Results for 'Offloading'

48 found
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  1.  26
    Cognitive Offloading: Structuring the Environment to Improve Children's Working Memory Task Performance.Ed D. J. Berry, Richard J. Allen, Mark Mon-Williams & Amanda H. Waterman - 2019 - Cognitive Science 43 (8):e12770.
    Research has shown that adults can engage in cognitive offloading, whereby internal processes are offloaded onto the environment to help task performance. Here, we investigate an application of this approach with children, in particular children with poor working memory. Participants were required to remember and recall sequences of colors by placing colored blocks in the correct serial order. In one condition the blocks were arranged to facilitate cognitive offloading (i.e., grouped by color), whereas in the other condition they (...)
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  2.  12
    Offloading information to an external store increases false recall.Xinyi Lu, Megan O. Kelly & Evan F. Risko - 2020 - Cognition 205 (C):104428.
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  3.  9
    Cognitive offloading is value-based decision making: Modelling cognitive effort and the expected value of memory.Sam J. Gilbert - 2024 - Cognition 247 (C):105783.
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  4. Neuromedia, Cognitive Offloading, and Intellectual Perseverance.Cody Turner - 2022 - Synthese 200 (1):1-26.
    This paper engages in what might be called anticipatory virtue epistemology, as it anticipates some virtue epistemological risks related to a near-future version of brain-computer interface technology that Michael Lynch (2014) calls 'neuromedia.' I analyze how neuromedia is poised to negatively affect the intellectual character of agents, focusing specifically on the virtue of intellectual perseverance, which involves a disposition to mentally persist in the face of challenges towards the realization of one’s intellectual goals. First, I present and motivate what I (...)
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  5.  5
    Problem Solvers Adjust Cognitive Offloading Based on Performance Goals.Patrick P. Weis & Eva Wiese - 2019 - Cognitive Science 43 (12):e12802.
    When incorporating the environment into mental processing (cf., cognitive offloading), one creates novel cognitive strategies that have the potential to improve task performance. Improved performance can, for example, mean faster problem solving, more accurate solutions, or even higher grades at university.1 Although cognitive offloading has frequently been associated with improved performance, it is yet unclear how flexible problem solvers are at matching their offloading habits with their current performance goals (can people improve goal‐related instead of generic performance, (...)
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  6.  31
    Offloading memory leaves us vulnerable to memory manipulation.E. F. Risko, M. O. Kelly, P. Patel & C. Gaspar - 2019 - Cognition 191 (C):103954.
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  7.  26
    Toward a Metacognitive Account of Cognitive Offloading.Timothy L. Dunn & Evan F. Risko - 2016 - Cognitive Science 40 (5):1080-1127.
    Individuals frequently make use of the body and environment when engaged in a cognitive task. For example, individuals will often spontaneously physically rotate when faced with rotated objects, such as an array of words, to putatively offload the performance costs associated with stimulus rotation. We looked to further examine this idea by independently manipulating the costs associated with both word rotation and array frame rotation. Surprisingly, we found that individuals’ patterns of spontaneous physical rotations did not follow patterns of performance (...)
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  8.  12
    Intelligent Computation Offloading for IoT Applications in Scalable Edge Computing Using Artificial Bee Colony Optimization.Mohammad Babar, Muhammad Sohail Khan, Ahmad Din, Farman Ali, Usman Habib & Kyung Sup Kwak - 2021 - Complexity 2021:1-12.
    Most of the IoT-based smart systems require low latency and crisp response time for their applications. Achieving the demand of this high Quality of Service becomes quite challenging when computationally intensive tasks are offloaded to the cloud for execution. Edge computing therein plays an important role by introducing low network latency, quick response, and high bandwidth. However, offloading computations at a large scale overwhelms the edge server with many requests and the scalability issue originates. To address the above issues, (...)
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  9.  56
    Rotating With Rotated Text: A Natural Behavior Approach to Investigating Cognitive Offloading.Evan F. Risko, Srdan Medimorec, Joseph Chisholm & Alan Kingstone - 2014 - Cognitive Science 38 (3):537-564.
    Determining how we use our body to support cognition represents an important part of understanding the embodied and embedded nature of cognition. In the present investigation, we pursue this question in the context of a common perceptual task. Specifically, we report a series of experiments investigating head tilt (i.e., external normalization) as a strategy in letter naming and reading stimuli that are upright or rotated. We demonstrate that the frequency of this natural behavior is modulated by the cost of stimulus (...)
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  10.  51
    Autonomy, Cognitive Offloading, and Education.J. Adam Carter - 2018 - Educational Theory 68 (6):657-673.
    If we want our intellectual lives to go as well as possible, should we be ‘delegating’ as many information-gobbling tasks to our gadgets as we can? If not, then how much cognitive outsourcing is too much, and relatedly, what kinds of considerations are relevant to determining this? I submit that one particular dimension of intellectual flourishing that will be helpful for the purpose of exploring such questions is that of intellectual autonomy, and in particular, what I’ll describe as the value (...)
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  11.  90
    Offloading memory to the environment: A quantitative example. [REVIEW]John Case - 2004 - Minds and Machines 14 (3):387-89.
    R.W. Ashby maintained that people and animals do not have to remember as much as one might think since considerable information is stored in the environment. Presented herein is an everyday, quantitative example featuring calculation of the number bits of memory that can be off-loaded to the environment. The example involves one’s storing directions to a friend’s house. It is also argued that the example works with or without acceptance of the extended mind hypothesis. Additionally, a brief supporting argument for (...)
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  12.  7
    Are Companies Offloading Risk onto Employees in Times of Uncertainty? Insights from Corporate Pension Plans.Douglas Cumming, Fanyu Lu, Limin Xu & Chia-Feng Yu - forthcoming - Journal of Business Ethics:1-20.
    We investigate how firms adjust corporate pension plans in response to economic policy uncertainty (EPU). Using a sample of US-listed firms, we find that firms increase pension underfunding levels when facing higher EPU. The result is robust to controlling for pension portfolio returns, discount rates, plan sizes, pension liability, numbers of employees, other macroeconomic factors, difference-in-differences and instrumental variable estimation, and additional evidence of pension risk-shifting. Further analysis reveals that financial distress and information asymmetry induced through EPU are the potential (...)
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  13.  43
    What Do We Have to Lose? Offloading Through Moral Technologies: Moral Struggle and Progress.Lily Eva Frank - 2020 - Science and Engineering Ethics 26 (1):369-385.
    Moral bioenhancement, nudge-designed environments, and ambient persuasive technologies may help people behave more consistently with their deeply held moral convictions. Alternatively, they may aid people in overcoming cognitive and affective limitations that prevent them from appreciating a situation’s moral dimensions. Or they may simply make it easier for them to make the morally right choice by helping them to overcome sources of weakness of will. This paper makes two assumptions. First, technologies to improve people’s moral capacities are realizable. Second, such (...)
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  14.  25
    A role for metamemory in cognitive offloading.Xiao Hu, Liang Luo & Stephen M. Fleming - 2019 - Cognition 193 (C):104012.
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  15.  45
    Storing information in-the-world: Metacognition and cognitive offloading in a short-term memory task.Evan F. Risko & Timothy L. Dunn - 2015 - Consciousness and Cognition 36:61-74.
  16.  20
    An offloading view of perceptual learning. [REVIEW]Tomy Ames - 2022 - Philosophical Psychology 1:1-6.
  17.  20
    A hand full of numbers: a role for offloading in arithmetics learning?Annelise Júlio Annelise - 2011 - Frontiers in Psychology 2.
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  18.  16
    Excessive use of reminders: Metacognition and effort-minimisation in cognitive offloading.Chhavi Sachdeva & Sam J. Gilbert - 2020 - Consciousness and Cognition 85:103024.
  19.  41
    A cognitive explanation of the perceived normativity of cultural conventions.Marc Slors - 2019 - Mind and Language 36 (1):62-80.
    I argue that cultural conventions such as social etiquette facilitate a specific (non‐Lewisian) kind of action coordination—role–interaction coordination—that is required for division of labour. Playing one's roles and coordinating them with those of others is a form of multitasking. Such multitasking is made possible on a large scale because we can offload cognition aimed at coordination onto a stable infrastructure of cultural conventions. Our natural tendency to prefer multitasking in instances where one task requires low cognitive control can thus explain (...)
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  20. Extended animal cognition.Marco Facchin & Giulia Leonetti - 2024 - Synthese 203 (5).
    According to the extended cognition thesis, an agent’s cognitive system can sometimes include extracerebral components amongst its physical constituents. Here, we show that such a view of cognition has an unjustifiably anthropocentric focus, for it tends to depict cognitive extensions as a human-only affair. In contrast, we will argue that if human cognition extends, then the cognition of many non-human animals extends too, for many non-human animals rely on the same cognition-extending strategies humans rely on. To substantiate this claim, we (...)
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  21. Hostile Scaffolding.Ryan Timms & David Spurrett - 2023 - Philosophical Papers 52 (1):1-30.
    Most accounts of cognitive scaffolding focus on ways that external structure can support or augment an agent’s cognitive capacities. We call cases where the interests of the user are served benign scaffolding and argue for the possibility and reality of hostile scaffolding. This is scaffolding which depends on the same capacities of an agent to make cognitive use of external structure as in benign cases, but that undermines or exploits the user while serving the interests of another agent. We develop (...)
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  22.  35
    How Molecules Became Signs.Terrence W. Deacon - forthcoming - Biosemiotics:1-23.
    To explore how molecules became signs I will ask: “What sort of process is necessary and sufficient to treat a molecule as a sign?” This requires focusing on the interpreting system and its interpretive competence. To avoid assuming any properties that need to be explained I develop what I consider to be a simplest possible molecular model system which only assumes known physics and chemistry but nevertheless exemplifies the interpretive properties of interest. Three progressively more complex variants of this model (...)
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  23. Blame It on the AI? On the Moral Responsibility of Artificial Moral Advisors.Mihaela Constantinescu, Constantin Vică, Radu Uszkai & Cristina Voinea - 2022 - Philosophy and Technology 35 (2):1-26.
    Deep learning AI systems have proven a wide capacity to take over human-related activities such as car driving, medical diagnosing, or elderly care, often displaying behaviour with unpredictable consequences, including negative ones. This has raised the question whether highly autonomous AI may qualify as morally responsible agents. In this article, we develop a set of four conditions that an entity needs to meet in order to be ascribed moral responsibility, by drawing on Aristotelian ethics and contemporary philosophical research. We encode (...)
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  24. Music as Affective Scaffolding.Joel Krueger - forthcoming - In David Clarke, Ruth Herbert & Eric Clarke (eds.), Music and Consciousness II. Oxford: Oxford University Press.
    For 4E cognitive science, minds are embodied, embedded, enacted, and extended. Proponents observe that we regularly ‘offload’ our thinking onto body and world: we use gestures and calculators to augment mathematical reasoning, and smartphones and search engines as memory aids. I argue that music is a beyond-the-head resource that affords offloading. Via this offloading, music scaffolds access to new forms of thought, experience, and behaviour. I focus on music’s capacity to scaffold emotional consciousness, including the self-regulative processes constitutive (...)
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  25.  83
    Perception, Flux and Learning.Casey O’Callaghan - 2022 - Analysis 82 (3):560-571.
    Paradigms in philosophy and cognitive science until recently have treated perception in typical human beings as relatively fixed and unchanging. Recent research instead supports the claim that perception can be altered over time by training, deliberate practice or mere exposure. If so, we do not all bring to a scene the same stock of perceptual capacities, and our differences are not just deficits or superpowers. This paper describes six questions an account of perceptual learning ought to address, which pose difficult (...)
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  26. The function of perceptual learning.Zoe Jenkin - 2023 - Philosophical Perspectives 37 (1):172-186.
    Our perceptual systems are not stagnant but can learn from experience. Why is this so? That is, what is the function of perceptual learning? I consider two answers to this question: The Offloading View, which says that the function of perceptual learning is to offload tasks from cognition onto perception, thereby freeing up cognitive resources (Connolly, 2019) and the Perceptual View, which says that the function of perceptual learning is to improve the functioning of perception. I argue that the (...)
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  27. Engineering the Minds of the Future: An Intergenerational Approach to Cognitive Technology.Michael Madary - 2022 - Axiomathes 32 (6):1281-1295.
    The first part of this article makes the case that human cognition is an intergenerational project enabled by the inheritance and bequeathal of cognitive technology (Sects. 2–4). The final two sections of the article (Sects. 5 and 6) explore the normative significance of this claim. My case for the intergenerational claim draws results from multiple disciplines: philosophy (Sect. 2), cultural evolutionary approaches in cognitive science (Sect. 3), and developmental psychology and neuroscience (Sect. 4). In Sect. 5, I propose that cognitive (...)
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  28.  26
    Listening to algorithms: The case of self‐knowledge.Casey Doyle - forthcoming - European Journal of Philosophy.
    This paper begins with the thought that there is something out of place about offloading inquiry into one's own mind to AI. The paper's primary goal is to articulate the unease felt when considering cases of doing so. It draws a parallel between the use of algorithms in the criminal law: in both cases one feels entitled to be treated as an exception to a verdict made on the basis of a certain kind of evidence. Then it identifies an (...)
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  29. What is morphological computation? On how the body contributes to cognition and control.Vincent C. Müller & Matej Hoffmann - 2017 - Artificial Life 23 (1):1-24.
    The contribution of the body to cognition and control in natural and artificial agents is increasingly described as “off-loading computation from the brain to the body”, where the body is said to perform “morphological computation”. Our investigation of four characteristic cases of morphological computation in animals and robots shows that the ‘off-loading’ perspective is misleading. Actually, the contribution of body morphology to cognition and control is rarely computational, in any useful sense of the word. We thus distinguish (1) morphology that (...)
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  30.  42
    Justifying Limitations on the Freedom of Expression.Gehan Gunatilleke - 2020 - Human Rights Review 22 (1):91-108.
    The freedom of expression is vital to our ability to convey opinions, convictions, and beliefs, and to meaningfully participate in democracy. The state may, however, ‘limit’ the freedom of expression on certain grounds, such as national security, public order, public health, and public morals. Examples from around the world show that the freedom of individuals to express their opinions, convictions, and beliefs is often imperilled when states are not required to meet a substantial justificatory burden when limiting such freedom. This (...)
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  31.  24
    Junior doctors and moral exploitation.Joshua Parker - 2019 - Journal of Medical Ethics 45 (9):571-574.
    In this paper I argue that junior doctors are morally exploited. Moral exploitation occurs where an individual’s vulnerability is used to compel them to take on additional moral burdens. These might include additional moral responsibility, making weighty moral decisions and shouldering the consequent emotions. Key to the concept of exploitation is vulnerability and here I build on Rosalind McDougall’s work on the key roles of junior doctors to show how these leave them open to moral exploitation by restricting their reasonable (...)
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  32.  30
    An Ecumenical Matter?James Lenman - 2019 - Philosophical Quarterly 69 (274):175-186.
    Ridge defends a form of hybrid expressivism where normative judgements are constituted by two elements, normative perspectives and representational beliefs that invoke standards our normative perspectives determine. He thinks this view will enable him to ‘offload logical complexity’ onto the latter, representational components of our judgements, thereby taming the Frege-Geach Problem and conferring a dialectical advantage over non-hybrid, ‘pure’ forms of expressivism. But this will only work if our normative perspectives are themselves consistent in ways that are resistant to such (...)
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  33.  52
    Building Cognition: The Construction of Computational Representations for Scientific Discovery.Sanjay Chandrasekharan & Nancy J. Nersessian - 2015 - Cognitive Science 39 (8):1727-1763.
    Novel computational representations, such as simulation models of complex systems and video games for scientific discovery, are dramatically changing the way discoveries emerge in science and engineering. The cognitive roles played by such computational representations in discovery are not well understood. We present a theoretical analysis of the cognitive roles such representations play, based on an ethnographic study of the building of computational models in a systems biology laboratory. Specifically, we focus on a case of model-building by an engineer that (...)
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  34.  55
    SNAFUS: An Evolutionary Perspective.Kim Sterelny - 2007 - Biological Theory 2 (3):317-328.
    Human cultural life is replete with examples of adaptations to the social, physical, and biological environments that have been built gradually, cumulatively, by hidden-hand mechanisms. The impressive technologies, natural history databases, and exchange networks of traditional peoples have been built in this way. But the ethnological record is also replete with evidence of maladaptive beliefs and practices, and of failures to adapt to changing circumstances. This paper is about such failures. In what ways is cultural evolution constrained, and what explains (...)
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  35. Varieties of (Extended) Thought Manipulation.J. Adam Carter - 2020 - In Mark Blitz & Christoph Bublitz (eds.), The Future of Freedom of Thought: Liberty, Technology, and Neuroscience. Palgrave Macmillan.
    Our understanding of what exactly needs protected against in order to safeguard a plausible construal of our ‘freedom of thought’ is changing. And this is because the recent influx of cognitive offloading and outsourcing—and the fast-evolving technologies that enable this—generate radical new possibilities for freedom-of-thought violating thought manipulation. This paper does three main things. First, I briefly overview how recent thinking in the philosophy of mind and cognitive science recognises—contrary to traditional Cartesian ‘internalist’ assumptions—ways in which our cognitive faculties, (...)
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  36. AI Can Help Us Live More Deliberately.Julian Friedland - 2019 - MIT Sloan Management Review 60 (4).
    Our rapidly increasing reliance on frictionless AI interactions may increase cognitive and emotional distance, thereby letting our adaptive resilience slacken and our ethical virtues atrophy from disuse. Many trends already well underway involve the offloading of cognitive, emotional, and ethical labor to AI software in myriad social, civil, personal, and professional contexts. Gradually, we may lose the inclination and capacity to engage in critically reflective thought, making us more cognitively and emotionally vulnerable and thus more anxious and prone to (...)
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  37.  17
    Interactive Self-Deception in Digital Spaces.Eric Funkhouser - 2022 - Philosophical Topics 50 (2):65-84.
    Self-deceptive projects are frequently supported by our social environment, with others influencing both our motives and capacities for self-deception. Digital spaces offer even more opportunities for interactive self-deception. Digital platforms are incentivized to sort us and capture our engagement, and online users also have desires to be sorted and engaged. The execution of self-deception is partially offloaded to algorithms and social networks that filter our evidence, selectively draw our attention to evidence, offer rationalizations, and give us repetitive and emotion-laden feedback. (...)
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  38. Sidestepping the Frege-Geach Problem.Graham Bex-Priestley & Will Gamester - forthcoming - Philosophical Quarterly.
    Hybrid expressivists claim to solve the Frege-Geach problem by offloading the explanation of the logico-semantic properties of moral sentences onto beliefs that are components of hybrid states they express. We argue that this strategy is undermined by one of hybrid expressivism’s own commitments: that the truth of the belief-component is neither necessary nor sufficient for the truth of the hybrid state it composes. We articulate a new approach. Instead of explaining head-on what it is for, say, a pair of (...)
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  39. Morphological Computation: Nothing but Physical Computation.Marcin Miłkowski - 2018 - Entropy 10 (20):942.
    The purpose of this paper is to argue against the claim that morphological computation is substantially different from other kinds of physical computation. I show that some (but not all) purported cases of morphological computation do not count as specifically computational, and that those that do are solely physical computational systems. These latter cases are not, however, specific enough: all computational systems, not only morphological ones, may (and sometimes should) be studied in various ways, including their energy efficiency, cost, reliability, (...)
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  40. Musical Worlds and the Extended Mind.Joel Krueger - 2018 - Proceedings of A Body of Knowledge - Embodied Cognition and the Arts Conference CTSA UCI, 8-10 Dec 2016.
    “4E” approaches in cognitive science see mind as embodied, embedded, enacted, and extended. They observe that we routinely “offload” part of our thinking onto body and world. Recently, 4E theorists have turned to music cognition: from work on music perception and musical emotions, to improvisation and music education. I continue this trend. I argue that music — like other tools and technologies — is a beyond-the-head resource that affords offloading. And via this offloading, music can (at least potentially) (...)
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  41. A Dilemma for Moral Deliberation in AI.Ryan Jenkins & Duncan Purves - 2016 - International Journal of Applied Philosophy 30 (2):313-335.
    Many social trends are conspiring to drive the adoption of greater automation in society, and we will certainly see a greater offloading of human decisionmaking to robots in the future. Many of these decisions are morally salient, including decisions about how benefits and burdens are distributed. Roboticists and ethicists have begun to think carefully about the moral decision making apparatus for machines. Their concerns often center around the plausible claim that robots will lack many of the mental capacities that (...)
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  42.  32
    Building Moral Brains.Jeffrey P. Bishop - 2020 - Maynooth Philosophical Papers 10:135-149.
    Technology is evolving at a rate faster than human evolution, especially human moral evolution. There are those who claim that we must morally bioenhance the human due to existential threats (such as climate change and the looming possibility of cognitive enhancement) and due to the fact that the human animal has a weak moral will. To address these existential threats, we must design human morality into human beings technologically. By moral bioenhancement, these authors mean that we must intervene technologically in (...)
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  43.  54
    A Dilemma for Moral Deliberation in AI.Ryan Jenkins & Duncan Purves - 2016 - International Journal of Applied Philosophy 30 (2):313-335.
    Many social trends are conspiring to drive the adoption of greater automation in society, and we will certainly see a greater offloading of human decisionmaking to robots in the future. Many of these decisions are morally salient, including decisions about how benefits and burdens are distributed. Roboticists and ethicists have begun to think carefully about the moral decision making apparatus for machines. Their concerns often center around the plausible claim that robots will lack many of the mental capacities that (...)
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  44.  37
    The Tools of Enculturation.Richard Menary & Alexander Gillett - 2022 - Topics in Cognitive Science 14 (2):363-387.
    Topics in Cognitive Science, Volume 14, Issue 2, Page 363-387, April 2022.
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  45.  56
    Making Space for Creativity: Niche Construction and the Artist’s Studio.Jussi A. Saarinen & Joel Krueger - 2022 - Journal of Aesthetics and Art Criticism 80 (3):322–332.
    It is increasingly acknowledged that creativity cannot be fully understood without considering the setting where it takes place. Building on this premise, we use the concepts of niche construction, scaffolding, coupling, and functional integration to expound on the environmentally situated nature of painters’ studio work. Our analysis shows studios to be multi-resource niches that are customized by artists to support various capacities, states, and actions crucial to painting. When at work in these personalized spaces, painters do not need to rely (...)
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  46. Counting with Cilia: The Role of Morphological Computation in Basal Cognition Research.Wiktor Rorot - 2022 - Entropy 24 (11):1581.
    “Morphological computation” is an increasingly important concept in robotics, artificial intelligence, and philosophy of the mind. It is used to understand how the body contributes to cognition and control of behavior. Its understanding in terms of "offloading" computation from the brain to the body has been criticized as misleading, and it has been suggested that the use of the concept conflates three classes of distinct processes. In fact, these criticisms implicitly hang on accepting a semantic definition of what constitutes (...)
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  47.  9
    Serendipity and Ignorance Studies.Selene Arfini - 2023 - In Samantha Copeland, Wendy Ross & Martin Sand (eds.), Serendipity Science: An Emerging Field and its Methods. Springer Verlag. pp. 2147483647-2147483647.
    Selene Arfini seeks to resolve a long-standing paradoxParadox and the seemingly exclusive dichotomy between knowledgeKnowledgeand ignoranceIgnorance (also Aching Ignorance) through the concept of serendipity. How can we find new knowledgeKnowledge when we do not know what are we looking for? This question is a brief version of Meno’s or the Learner’s ParadoxParadox, which still manages to be upsetting in contemporary philosophy, despite having been discussed since Plato’s times. Arfini believes that the paradoxParadox still upsets because we strongly connect the explicit (...)
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  48. The Management of Visual Attention in Graphic Displays.Ronald A. Rensink - 2011 - In Human Attention in Digital Environments. Cambridge University Press. pp. 63-92.
    This chapter presents an overview of several recent developments in vision science, and outlines some of their implications for the management of visual attention in graphic displays. These include ways of sending attention to the right item at the right time, techniques to improve attentional efficiency, and possibilities for offloading some of the processing typically done by attention onto nonattentional mechanisms. In addition it is argued that such techniques not only allow more effective use to be made of visual (...)
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