock - 2003 - In R. G. Frey & C. H. Wellman (eds.), A Companion to Applied Ethics. Oxford, UK: Blackwell. pp. 356–368.
    This chapter contains sections titled: The Various Uses of Genetic Engineering The Disability Rights Challenge to the Prevention of Disabilities The Goal of a World without Disabilities Use of Genetic Engineering to Enhance Normal Function Environmental versus Genetic Changes When are Enhancements Benefits? The Magnitude of Enhancement The Means Used for Enhancement Who is Using Genetic Engineering? Impact of Genetic Engineering on Fairness and Inequality Acknowledgments.
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  38. Introduction to engineering ethics.Roland Schinzinger - 2000 - Boston: McGraw Hill. Edited by Mike W. Martin.
    Introduction to Engineering Ethics provides the background for discussion of the basic issues in engineering ethics. Emphasis is given to the moral problems engineers face in the corporate setting. It places those issues within a philosophical framework, and it seems to exhibit both their social importance and their intellectual challenge. The primary goal is to stimulate critical and responsible reflection on moral issues surrounding engineering practice and to provide the conceptual tools necessary for pursuing those issues. As (...)
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  39.  47
    Mechanistic explanation in engineering science.Dingmar van Eck - 2015 - European Journal for Philosophy of Science 5 (3):349-375.
    In this paper I apply the mechanistic account of explanation to engineering science. I discuss two ways in which this extension offers further development of the mechanistic view. First, functional individuation of mechanisms in engineering science proceeds by means of two distinct sub types of role function, behavior function and effect function, rather than role function simpliciter. Second, it offers refined assessment of the explanatory power of mechanistic explanations. It is argued that in the context of malfunction explanations (...)
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  40. Engineering design and adaptation.Robert C. Richardson - 2003 - Philosophy of Science 70 (5):1277-1288.
    Reverse engineering is a matter of inferring adaptive function from structure. The utility of reverse engineering for evolutionary biology has been a matter of controversy. I offer a simple taxonomy of the uses of engineering design in assessing adaptation, with a variety of illustrations. The plausibility of applications of engineering design reflects the specific way the models are elaborated and derived.
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  41.  23
    Engineers on responsibility: feminist approaches to who’s responsible for ethical AI.Eleanor Drage, Kerry McInerney & Jude Browne - 2024 - Ethics and Information Technology 26 (1):1-13.
    Responsibility has become a central concept in AI ethics; however, little research has been conducted into practitioners’ personal understandings of responsibility in the context of AI, including how responsibility should be defined and who is responsible when something goes wrong. In this article, we present findings from a 2020–2021 data set of interviews with AI practitioners and tech workers at a single multinational technology company and interpret them through the lens of feminist political thought. We reimagine responsibility in the context (...)
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  42.  96
    Perverse engineering.Chris Haufe - 2008 - Philosophy of Science 75 (4):437-446.
    Evolutionary psychologists, among others, have used a method called “reverse engineering” to uncover ( a ) whether a trait was selected for, and ( b ) if so, why that trait was selected for. In this paper I argue that reverse engineering cannot deliver on either ( a ) or ( b ), and tends to pervert, rather than enhance, our knowledge of natural history. In particular, I expose as false a fundamental assumption of reverse engineering—namely, that (...)
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  43.  14
    Reverse-Engineering Risk.Angela O’Sullivan & Lilith Mace - forthcoming - Erkenntnis:1-26.
    Three philosophical accounts of risk dominate the contemporary literature. On the probabilistic account, risk has to do with the probability of a disvaluable event obtaining; on the modal account, it has to do with the modal closeness of that event obtaining; on the normic account, it has to do with the normalcy of that event obtaining. The debate between these accounts has proceeded via counterexample-trading, with each account having some cases it explains better than others, and some cases that it (...)
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  44.  15
    Genetically Engineered Oil Seed Crops and Novel Terrestrial Nutrients: Ethical Considerations.Chris MacDonald, Stefanie Colombo & Michael T. Arts - 2019 - Science and Engineering Ethics 25 (5):1485-1497.
    Genetically engineered organisms have been at the center of ethical debates among the public and regulators over their potential risks and benefits to the environment and society. Unlike the currently commercial GE crops that express resistance or tolerance to pesticides or herbicides, a new GE crop produces two bioactive nutrients and docosahexaenoic acid ) that heretofore have largely been produced only in aquatic environments. This represents a novel category of risk to ecosystem functioning. The present paper describes why growing oilseed (...)
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  45.  28
    Attentional Engines: A Perceptual Theory of the Arts.William P. Seeley - 2020 - New York, NY, USA: Oxford University Press.
    What is it about art that can be so captivating? How is it that we find value in the often odd and abstract objects and events we call artworks? William P. Seeley proposes that artworks are attentional engines. They are artifacts that have been intentionally designed to direct attention to critical stylistic features that reveal their point, purpose, or meaning. In developing this view, Seeley argues that there is a lot we can learn about the value of art from interdisciplinary (...)
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  46. Downplaying the change of subject objection to conceptual engineering.Delia Belleri - forthcoming - Inquiry: An Interdisciplinary Journal of Philosophy.
    Conceptual engineering projects have been criticized for creating discontinuities of subject-matter and, as a result, discontinuities in inquiries: call this the Change of Subject objection. In this paper, I explore a way of dealing with the objection that clarifies its scope and eventually downplays it. First, two strategies aimed at saving subject-continuity are examined and found wanting: Herman Cappelen’s appeal to topics, and the account in terms of concept function. Second, the idea is introduced that one can begin an (...)
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  47.  70
    Engineering ethics and identity: Emerging initiatives in comparative perspective. [REVIEW]Gary Lee Downey, Juan C. Lucena & Carl Mitcham - 2007 - Science and Engineering Ethics 13 (4):463-487.
    This article describes and accounts for variable interests in engineering ethics in France, Germany, and Japan by locating recent initiatives in relation to the evolving identities of engineers. A key issue in ethics education for engineers concerns the relationship between the identity of the engineer and the responsibilities of engineering work. This relationship has varied significantly over time and from place to place around the world. One methodological strategy for sorting out similarities and differences in engineers’ identities is (...)
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  48.  7
    Can Engineering Principles Help Us Understand Nervous System Robustness?Timothy O’Leary - 2018 - In Marta Bertolaso, Silvia Caianiello & Emanuele Serrelli (eds.), Biological Robustness. Emerging Perspectives from within the Life Sciences. Cham: Springer. pp. 175-187.
    Nervous systems are formidably complex networks of nonlinear interacting components that self organise and continually adapt to enable flexible behaviour. Robust and reliable function is therefore non-trivial to achieve and requires a number of dynamic mechanisms and design principles that are the subject of current research in neuroscience. A striking feature of these principles is that they resemble engineering solutions, albeit at a greater level of complexity and layered organisation than any artificial system. I will draw on these observations (...)
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  49.  56
    Explaining Engineered Computing Systems’ Behaviour: the Role of Abstraction and Idealization.Nicola Angius & Guglielmo Tamburrini - 2017 - Philosophy and Technology 30 (2):239-258.
    This paper addresses the methodological problem of analysing what it is to explain observed behaviours of engineered computing systems, focusing on the crucial role that abstraction and idealization play in explanations of both correct and incorrect BECS. First, it is argued that an understanding of explanatory requests about observed miscomputations crucially involves reference to the rich background afforded by hierarchies of functional specifications. Second, many explanations concerning incorrect BECS are found to abstract away from descriptions of physical components and processes (...)
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  50. Functions in Basic Formal Ontology.Andrew D. Spear, Werner Ceusters & Barry Smith - 2016 - Applied ontology 11 (2):103-128.
    The notion of function is indispensable to our understanding of distinctions such as that between being broken and being in working order (for artifacts) and between being diseased and being healthy (for organisms). A clear account of the ontology of functions and functioning is thus an important desideratum for any top-level ontology intended for application to domains such as engineering or medicine. The benefit of using top-level ontologies in applied ontology can only be realized when each of the (...)
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