Results for 'Scientific Time'

943 found
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  1. The Relationships between Scientific and Theological Discourses at the Crossroads between Medieval and Early Modern Times and the Historiography of Science.Alberto Bardi - 2023 - Transversal: International Journal for the Historiography of Science 15.
    The history of the science of the stars (astronomy and astrology) in fourteenth-century Byzantium is significantly intertwined with the implications of theological and philosophical controversies. A less-explored astronomical text authored by the fourteenth-century Byzantine scholar Theorodos Meliteniotes (ca. 1320–1393 CE) provides new historical factors toward a historiography of the differences between scientific and theological discourses, their development in the transition to early modern times, and the different historical developments of science in the worlds of the Eastern and Western Churches.
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  2. Timelessness and Time Dependence of Human Consciousness From a Scientific Western Viewpoint.F. K. Jansen - 2014 - Philosophy Study 4 (8).
    Eastern philosophy and western science have convergent and divergent viewpoints for their explanation of consciousness. Convergence is found for the practice of meditation allowing besides a time dependent consciousness, the experience of a timeless consciousness and its beneficial effect on psychological wellbeing and medical improvements, which are confirmed by multiple scientific publications. Theories of quantum mechanics with non-locality and timelessness also show astonishing correlation to eastern philosophy, such as the theory of Penrose-Hameroff (ORC-OR), which explains consciousness by reduction (...)
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  3. Scientific Realism without the Wave-Function: An Example of Naturalized Quantum Metaphysics.Valia Allori - 2020 - In Steven French & Juha Saatsi (eds.), Scientific Realism and the Quantum. Oxford: Oxford University Press.
    Scientific realism is the view that our best scientific theories can be regarded as (approximately) true. This is connected with the view that science, physics in particular, and metaphysics could (and should) inform one another: on the one hand, science tells us what the world is like, and on the other hand, metaphysical principles allow us to select between the various possible theories which are underdetermined by the data. Nonetheless, quantum mechanics has always been regarded as, at best, (...)
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  4. Understanding Scientific Progress: Aim-Oriented Empiricism.Nicholas Maxwell - 2017 - St. Paul, USA: Paragon House.
    "Understanding Scientific Progress constitutes a potentially enormous and revolutionary advancement in philosophy of science. It deserves to be read and studied by everyone with any interest in or connection with physics or the theory of science. Maxwell cites the work of Hume, Kant, J.S. Mill, Ludwig Bolzmann, Pierre Duhem, Einstein, Henri Poincaré, C.S. Peirce, Whitehead, Russell, Carnap, A.J. Ayer, Karl Popper, Thomas Kuhn, Imre Lakatos, Paul Feyerabend, Nelson Goodman, Bas van Fraassen, and numerous others. He lauds Popper for advancing (...)
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  5. 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, (...)
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  6. Trusting scientific experts in an online world.Kenneth Boyd - 2022 - Synthese 200 (1):1-31.
    A perennial problem in social epistemology is the problem of expert testimony, specifically expert testimony regarding scientific issues: for example, while it is important for me to know information pertaining to anthropogenic climate change, vaccine safety, Covid-19, etc., I may lack the scientific background required to determine whether the information I come across is, in fact, true. Without being able to evaluate the science itself, then, I need to find trustworthy expert testifiers to listen to. A major project (...)
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  7. Time's Arrow in a Quantum Universe: On the Status of Statistical Mechanical Probabilities.Eddy Keming Chen - 2020 - In Valia Allori (ed.), Statistical Mechanics and Scientific Explanation: Determinism, Indeterminism and Laws of Nature. Singapore: World Scientific. pp. 479–515.
    In a quantum universe with a strong arrow of time, it is standard to postulate that the initial wave function started in a particular macrostate---the special low-entropy macrostate selected by the Past Hypothesis. Moreover, there is an additional postulate about statistical mechanical probabilities according to which the initial wave function is a ''typical'' choice in the macrostate. Together, they support a probabilistic version of the Second Law of Thermodynamics: typical initial wave functions will increase in entropy. Hence, there are (...)
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  8. Scientific Disagreements, Fast Science and Higher-Order Evidence.Daniel C. Friedman & Dunja Šešelja - 2023 - Philosophy of Science 90 (4):937-957.
    Scientific disagreements are an important catalyst for scientific progress. But what happens when scientists disagree amidst times of crisis, when we need quick yet reliable policy guidance? In this paper we provide a normative account for how scientists facing disagreement in the context of ‘fast science’ should respond, and how policy makers should evaluate such disagreement. Starting from an argumentative, pragma-dialectic account of scientific controversies, we argue for the importance of ‘higher-order evidence’ (HOE) and we specify desiderata (...)
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  9. Space, time, and irreversibility.Gustavo E. Romero - 2017 - MÈTODE Science Studies Journal 7:201-209.
    Scientific philosophy is that which is informed by science. It uses exact tools such as logic and mathematics and provides a framework for scientific activity to solve more general questions about nature, the language we use to describe it, and the knowledge we obtain thanks to it. Many of the scientific philosophy theories can be proven and evaluated using scientific evidence. In this paper, I focus on showing how several classical philosophy topics, such as the nature (...)
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  10. Philosophy of Science and Scientific Whaling: Lost in Translation.Mohammad Rubaiyat Rahman - manuscript
    Through discussing scientific whaling, the paper brings the necessity of retrieving natural philosophy. The paper’s arguments favor an expanded vision of human encounter with nature, through the lens of natural philosophy, with a priority focus of expanding our imaginations to embrace the vast natural world. -/- There is no doubt that both the philosophy and science, two of the three significant areas of cultural and intellectual engagement (the other one is religion), have gone through changes over time. It (...)
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  11. Scientific Progress and Democratic Society through the Lens of Scientific Pluralism.Theptawee Chokvasin - 2023 - Suranaree Journal of Social Science 17 (2):Article ID e268392 (pp. 1-15).
    Background and Objectives: In this research article, the researcher addresses the issue of creating public understanding in a democratic society about the progress of science, with an emphasis on pluralism from philosophers of science. The idea that there is only one truth and that there are just natural laws awaiting discovery by scientists has historically made it difficult to explain scientific progress. This belief motivates science to develop theories that explain the unity of science, and it is thought that (...)
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  12. Institutions and Scientific Progress.C. Mantzavinos - 2020 - Philosophy of the Social Sciences (3).
    Scientific progress has many facets and can be conceptualized in different ways, for example in terms of problem-solving, of truthlikeness or of growth of knowledge. The main claim of the paper is that the most important prerequisite of scientific progress is the institutionalization of competition and criticism. An institutional framework appropriately channeling competition and criticism is the crucial factor determining the direction and rate of scientific progress, independently on how one might wish to conceptualize scientific progress (...)
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  13. Assessing Scientific Theories: The Bayesian Approach.Stephan Hartmann & Radin Dardashti - 2019 - In Dawid Richard, Dardashti Radin & Thebault Karim (eds.), Epistemology of Fundamental Physics: Why Trust a Theory? Cambridge University Press. pp. 67–83.
    Scientific theories are used for a variety of purposes. For example, physical theories such as classical mechanics and electrodynamics have important applications in engineering and technology, and we trust that this results in useful machines, stable bridges, and the like. Similarly, theories such as quantum mechanics and relativity theory have many applications as well. Beyond that, these theories provide us with an understanding of the world and address fundamental questions about space, time, and matter. Here we trust that (...)
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  14. Scientific metaphysics.Nicholas Maxwell - 2004 - Philsci Archive.
    In this paper I argue that physics makes metaphysical presuppositions concerning the physical comprehensibility, the dynamic unity, of the universe. I argue that rigour requires that these metaphysical presuppositions be made explicit as an integral part of theoretical knowledge in physics. An account of what it means to assert of a theory that it is unified is developed, which provides the means for partially ordering dynamical physical theories with respect to their degrees of unity. This in turn makes it possible (...)
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  15. Time in the ontology of Cornelius Castoriadis.Alexandros Schismenos - 2018 - SOCRATES 5 (3 & 4):64-81.
    We can locate the problematic of time within three philosophical questions, which respectively designate three central areas of philosophical reflection and contemplation. These are: 1) The ontological question, i.e. 'what is being?' 2) The epistemological question, i.e. 'what can we know with certainty?' 3) The existential question, i.e. 'what is the meaning of existence?' These three questions, which are philosophical, but also scientific and political, as they underline the political and moral question of truth and justice, arise from (...)
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  16. The scientific limits of understanding the (potential) relationship between complex social phenomena: the case of democracy and inequality.Alexander Krauss - 2016 - Journal of Economic Methodology 23 (1):97-109.
    This paper outlines the methodological and empirical limitations of analysing the potential relationship between complex social phenomena such as democracy and inequality. It shows that the means to assess how they may be related is much more limited than recognised in the existing literature that is laden with contradictory hypotheses and findings. Better understanding our scientific limitations in studying this potential relationship is important for research and policy because many leading economists and other social scientists such as Acemoglu and (...)
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  17. Time's arrow and self‐locating probability.Eddy Keming Chen - 2021 - Philosophy and Phenomenological Research 105 (3):533-563.
    One of the most difficult problems in the foundations of physics is what gives rise to the arrow of time. Since the fundamental dynamical laws of physics are (essentially) symmetric in time, the explanation for time's arrow must come from elsewhere. A promising explanation introduces a special cosmological initial condition, now called the Past Hypothesis: the universe started in a low-entropy state. Unfortunately, in a universe where there are many copies of us (in the distant ''past'' or (...)
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  18. Scientific Worldviews as Promises of Science and Problems of Philosophy of Science.Thomas Mormann - 2017 - Centaurus 59 (3):189 - 203.
    The aim of this paper is to show that global scientific promises aka “scientific world-conceptions” have an interesting history that should be taken into account also for contemporary debates. I argue that the prototypes of many contemporary philosophical positions concerning the role of science in society can already be found in the philosophy of science of the 1920s and 1930s. First to be mentioned in this respect is the Scientific World-Conception of the Vienna Circle (The Manifesto) that (...)
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  19. Strong Programme against Scientific Knowledge and Its Autonomy.Alper Bilgehan Yardımcı - 2017 - Posseible Düşünme Dergisi 6 (11):34-40.
    Science and scientific knowledge have been questioned in many ways for a long period of time. Especially, after the scientific revolution of 16th- and 17th-century Europe, science and its knowledge have been mainly accepted one of the most valuable and trustable information. However, in 20th century, autonomy of scientific knowledge and its dominant position over other kinds of knowledge have been mainly criticised. Social and other factors that were tried to be excluded before have been incorporated (...)
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  20. Scientific Realism without Rigid Designation in Kant's Analogies.David Landy - 2016 - Kant E-Prints 11 (2):70-89.
    In Kant, Science, and Human Nature, Robert Hanna argues against a version of scientific realism founded on the Kripke/Putnam theory of reference, and defends a Kant-inspired manifest realism in its place. I reject Kriple/Putnam for different reasons than Hanna does, and argue that what should replace it is not manifest realism, but Kant‘s own scientific realism, which rests on a radically different theory of reference. Kant holds that we picture manifest objects by uniting manifolds of sensation using concepts-qua-inferential-rules. (...)
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  21. (1 other version)Philosophical and scientific interaction between Vladimir Vernadsky and Pavel Florensky.Lenka Naldoniová - 2020 - Вестник Спбгу. Философия И Конфликтология 36 (4):645-656.
    The article focuses on the philosophical and scientific dialogue between Vladimir Vernadsky and Pavel Florensky in the context of Russian philosophy. Florensky formulated his philosophy in the book The Pillar and Ground of the Truth, making a great impact on Vernadsky. The two philosophers exchanged their thoughts through letters. During the time of his imprisonment, Florensky wrote letters on scientific topics to his son Kirill, who worked with Vernadsky. Thus, Kirill Florensky became the point of contact between (...)
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  22. The Time Flow Manifesto Chapter 4 Metaphysical Time Flow.Andrew Holster - manuscript
    In the philosophy of time, the neo-positivist is focussed above all else on sustaining the view called the static theory of time, as the very foundation of their scientific metaphysics. This is the deeply held metaphysical conviction of almost all ‘modern philosophical-scientific’ writers on time. In fact it is hardly too much to say that the entire official modern 20th Century philosophy of physics rests on the assumption that the static theory of space-time is (...)
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  23. The use of scientific arguments as a mode of justification. What place does it have in politics and law? A case study of EU GMO regulation.Pierre Walckiers - 239 - de Europa:177-212.
    The aim of this master’s thesis is to analyse and highlight the interaction between science, politics and law. More precisely, our research question concerns the use of scientific arguments in social spheres (notably in politics and law) instead of legal or political arguments. In fact, we want to raise the way in which certain actors invoke scientific arguments to impose "objective" elements of fact in debate and, in this way, refrain from politically and "subjectively" discussing these same elements (...)
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  24. Einstein Vs. Bergson: An Enduring Quarrel on Time.Alessandra Campo & Simone Gozzano (eds.) - 2021 - Boston: De Gruyter.
    This book brings together papers from a conference that took place in the city of L'Aquila, 4–6 April 2019, to commemorate the 10th anniversary of the earthquake that struck on 6 April 2009. Philosophers and scientists from diverse fields of research debated the problem that, on 6 April 1922, divided Einstein and Bergson: the nature of time. For Einstein, scientific time is the only time that matters and the only time we can rely on. Bergson, (...)
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  25.  95
    Stop calculating: it is about time to start thinking!Vasil Penchev - 2024 - Metaphysics eJournal (Elsevier: SSRN) 17 (14):1-61.
    The paper is a partly provocative essay edited as a humanitarian study in philosophy of science and social philosophy, reflecting on the practical, “anti-metaphysical” turn taken place since the 20th century and continuing until now. The article advocates that it is about time it to be overcome because it is the main obstacle for the further development of exact and natural sciences including mathematics therefore restoring the unity of philosophy and sciences in the dawn of modern science when the (...)
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  26. The Time Flow Manifesto CHAPTER 6 PHILOSOPHICAL ISSUES.Andrew Holster - manuscript
    ‘Philosophy’ today has come to mean the academic ideological disputes between various grandiose ‘meta-philosophies’, rather than the content or explanation of the real problems and issues. I illustrate typical expressions of the conventional ‘scientific' anti-realist philosophy of time here, and how far it has infiltrated the scientific world view.
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  27. Complexity Reality and Scientific Realism.Avijit Lahiri - manuscript
    We introduce the notion of complexity, first at an intuitive level and then in relatively more concrete terms, explaining the various characteristic features of complex systems with examples. There exists a vast literature on complexity, and our exposition is intended to be an elementary introduction, meant for a broad audience. -/- Briefly, a complex system is one whose description involves a hierarchy of levels, where each level is made of a large number of components interacting among themselves. The time (...)
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  28. Scientific pluralism and the Chemical Revolution.Martin Kusch - 2015 - Studies in History and Philosophy of Science Part A 49:69-79.
    In a number of papers and in his recent book, Is Water H₂O? Evidence, Realism, Pluralism (2012), Hasok Chang has argued that the correct interpretation of the Chemical Revolution provides a strong case for the view that progress in science is served by maintaining several incommensurable “systems of practice” in the same discipline, and concerning the same region of nature. This paper is a critical discussion of Chang's reading of the Chemical Revolution. It seeks to establish, first, that Chang's assessment (...)
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  29. Margaret MacDonald’s scientific common-sense philosophy.Justin Vlasits - 2022 - British Journal for the History of Philosophy 30 (2):267-287.
    Margaret MacDonald (1907–56) was a central figure in the history of early analytic philosophy in Britain due to both her editorial work as well as her own writings. While her later work on aesthetics and political philosophy has recently received attention, her early writings in the 1930s present a coherent and, for its time, strikingly original blend of common-sense and scientific philosophy. In these papers, MacDonald tackles the central problems of philosophy of her day: verification, the problem of (...)
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  30. The Three-Times Problem: Commentary on Physical Time within Human Time.Matt Farr - 2023 - Frontiers in Psychology 14:1130228.
    In the two feature articles for this volume, Gruber et al and Buonomano & Rovelli focus on what the former call the 'two-times problem', in short, the apparent lack of fit between time as described by physical science and our own temporal experience, where 'experience' involves things like memory, anticipation, and perception of change and motion. In this short note I'll make the case that the twotimes problem is less serious than it is often made out to be in (...)
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  31. The concept of time management based on Ephesians 5: 15–17 and relevance to contemporary Christian leaders.Davidming Ming - 2021 - HTS Theological Studies 77 (No. 3 (2021)):2-9.
    Generally, it is common knowledge that humans have the same time, 24 hours a day, seven days a week, 31 days a month, 365 days per year, but most of them do not know how to manage time and manage it to be something useful and effectively. That is because many people do not have the discipline in filling time. Those days are filled with things that are not directed, even worse is that filling the time (...)
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  32. Time for Pragmatism.Huw Price - forthcoming - In Josh Gert (ed.), Neopragmatism.
    Are the distinctions between past, present and future, and the apparent ‘passage’ of time, features of the world in itself, or manifestations of the human perspective? Questions of this kind have been at the heart of metaphysics of time since antiquity. The latter view has much in common with pragmatism, though few in these debates are aware of that connection, and few of the view’s proponents think of themselves as pragmatists. For their part, pragmatists are often unaware of (...)
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  33. Formal models of the scientific community and the value-ladenness of science.Vincenzo Politi - 2021 - European Journal for Philosophy of Science 11 (4):1-23.
    In the past few years, social epistemologists have developed several formal models of the social organisation of science. While their robustness and representational adequacy has been analysed at length, the function of these models has begun to be discussed in more general terms only recently. In this article, I will interpret many of the current formal models of the scientific community as representing the latest development of what I will call the ‘Kuhnian project’. These models share with Kuhn a (...)
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  34. The Scientific Evidence for Materialism About Pain.Andrew Melnyk - 2015 - In Steven M. Miller (ed.), The Constitution of Phenomenal Consciousness: Toward a Science and Theory. Philadelphia: John Benjamins. pp. 310-329.
    This paper argues in unprecedented empirical and philosophical detail that, given only what science has discovered about pain, we should prefer the materialist hypothesis that pains are purely material over the dualist hypothesis that they are immaterial. The empirical findings cited provide strong evidence for the thesis of empirical supervenience: that to every sort of introspectible change over time in pains, or variation among pains at a time, there corresponds in fact a certain sort of simultaneous neural change (...)
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  35. The metaphysics of the Time-Machine.Alexandros Schismenos - 2019 - SOCRATES 6 (3 & 4):37-53.
    The concept of time-travel is a modern idea which combines the imaginary signification of rational domination, the imaginary signification of technological omnipotence, the imaginary concept of eternity and the imaginary desire for immortality. It is a synthesis of central conceptual schemata of techno-science, such as the linearity and homogeneity of time, the radical separation of subjectivity from the world, the radical separation of the individual from his/her social-historical environment. The emergence of this idea, its spread during the 20th (...)
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  36. The Threefold Emergence of Time unravels Physics'Reality.Guido J. M. Verstraeten & Willem W. Verstraeten - 2013 - Pensée 75 (12):136-142.
    Time as the key to a theory of everything became recently a renewed topic in scientific literature. Social constructivism applied to physics abandons the inevitable essentials of nature. It adopts uncertainty in the scope of the existential activity of scientific research. We have enlightened the deep role of social constructivism of the predetermined Newtonian time and space notions in natural sciences. Despite its incompatibility with determinism governing the Newtonian mechanics, randomness and entropy are inevitable when negative (...)
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  37. The Scientific Principle in Guru Nanak's Teaching.Devinder Pal Singh - 2000 - The Sikh Review 48 (7):17-24.
    Science is defined as systematized knowledge of any kind that reflects a precise application of facts or principles. Viewed in this light Guru Nanak's life was a continuous process of scientific experimentation and enunciation. In this article, an attempt is made to bring out the scientific temper and the application of the methodology of science in guru Nanak's life. Scientific methodology is defined as a mode of research in which a problem is identified, relevant data gathered, a (...)
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  38. Scientific iconoclasm and active imagination: synthetic cells as techo-schientific mandalas.Hub Zwart - 2018 - Life Sciences, Society and Policy 14 (1):1-17.
    Metaphors allow us to come to terms with abstract and complex information, by comparing it to something which is structured, familiar and concrete. Although modern science is “iconoclastic”, as Gaston Bachelard phrases it, scientists are at the same time prolific producers of metaphoric images themselves. Synthetic biology is an outstanding example of a technoscientific discourse replete with metaphors, including textual metaphors such as the “Morse code” of life, the “barcode” of life and the “book” of life. This paper focuses (...)
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  39. Towards Integrated Ethical and Scientific Analysis of Geoengineering: A Research Agenda.Nancy Tuana, Ryan L. Sriver, Toby Svoboda, Roman Olson, Peter J. Irvine, Jacob Haqq-Misra & Klaus Keller - 2012 - Ethics, Policy and Environment 15 (2):136 - 157.
    Concerns about the risks of unmitigated greenhouse gas emissions are growing. At the same time, confidence that international policy agreements will succeed in considerably lowering anthropogenic greenhouse gas emissions is declining. Perhaps as a result, various geoengineering solutions are gaining attention and credibility as a way to manage climate change. Serious consideration is currently being given to proposals to cool the planet through solar-radiation management. Here we analyze how the unique and nontrivial risks of geoengineering strategies pose fundamental questions (...)
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  40. 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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  41. Space-Time Intervals Underlie Human Conscious Experience, Gravity, and Everything.Richard Sieb - 2019 - Neuroquantology 17 (5):87-89.
    This short commentary discusses the importance of space-time intervals in scientific study. Space-time intervals underlie special relativity, general relativity, and quantum field theory. In doing so, space-time intervals underlie human conscious experience, gravity, and a theory of everything. Space-time intervals also explain many puzzling scientific phenomena: quantum phenomena, dark matter, dark energy, the origin and evolution of the universe, and the life force. The importance of space-time intervals cannot be overestimated. Two articles published (...)
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  42. Classical Pragmatism and Metaphysics: James and Peirce on Scientific Determinism.Donata Romizi - 2017 - In Sami Pihlström, Friedrich Stadler & Niels Weidtmann (eds.), Logical Empiricism and Pragmatism. Cham: Springer Verlag. pp. 43-66.
    The present paper has two main aims. The first one is philosophical and is related to the general topic of this volume (Logical Empiricism and Pragmatism): I would like to draw attention to the fact that the issue of classical scientific determinism, despite being ‘metaphysical’ and thereby ‘nonsensical’ according to the Vienna Circle's ‘scientific world conception’, bothered philosophers, like William James and Charles Peirce, who were deeply involved in scientific practice. At the end of the paper I (...)
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  43. The Sense of Time.Gerardo Viera - 2020 - British Journal for the Philosophy of Science 71 (2):443-469.
    It’s often claimed in the philosophical and scientific literature on temporal representation that there is no such thing as a genuine sensory system for time. In this paper, I argue for the opposite—many animals, including all mammals, possess a genuine sensory system for time based in the circadian system. In arguing for this conclusion, I develop a semantics and meta-semantics for explaining how the endogenous rhythms of the circadian system provide organisms with a direct information link to (...)
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  44. Time[REVIEW]Matias Slavov - 2023 - Philosophy 98 (2):243-248.
    The topic of this book is vast. The author Heather Dyke has less than 80 pages to expound on the nature of time. Her starting point is the distinction between the common-sense and the scientific conception of time. The former includes two points: a special present moment and the understanding that time is dynamic. The latter eschews both points.
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  45. Tenses, changes, and space-time.Jan Faye - 2008 - In Time in the Different Scientific Approaches. Genova: Tilgher. pp. 89-104.
    Here I develop the idea, which I have presented elsewhere, that time instants are abstract entities existing tenselessly and therefore that events and changes likewise may be said to exist tenselessly in virtue of their place at a certain space-time point.
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  46. Machine learning in scientific grant review: algorithmically predicting project efficiency in high energy physics.Vlasta Sikimić & Sandro Radovanović - 2022 - European Journal for Philosophy of Science 12 (3):1-21.
    As more objections have been raised against grant peer-review for being costly and time-consuming, the legitimate question arises whether machine learning algorithms could help assess the epistemic efficiency of the proposed projects. As a case study, we investigated whether project efficiency in high energy physics can be algorithmically predicted based on the data from the proposal. To analyze the potential of algorithmic prediction in HEP, we conducted a study on data about the structure and outcomes of HEP experiments with (...)
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  47. G. W. Leibniz and Scientific Societies.Markku Roinila - 2009 - Journal of Technology Management 46 (1-2):165-179.
    The famous philosopher Leibniz (1646-1716) was also active in the (cultural) politics of his time. His interest in forming scientific societies never waned and his efforts led to the founding of the Berlin Academy of Sciences. He also played a part in the founding of the Dresden Academy of Science and the St. Petersburg Academy of Science. Though Leibniz's models for the scientific society were the Royal Society and the Royal Science Academy of France, his pansophistic vision (...)
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  48. Dynamical versus structural explanations in scientific revolutions.Mauro Dorato - 2017 - Synthese 194 (7):2307-2327.
    By briefly reviewing three well-known scientific revolutions in fundamental physics (the discovery of inertia, of special relativity and of general relativity), I claim that problems that were supposed to be crying for a dynamical explanation in the old paradigm ended up receiving a structural explanation in the new one. This claim is meant to give more substance to Kuhn’s view that revolutions are accompanied by a shift in what needs to be explained, while suggesting at the same time (...)
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  49. Time's Paradigm.Alan Graham & Alan R. Graham - 2020
    This wide ranging discourse covers many disciplines of science and the human condition in an attempt to fully understand the manifestation of time. Time's Paradigm is, at its inception, a philosophical debate between the theories of 'Presentism' and 'The Block Model', beginning with a pronounced psychological analysis of 'free will' in an environment where the past and the future already exist. It lays the foundation for the argument that time is a cyclical, contained progression, rather than a (...)
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  50. Representation and Invariance of Scientific Structures.Patrick Suppes - 2002 - CSLI Publications (distributed by Chicago University Press).
    An early, very preliminary edition of this book was circulated in 1962 under the title Set-theoretical Structures in Science. There are many reasons for maintaining that such structures play a role in the philosophy of science. Perhaps the best is that they provide the right setting for investigating problems of representation and invariance in any systematic part of science, past or present. Examples are easy to cite. Sophisticated analysis of the nature of representation in perception is to be found already (...)
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