Results for 'time in science'

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  1.  23
    Time-Sensitivity in Science.Daria Jadreškić - manuscript
    I examine the role of time-sensitivity in science by drawing on a discussion between Kevin Elliott and Daniel McKaughan and Daniel Steel, on the role of non-epistemic values in theory assessment and the epistemic status of speed of inference. I argue that: 1) speed supervenes on ease of use in the cases they discuss, 2) speed is an epistemic value, and 3) Steel’s account of values doesn’t successfully distinguish extrinsically epistemic from non-epistemic values. Finally, I propose an account (...)
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  2. Time in Cognitive Development.Christoph Hoerl & Teresa McCormack - 2011 - In Craig Callender (ed.), The Oxford Handbook of Philosophy of Time. Oxford: Oxford University Press. pp. 439-459.
    This is a comprehensive book on the philosophy of time. Leading philosophers discuss the metaphysics of time, our experience and representation of time, the role of time in ethics and action, and philosophical issues in the sciences of time, especially quantum mechanics and relativity theory.
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  3. Understanding Perception of Time in Terms of Perception of Change.Michal Klincewicz - 2014 - Procedia - Social and Behavioral Sciences 126:58-63.
    In this paper, I offer an account of the dependence relation between perception of change and the subjective flow of time that is consistent with some extant empirical evidence from priming by unconscious change. This view is inspired by the one offered by William James, but it is articulated in the framework of contemporary functionalist accounts of mental qualities and higher-order theories of consciousness. An additional advantage of this account of the relationship between perception of change and subjective (...) is that is makes sense of instances where we are not consciously aware of changes but still experience the flow of time. (shrink)
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  4.  36
    Gildi vísinda og gildin í vísindum - á tímum heimsfaraldurs [English title: "The Value of Science and the Values in Science - in Pandemic Times"].Finnur Dellsén - 2020 - Skírnir 194:251-273.
    English summary: This paper uses research on the COVID-19 pandemic as the backdrop for an accessible discussion of the value and status of science, and of the role of valuesin science. In particular, the paper seeks to debunk three common myths or dogmas about scientific research: (i) that there is such a thing as 'scientific proof' of a theory or hypothesis, (ii) that disagreement is necessarily unhealthy or unnatural in science, (iii) and that personal values play no (...)
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  5. Testing Times: Confirmation in the Historical Sciences.Ben Jeffares - 2008 - Dissertation, Australian National University
    In this thesis, I argue that a good historical science will have the following characteristics: Firstly, it will seek to construct causal histories of the past. Secondly, the construction of these causal histories will utilise well-tested regularities of science. Additionally, well-tested regularities will secure the link between observations of physical traces and the causal events of interest. However, the historical sciences cannot use these regularities in a straightforward manner. The regularities must accommodate the idiosyncrasies of the past, and (...)
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  6. Feminism in Science: An Imposed Ideology and a Witch Hunt.Martín López Corredoira - 2021 - Scripta Philosophiae Naturalis 20:id. 3.
    Metaphysical considerations aside, today’s inheritors of the tradition of natural philosophy are primarily scientists. However, they are oblivious to the human factor involved in science and in seeing how political, religious, and other ideologies contaminate our visions of nature. In general, philosophers observe human (historical, sociological, and psychological) processes within the construction of theories, as well as in the development of scientific activity itself. -/- In our time, feminism—along with accompanying ideas of identity politics under the slogan “diversity, (...)
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  7. The Role of Physics in Science Integration.Alexander Egoyan - 2005 - Albert Einstein Century International Conference.
    Special and General theories of relativity may be considered as the most significant examples of integrative thinking. From these works we see that Albert Einstein attached great importance to how we understand geometry and dimensions. It is shown that physics powered by the new multidimensional elastic geometry is a reliable basis for science integration. Instead of searching for braneworlds (elastic membranes - EM) in higher dimensions we will start by searching them in our 3+1 dimensional world. The cornerstone of (...)
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  8. On Time and the Varieties of Science.David Braddon-Mitchell & Kristie Miller - 2017 - Boston Studies in the Philosophy and History of Science 326:67-85.
    This paper proffers an account of why interdisciplinary research on, inter alia, the nature of time can be fruitful even if the disciplines in question have different explanatory pro-jects. We suggest that the special sciences perform a subject setting role for lower-level disciplines such as physics. In essence, they tell us where, amongst a theory of the physical world, we should expect to locate phenomena such as temporality; they tell us what it would take for there to be (...). Physical theory tells us whether there is anything like that in the world and what its hidden nature is. Only working in tandem can physics and the special sciences locate and describe the phenomenon that is time. (shrink)
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  9. Political Apologies and the Question of a ‘Shared Time’ in the Australian Context.Michelle Bastian - 2013 - Theory, Culture and Society 30 (5):94-121.
    Although conceptually distinct, ‘ time ’ and ‘community’ are multiply intertwined within a myriad of key debates in both the social sciences and the humanities. Even so, the role of conceptions of time in social practices of inclusion and exclusion has yet to achieve the prominence of other key analytical categories such as identity and space. This article seeks to contribute to the development of this field by highlighting the importance of thinking time and community together through (...)
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  10. Science and Policy in Extremis: The UK’s Initial Response to COVID-19.Jonathan Birch - 2021 - European Journal for Philosophy of Science 11 (3):90.
    Drawing on the SAGE minutes and other documents, I consider the wider lessons for norms of scientific advising that can be learned from the UK’s initial response to coronavirus in the period January-March 2020, when an initial strategy that planned to avoid total suppression of transmission was abruptly replaced by an aggressive suppression strategy. I introduce a distinction between “normatively light advice”, in which no specific policy option is recommended, and “normatively heavy advice” that does make an explicit recommendation. I (...)
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  11. Inference Belief and Interpretation in Science.Avijit Lahiri - manuscript
    This monograph is an in-depth and engaging discourse on the deeply cognitive roots of human scientific quest. The process of making scientific inferences is continuous with the day-to-day inferential activity of individuals, and is predominantly inductive in nature. Inductive inference, which is fallible, exploratory, and open-ended, is of essential relevance in our incessant efforts at making sense of a complex and uncertain world around us, and covers a vast range of cognitive activities, among which scientific exploration constitutes the pinnacle. Inductive (...)
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  12. Quantum Mechanics in a Time-Asymmetric Universe: On the Nature of the Initial Quantum State.Eddy Keming Chen - forthcoming - British Journal for the Philosophy of Science:axy068.
    In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition to account for the temporal asymmetry. In this paper, I show that the Past Hypothesis also contains enough information to simplify the quantum ontology and define a unique initial condition in such a world. First, I introduce Density Matrix Realism, the thesis that the quantum universe is described by a fundamental density matrix that represents something objective. This stands in sharp contrast to Wave (...)
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  13. The Tannhäuser Gate. Architecture in Science Fiction Films of the Second Half of the 20th and the Beginning of the 21st Century as a Component of Utopian and Dystopian Projections of the Future.Cezary Wąs - 2018 - Quart. Kwartalnik Instytutu Historii Sztuki Uniwersytetu Wrocławskiego 49 (3):83-109.
    The Tannhäuser Gate. Architecture in science fiction films of the second half of the 20th and the beginning of the 21st century as a component of utopian and dystopian projections of the future. -/- The films of science fiction genre from the second half of the 20th and early 21st century contained many visions of the future, which were at the same time a reflection on the achievements and deficiencies of modern times. In 1960s, cinematographic works were (...)
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  14. On Time and the Varieties of Science.Kristie Miller & David Braddon-Mitchell - 2017 - In Christophe Bouton & Philippe Huneman (eds.), Time of Nature and the Nature of Time. Springer Verlag.
    This paper proffers an account of why interdisciplinary research on, inter alia, the nature of time can be fruitful even if the disciplines in question have different explanatory projects. We suggest that the special sciences perform a subject setting role for lower-level disciplines such as physics. In essence, they tell us where, amongst a theory of the physical world, we should expect to locate phenomena such as temporality; they tell us what it would take for there to be (...). Physical theory tells us whether there is anything like that in the world and what its hidden nature is. Only working in tandem can physics and the special sciences locate and describe the phenomenon that is time. (shrink)
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  15. OBJECTS OF KNOWLEDGE IN SCIENCE AND RELIGION.Avik Mukherjee - 2014 - SPECIAL COLLECTIONS RESEARCH CENTRE, MORRIS LIBRARY, SOUTHERN ILLINOIS UNIVERSITY CARBONDALE.
    If science disputes the validity or authenticity of religious knowledge it is because both the scientist and the rational man assume that every object of knowledge there is or can be exists as a material percept in time and space. If we assume that knowledge of material objects is definite knowledge – an assumption itself suspect considering that the latest WMAP data indicates that 95.4% of the total matter in our universe is dark matter and dark energy – (...)
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  16. Nano-Time Intervals in Bio-Systems - Their Relevance to Nano-Bio-Science and Nano-Bio-Technology.Varanasi Ramabrahmam - 2013 - In Proceedings of 2nd National seminar on New Materials Research and Nanotechnology (NSNMRN2013) held at Department of Physics, Government Arts College, Stone House Hill, OOty-643 002, the Nilagiris District, Tamilnadu, India, between 25-27, September, 201. pp. 172-178.
    The nature and structure of time and time-intervals in physical, chemical and biological systems will be elucidated. The relation and dependence among time, energy and taking place of natural processes will be critically analyzed. The bio-processes taking place in nano-time intervals will be identified. Their relevance to nano-bio-science and nano-bio-technology will be developed and nano-time interval-aspect of nano-sciences and nano-technology will be advanced. -/- .
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  17. The Kuhnian Image of Science: Time for a Decisive Transformation?Moti Mizrahi (ed.) - 2018 - London: Rowman & Littlefield.
    More than 50 years after the publication of Thomas Kuhn’s seminal book, The Structure of Scientific Revolutions, this volume assesses the adequacy of the Kuhnian model in explaining certain aspects of science, particularly the social and epistemic aspects of science. One argument put forward is that there are no good reasons to accept Kuhn’s incommensurability thesis, according to which scientific revolutions involve the replacement of theories with conceptually incompatible ones. Perhaps, therefore, it is time for another “decisive (...)
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  18. Calibration, Coherence, and Consilience in Radiometric Measures of Geologic Time.Alisa Bokulich - 2020 - Philosophy of Science 87 (3):425-456.
    In 2012, the Geological Time Scale, which sets the temporal framework for studying the timing and tempo of all major geological, biological, and climatic events in Earth’s history, had one-quarter of its boundaries moved in a widespread revision of radiometric dates. The philosophy of metrology helps us understand this episode, and it, in turn, elucidates the notions of calibration, coherence, and consilience. I argue that coherence testing is a distinct activity preceding calibration and consilience, and I highlight the value (...)
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  19. Latin in a Time of Change: The Choice of Language as Signifier of a New Science?Sietske Fransen - 2017 - Isis 108 (3):629-635.
    This essay discusses three authors from the early seventeenth century (Galileo, Descartes, and Van Helmont) and the reasons that guided their decisions to write occasionally in their respective vernacular languages even though Latin remained the accepted language for learned communication. From their writings we can see that their choices were social, political, and always of high importance. The choice of language of these multilingual authors conveyed a message that was sometimes implicit, sometimes explicit. Their usage of both Latin and vernacular (...)
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  20.  35
    Epistemological and Ethical Aspects of Time in Scientific Research.Daria Jadreškić - 2020 - Dissertation, Leibniz University Hannover
    This dissertation explores the influence of time constraints on different research practices. The first two parts present case studies, which serve as a basis for discussing the epistemological and ethical implications of temporal limitations in scientific research. Part I is a case study on gravitational wave research, conducted by the LIGO Scientific Collaboration. This exemplifies fundamental research – without immediate societal applications, open-ended in terms of timeline and in terms of research goals. It is based, in part, on qualitative (...)
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  21. Real Kinds in Real Time: On Responsible Social Modeling.Theodore Bach - 2019 - The Monist 102 (2):236-258.
    There is broad agreement among social researchers and social ontologists that the project of dividing humans into social kinds should be guided by at least two methodological commitments. First, a commitment to what best serves moral and political interests, and second, a commitment to describing accurately the causal structures of social reality. However, researchers have not sufficiently analyzed how these two commitments interact and constrain one another. In the absence of that analysis, several confusions have set in, threatening to undermine (...)
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  22. A Connection Between Minkowski and Galilean Space‐Times in Quantum Mechanics.Douglas Kutach - 2010 - International Studies in the Philosophy of Science 24 (1):15 – 29.
    Relativistic quantum theories are equipped with a background Minkowski spacetime and non-relativistic quantum theories with a Galilean space-time. Traditional investigations have distinguished their distinct space-time structures and have examined ways in which relativistic theories become sufficiently like Galilean theories in a low velocity approximation or limit. A different way to look at their relationship is to see that both kinds of theories are special cases of a certain five-dimensional generalization involving no limiting procedures or approximations. When one compares (...)
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  23. The Phenomenology and Predictive Processing of Time in Depression.Zachariah A. Neemeh & Shaun Gallagher - 2020 - In Dina Mendonça, Manuel Curado & Steven S. Gouveia (eds.), The Philosophy and Science of Predictive Processing. London, UK: pp. 187-207.
    In this chapter we first elucidate the subjective flow of time particularly as developed by Husserl. We next discuss time and timescales in predictive processing. We then consider how the phenomenological analysis of time can be naturalized within a predictive processing framework. In the final section, we develop an analysis of the temporal disturbances characteristic of depression using the resources of both phenomenology and predictive processing.
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  24. Time Remains.Sean Gryb & Karim P. Y. Thébault - 2016 - British Journal for the Philosophy of Science 67 (3):663-705.
    On one popular view, the general covariance of gravity implies that change is relational in a strong sense, such that all it is for a physical degree of freedom to change is for it to vary with regard to a second physical degree of freedom. At a quantum level, this view of change as relative variation leads to a fundamentally timeless formalism for quantum gravity. Here, we will show how one may avoid this acute ‘problem of time’. Under our (...)
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  25. On Being Stuck in Time.Christoph Hoerl - 2008 - Phenomenology and the Cognitive Sciences 7 (4):485-500.
    It is sometimes claimed that non-human animals (and perhaps also young children) live their lives entirely in the present and are cognitively ‘stuck in time’. Adult humans, by contrast, are said to be able to engage in ‘mental time travel’. One possible way of making sense of this distinction is in terms of the idea that animals and young children cannot engage in tensed thought, which might seem a preposterous idea in the light of certain findings in comparative (...)
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  26. Time-Traveling Image: Gilles Deleuze on Science-Fiction Film.Joshua M. Hall - 2016 - Journal of Aesthetic Education 50 (4):31-44.
    The first section of this article focuses on the treatment of “time travel” in science-fiction literature and film as presented in the secondary literature in that field. The first anthology I will consider has a metaphysical focus, including (a) relating the time travel of science fiction to the banal time travel of all living beings, as we move inexorably toward the future; and (b) arguing for the filmstrip as the ultimate metaphor for time. The (...)
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  27. The Constitution of Space and Time in the Aufbau Viewed From a Kantian Perspective.Yusuke Kaneko - 2014 - Journal of the Philosophy of Science Society, Japan 47 (1):19-36.
    The foremost aim of this paper is to realize the fourth part of the Aufbau. This part, which provides an actual phenomenalistic constitution system, is interpretable from a Kantian perspective (§§1-4). But Carnap plotted to overcome Kant’s old style of philosophy as well. We review this aspect of his constitution, focusing on space (§§7-13) and time (§§5-6), especially.
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  28. Lightning in a Bottle: Complexity, Chaos, and Computation in Climate Science.Jon Lawhead - 2014 - Dissertation, Columbia University
    Climatology is a paradigmatic complex systems science. Understanding the global climate involves tackling problems in physics, chemistry, economics, and many other disciplines. I argue that complex systems like the global climate are characterized by certain dynamical features that explain how those systems change over time. A complex system's dynamics are shaped by the interaction of many different components operating at many different temporal and spatial scales. Examining the multidisciplinary and holistic methods of climatology can help us better understand (...)
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  29. C‐Theories of Time: On the Adirectionality of Time.Matt Farr - 2020 - Philosophy Compass (12):1-17.
    “The universe is expanding, not contracting.” Many statements of this form appear unambiguously true; after all, the discovery of the universe’s expansion is one of the great triumphs of empirical science. However, the statement is time-directed: the universe expands towards what we call the future; it contracts towards the past. If we deny that time has a direction, should we also deny that the universe is really expanding? This article draws together and discusses what I call ‘C-theories’ (...)
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  30. No Wisdom in the Crowd: Genome Annotation at the Time of Big Data - Current Status and Future Prospects.Antoine Danchin - 2018 - Microbial Biotechnology 11 (4):588-605.
    Science and engineering rely on the accumulation and dissemination of knowledge to make discoveries and create new designs. Discovery-driven genome research rests on knowledge passed on via gene annotations. In response to the deluge of sequencing big data, standard annotation practice employs automated procedures that rely on majority rules. We argue this hinders progress through the generation and propagation of errors, leading investigators into blind alleys. More subtly, this inductive process discourages the discovery of novelty, which remains essential in (...)
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  31. What’s so Special About Initial Conditions? Understanding the Past Hypothesis in Directionless Time.Matt Farr - 2021 - In Yemima Ben-Menahem (ed.), Rethinking the Concept of Laws of Nature: Natural order in the Light of Contemporary Science. Springer.
    It is often said that the world is explained by laws of nature together with initial conditions. But does that mean initial conditions don’t require further explanation? And does the explanatory role played by initial conditions entail or require that time has a preferred direction? This chapter looks at the use of the ‘initialness defence’ in physics, the idea that initial conditions are intrinsically special in that they don’t require further explanation, unlike the state of the world at other (...)
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  32. Time and the Domain of Consciousness.Christoph Hoerl - 2014 - Annals of the New York Academy of Sciences 1326:90-96.
    It is often thought that there is little that seems more obvious from experience than that time objectively passes, and that time is, in this respect, quite unlike space. Yet nothing in the physical picture of the world seems to correspond to the idea of such an objective passage of time. In this paper, I discuss some attempts to explain this apparent conflict between appearance and reality. I argue that existing attempts to explain the conflict as the (...)
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  33. Karl Sigmund: Exact Thinking in Demented Times. The Vienna Circle and the Epic Quest for the Foundations of Science[REVIEW]Thomas Mormann - 2018 - Isis 109 (4):865 - 866.
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  34. The GRW Flash Theory: A Relativistic Quantum Ontology of Matter in Space-Time?Michael Esfeld & Nicolas Gisin - 2014 - Philosophy of Science 81 (2):248-264.
    John Bell proposed an ontology for the GRW modification of quantum mechanics in terms of flashes occurring at space- time points. This article spells out the motivation for this ontology, inquires into the status of the wave function in it, critically examines the claim of its being Lorentz invariant, and considers whether it is a parsimonious but nevertheless physically adequate ontology.
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  35. Philosophy and Science in Leibniz.Maria Rosa Antognazza - 2016 - In L. Strickland, E. Vynckier & J. Weckend (eds.), Tercentenary Essays on the Philosophy & Science of G.W. Leibniz. Palgrave-Macmillan. pp. 19-46.
    This paper explores the question of Leibniz’s contribution to the rise of modern ‘science’. To be sure, it is now generally agreed that the modern category of ‘science’ did not exist in the early modern period. At the same time, this period witnessed a very important stage in the process from which modern science eventually emerged. My discussion will be aimed at uncovering the new enterprise, and the new distinctions which were taking shape in the early (...)
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  36.  40
    The Times of Desire, Hope and Fear: On the Temporality of Concrete Subjectivity in Hegel’s Encyclopaedia.Heikki Ikäheimo - 2012 - Critical Horizons 13 (2):197 - 219.
    The aim of this article is to show that the Philosophy of Subjective Spirit in Hegel’s mature Encyclopaedia of Philosophical Sciences contains the outlines of a philosophically rich notion of the constitutive temporality of subjectivity. The temporality of the being of Hegel’s concrete subject is intimately connected with embodiment and sociality, and is thus an essential element of its fully detranscendentalized inner-worldly nature.
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  37. Nowhere Man: Time Travel and Spatial Location.Sara Bernstein - 2015 - Midwest Studies in Philosophy 39 (1):158-168.
    This paper suggests that time travelling scenarios commonly depicted in science fiction introduce problems and dangers for the time traveller. If time travel takes time, then time travellers risk collision with past objects, relocation to distant parts of the universe, and time travel-specific injuries. I propose several models of time travel that avoid the dangers and risks of time travel taking time, and that introduce new questions about the relationship between (...)
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  38. The New Tweety Puzzle: Arguments Against Monistic Bayesian Approaches in Epistemology and Cognitive Science.Matthias Unterhuber & Gerhard Schurz - 2013 - Synthese 190 (8):1407-1435.
    In this paper we discuss the new Tweety puzzle. The original Tweety puzzle was addressed by approaches in non-monotonic logic, which aim to adequately represent the Tweety case, namely that Tweety is a penguin and, thus, an exceptional bird, which cannot fly, although in general birds can fly. The new Tweety puzzle is intended as a challenge for probabilistic theories of epistemic states. In the first part of the paper we argue against monistic Bayesians, who assume that epistemic states can (...)
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  39. Debates in the Metaphysics of Time[REVIEW]Natalja Deng - 2015 - International Studies in the Philosophy of Science 29 (3):340-344.
    This is a review of 'Debates in the Metaphysics of Time' (Bloomsbury), ed. by Nathan Oaklander.
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  40. The Usefulness of Substances. Knowledge, Science and Metaphysics in Nietzsche and Mach.Pietro Gori - 2009 - Nietzsche Studien 38:111-155.
    In this paper I discuss the role played by Ernst Mach on Nietzsche’s thought. Starting from the contents of his Beiträge zur Analyse der Empfindungen, I’ll show the close similarities between their view on both human knowledge and the scientific world description. In his writing on science Nietzsche shares Mach’s critique to the 19th century mechanism and its metaphysical ground, as much as his way of defining the substantial notions such as matter, ego and free will. Moreover, my investigation (...)
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  41. Time and Space in Manic Episodes.Maria Luìsa Figueira & Luìs Madeira - 2011 - Dialogues in Philosophy, Mental and Neuro Sciences 4 (2):22-26.
    Temporality and Spatiality have been extensively addressed in philosophy, and their disturbances have been extensively studied in psychopathology (e.g. Wyllie 2005). Mental health patients: (1) describe pathological experiences of Time and Space (Gallagher and Varela 2003); (2) show disturbed timing (Tysk 1984); (3) experience psychopathological phenomena that could be the cause of changes in temporality and spatiality. These topics will be discussed in the case of mood disorders, in particular euphoric and dysphoric mania episodes. Any phenomenological study in mood (...)
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  42.  24
    Lying in the Time of Crisis.Venkata Rayudu Posina - manuscript
    Beginning with an examination of the recent Nature News centered on Harvard-Lancet-Mehra et al. COVID-19 research scandal, I put forth suggestions--for further debate--to safeguard the integrity of science in a time of crisis. In particular, I identify a subtle form of lying published as Nature news. Subsequently, drawing on Scarry's book "Thinking in an Emergency", I argue that slow reasoning and quick action (called for by crises) are not mutually incompatible; thinking can be transformed into conscious-reflex action by (...)
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  43. Stepping Beyond the Newtonian Paradigm in Biology. Towards an Integrable Model of Life: Accelerating Discovery in the Biological Foundations of Science.Plamen L. Simeonov, Edwin Brezina, Ron Cottam, Andreé C. Ehresmann, Arran Gare, Ted Goranson, Jaime Gomez‐Ramirez, Brian D. Josephson, Bruno Marchal, Koichiro Matsuno, Robert S. Root-­Bernstein, Otto E. Rössler, Stanley N. Salthe, Marcin Schroeder, Bill Seaman & Pridi Siregar - 2012 - In Plamen L. Simeonov, Leslie S. Smith & Andreé C. Ehresmann (eds.), Integral Biomathics: Tracing the Road to Reality. Springer. pp. 328-427.
    The INBIOSA project brings together a group of experts across many disciplines who believe that science requires a revolutionary transformative step in order to address many of the vexing challenges presented by the world. It is INBIOSA’s purpose to enable the focused collaboration of an interdisciplinary community of original thinkers. This paper sets out the case for support for this effort. The focus of the transformative research program proposal is biology-centric. We admit that biology to date has been more (...)
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  44. Plagiarism in the Age of Massive Generative Pre-Trained Transformers (GPT-3): “The Best Time to Act Was Yesterday. The Next Best Time is Now.”.N. Dehouche - 2021 - Ethics in Science and Environmental Politics 21:17-23.
    As if 2020 were not a peculiar enough year, its fifth month has seen the relatively quiet publication of a preprint describing the most powerful Natural Language Processing (NLP) system to date, GPT-3 (Generative Pre-trained Transformer-3), by Silicon Valley research firm OpenAI. Though the software implementation of GPT-3 is still in its initial Beta release phase, and its full capabilities are still unknown as of the time of this writing, it has been shown that this Artificial Intelligence can comprehend (...)
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  45. Buying Time – Using Nanotechnologies and Other Emerging Technologies For A Sustainable Future.Thomas Vogt - 2010 - In Ulrich Fiedeler, Christopher Coenen, Sarah E. Davies & Arianna Ferrari (eds.), Understanding Nanotechnology. AKA Verlag. pp. 43-60.
    Abstract: Science and emerging technologies should not be predominantly tasked with furnishing us with more sustainable societies. Continuous short-term technological bail outs without taking into account the longer socio-cultural incubation times required to transition to ‘weakly sustainable’ economies squander valuable resources and time. Emerging technologies need to be deployed strategically to buy time in order to have extended political, social and ethical discussions about the root-causes of unsustainable economies and minimize social disruptions on the path towards global (...)
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  46. Reflections on Cognitive and Epistemic Diversity: Can a Stich in Time Save Quine?Michael Bishop - 2009 - In Dominic Murphy & Michael A. Bishop (eds.), Stich and His Critics. Wiley-Blackwell.
    In “Epistemology Naturalized” Quine famously suggests that epistemology, properly understood, “simply falls into place as a chapter of psychology and hence of natural science” (1969, 82). Since the appearance of Quine’s seminal article, virtually every epistemologist, including the later Quine (1986, 664), has repudiated the idea that a normative discipline like epistemology could be reduced to a purely descriptive discipline like psychology. Working epistemologists no longer take Quine’s vision in “Epistemology Naturalized” seriously. In this paper, I will explain why (...)
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  47. Present Time.Gustavo E. Romero - 2015 - Foundations of Science 20 (2):135-145.
    The idea of a moving present or ‘now’ seems to form part of our most basic beliefs about reality. Such a present, however, is not reflected in any of our theories of the physical world. I show in this article that presentism, the doctrine that only what is present exists, is in conflict with modern relativistic cosmology and recent advances in neurosciences. I argue for a tenseless view of time, where what we call ‘the present’ is just an emergent (...)
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  48. Causation and Time Reversal.Matt Farr - 2020 - British Journal for the Philosophy of Science 71 (1):177-204.
    What would it be for a process to happen backwards in time? Would such a process involve different causal relations? It is common to understand the time-reversal invariance of a physical theory in causal terms, such that whatever can happen forwards in time can also happen backwards in time. This has led many to hold that time-reversal symmetry is incompatible with the asymmetry of cause and effect. This article critiques the causal reading of time (...)
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  49.  73
    OUT OF TIME - Predicting the Science of Future Centuries and Millennia.Rodney Bartlett - 2021 - Beau Bassin-Rose Hill, Mauritius: LAP (LAMBERT Academic Publishing).
    This book is my gift to Albert Einstein on the occasion of his 142nd birthday - and is also a gift to everybody in the world he helped to shape! -/- My book adopts the view that the universe is infinite and eternal - but scientifically created. This paradox of creating eternity depends on the advanced electronics developed by future humanity. Those humans will develop time travel, plus programs that use "imaginary" time and infinite numbers like pi. They'll (...)
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  50. Special Relativity in a Universe of Flowing Time.Ted Dace - 2015 - International Journal of Fundamental Physical Sciences 5 (3).
    By eliminating the need for an absolute frame of reference or ether, Einstein resolved the problem of the constancy of light-speed in all inertial frames but created a new problem in our understanding of time. The resolution of this problem requires no experimentation but only a careful analysis of special relativity, in particular the relativity of simultaneity. This concept is insufficiently relativistic insofar as Einstein failed to recognize that any given set of events privileges the frame in which the (...)
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