Results for 'Physics Manuscripts'

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  1. Physical Foundations of Mathematics (In Russian).Andrey Smirnov - manuscript
    The physical foundations of mathematics in the theory of emergent space-time-matter were considered. It is shown that mathematics, including logic, is a consequence of equation which describes the fundamental field. If the most fundamental level were described not by mathematics, but something else, then instead of mathematics there would be consequences of this something else.
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  2. Physics beyond catching a mouse in the dark: From Big Science to Deep Science.Victor Christianto & Florentin Smarandache - manuscript
    The Higgs particle has been detected a few years ago, that is what newspapers tell us. For many physicists, the Standard Model of particle physics has accomplished all the jobs. Or to put it simply: The game is over. Is it true? Then some physicists began to ask: can go beyond the Standard Model? Because the supersymmetric extension of the Standard Model has failed. If you feel that theoretical physics is becoming boring, you are not alone. Fortunately, there (...)
     
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  3. Reflecting Particle Physics. On the relationship between the natural sciences and the humanities in the research group "The Epistemology of the Large Hadron Collider" (Manuscript).Gregor Schiemann - manuscript
  4. Physical science and common-sense psychology.Gilbert Harman - manuscript
    Scott Sehon argues for a complex view about the relation between commonsense psychology and the physical sciences.1 He rejects any sort of Cartesian dualism and believes that the common-sense psychological facts supervene on the physical facts. Nevertheless he asserts that there is an important respect in which common-sense psychology is independent of the physical sciences. Despite supervenience, we are not to expect any sort of reduction of common-sense psychology to physical science, nor are we to expect the physical sciences to (...)
     
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  5. Capturing the content of physics: Systems, observables, and experiments.Michael Kohlhase - unknown
    We present a content markup language for physics realized by extending the OMDoc format by an infrastructure for the principal concepts of physics: observables, physical systems, and experiments.
     
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  6. Physics and the Principle of Sufficient Reason.Sean M. Carroll - manuscript
    The Principle of Sufficient Reason (PSR) holds that, for everything that exists or occurs or holds true, there is a reason why that is the case. I consider three possible ways of relating physics to the PSR: past states as reasons for present states, reasons why the laws of physics take the form that they do, and reasons why there is anything at all. In each case I suggest that the PSR is not the best way of thinking (...)
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  7. The Fluid Margin between Physical Causal Closure and Non-Physical Causal Closure, extended to The Neutrosophic Causal Closure Principle.Florentin Smarandache - manuscript
    We plead for a fluid margin, or mixed/indeterminate buffer zone, between Physical and Non-Physical Causal Closures, and for a Neutrosophic Causal Closure Principle claiming that the chances of all physical effects are determined by their prior partially physical and partially non-physical causes.
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  8. Physics meets philosophy at the planck scale.Craig Callender & Nicholas Huggett - manuscript
    This is the table of contents and first chapter of Physics Meets Philosophy at the Planck Scale (Cambridge University Press, 2001), edited by Craig Callender and Nick Huggett. The chapter discusses the question of why there should be a theory of quantum gravity. We tackle arguments that purport to show that the gravitational field *must* be quantized. We then introduce various programs in quantum gravity and discuss areas where quantum gravity and philosophy seem to have something to say to (...)
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  9. The Physics and Electronics meaning of vivartanam.Varanasi Ramabrahmam - manuscript
    A modern scientific awareness of the famous advaitic expression Brahma sat, jagat mithya, jivo brahmaiva na aparah is presented. The one ness of jiva and Brahman are explained from modern science point of view. The terms dristi, adhyasa, vivartanam, aham and idam are understood in modern scientific terms and a scientific analysis is given. -/- Further, the forward (purodhana) and reverse (tirodhana) transformation of maya as jiva, prapancham, jagat and viswam, undergoing vivartanam is understood and explained using concepts from (...) and electronics. The application of such an understanding to the field of bionics, the electro-chemical neural communication processes is discussed. The possible use of this insight to build software for modeling human cognition and language learning and communication processes is hinted. -/- . (shrink)
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  10.  21
    Neutrino Physics: Curiouser and Curiouser.John Cramer - unknown
    Wolfgang Pauli first suggested the existence of what we now call the neutrino in order to preserve the law of conservation of energy. Previously, in 1911, James Chadwick had demonstrated that in the radioactive process called beta decay the emitted "beta particle" (now known to be an electron) was emitted with some random amount of its kinetic energy missing. Instead of the expected sharp spike of well-defined kinetic energy, a sample of many such emitted electrons showed that their kinetic energies (...)
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  11. Physical Possibility and Determinate Number Theory.Sharon Berry - manuscript
    It's currently fashionable to take Putnamian model theoretic worries seriously for mathematics, but not for discussions of ordinary physical objects and the sciences. But I will argue that (under certain mild assumptions) merely securing determinate reference to physical possibility suffices to rule out nonstandard models of our talk of numbers. So anyone who accepts realist reference to physical possibility should not reject reference to the standard model of the natural numbers on Putnamian model theoretic grounds.
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  12. The philosophy of physics.Barry Loewer - unknown
    It is not so much a distinct and established academic discipline as it is a sort of boundary, a sort of frontier, across which theoretical physics and modern western philosophy have been interrogating and informing and unsettling one another, for something on the order of four hundred years now, about the character of matter, the nature of space and time, the question of determinism, meaning of chance, the possibility of knowledge, and much else besides.
     
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  13. The state of physics: `Halfway through the Woods'.Jeremy Butterfield - manuscript
    I rst celebrate the immense success of twentieth century physics, but then urge that the future may bring many surprises, even in the basic structures of physical theories.
     
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  14. Discussion Notes on Physical Computation.Samuel C. Fletcher - unknown
    Much has been written as of late on the status of the physical Church- Turing thesis and the relation between physics and computer science in general. The following discussion will focus on one such article [5]. The purpose of these notes is not so much to argue for a particular thesis as it is to solicit a dialog that will help clarify our own thoughts.
     
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  15. The Simplicity of Physical Laws.Eddy Keming Chen - manuscript
    Physical laws are strikingly simple, although there is no a priori reason they must be so. I propose that nomic realists of all types (Humeans and non-Humeans) should accept that simplicity is a fundamental epistemic guide for discovering and evaluating candidate physical laws. This principle of simplicity clarifies and addresses several problems of nomic realism and simplicity. A consequence is that the oft-cited epistemic advantage of Humeanism over non-Humeanism disappears, undercutting an influential epistemological argument for Humeanism. Moreover, simplicity is shown (...)
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  16.  72
    Physics in neuroscience.Henry P. Stapp - manuscript
    Classical physics is a theory of nature that originated with the work of Isaac Newton in the seventeenth century and was advanced by the contributions of James Clerk Maxwell and Albert Einstein. Newton based his theory on the work of Johannes Kepler, who found that the planets appeared to move in accordance with a simple mathematical law, and in ways wholly determined by their spatial relationships to other objects. Those motions were apparently independent of our human observations of them.
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  17. The philosophy of physics.Jeremy Butterfield - manuscript
    This is an excellent book, by a very distinguished historian and philosopher of physics. Roberto Torretti is principally known to historians and philosophers of physics through his previous books, Philosophy of Geometry from Riemann to Poincaré (1978), Relativity and Geometry (1983), and Creative Understanding: Philosophical Reflections on Physics (1990). As the first two titles suggest, his forte is the history and philosophy of geometry and spacetime physics, especially from the nineteenth century onwards. These two books were (...)
     
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  18. Holism in the New Physics.John Collier - unknown
    Developments in science in the last few decades have led to doubts about the validity of the mechanical paradigm that has dominated science since the Scientific Revolution. The new views, coming from recently founded disciplines like non-equilibrium thermodynamics, chaos theory and the theory of dynamical systems, are rooted in physics. Nonetheless, much of their motivation comes from fields as diverse as weather prediction, ecology, economics, the study of traffic flow, and the growth of cities. Although Quantum Mechanics also led (...)
     
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  19. Compatibility of contemporary physical theory with personality survival.Henry P. Stapp - unknown
    Orthodox quantum mechanics is technically built around an element that von Neumann called Process 1. In its basic form it consists of an action that reduces the prior state of a physical system to a sum of two parts, which can be regarded as the parts corresponding to the answers ‘Yes’ and ‘No’ to a specific question that this action poses, or ‘puts to nature’. Nature returns one answer or the other, in accordance with statistical weightings specified by the theory. (...)
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  20.  92
    The Fluid Margin between Physical Causal Closure and Non-Physical Causal Closure, extended to The Neutrosophic Causal Closure Principle.Florentin Smarandache - manuscript
    We plead for a fluid margin, or mixed/indeterminate buffer zone, between Physical and Non-Physical Causal Closures, and for a Neutrosophic Causal Closure Principle claiming that the chances of all physical effects are determined by their prior partially physical and partially non-physical causes.
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  21. Quantum vacuum noise in physics and cosmology.Paul Davies - manuscript
    The concept of the vacuum in quantum field theory is a subtle one. Vacuum states have a rich and complex set of properties that produce distinctive, though usually exceedingly small, physical effects. Quantum vacuum noise is familiar in optical and electronic devices, but in this paper I wish to consider extending the discussion to systems in which gravitation, or large accelerations, are important. This leads to the prediction of vacuum friction: The quantum vacuum can act in a manner reminiscent of (...)
     
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  22. A few surprises about Non-Locality Interactions, Precognitive Interdiction, and the Spirit from Physics Viewpoint.Florentin Smarandache & Victor Christianto - manuscript
    There are various supernatural phenomena which hardly can be explained by the existing electromagnetic science, for instance non-locality interactions (may be associated with ESP etc), and also precognitive interdictions. And there are other problems such as how to include the Spirit in our consciousness. For example, it has been known for long time that intuition plays significant role in many professions and human life, including in entrepreneurship, government, and also in detective or law enforcement activities. Despite these examples, such a (...)
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  23. THE NOTION OF LOGOS FROM HERACLITUS TO MODERN PHYSICS.George Meskos - manuscript
    In this paper I argue that we can solve the interpretation problem of quantum mechanics and the question of ontology of Quantum Field Theory on the basis of simple metaphysical position: The connection of the phase space with the ancient Theory of Logi of Beings, which is, by giving ontological meaning to the entities which "live" at the phase space, the Hamiltonian or Lagrangian formalism. There is a physical subject of such functions and it is the logos of a being. (...)
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  24. From logic to physics: How the meaning of computation changed over time.Itamar Pitowsky - unknown
    The intuition guiding the de…nition of computation has shifted over time, a process that is re‡ected in the changing formulations of the Church-Turing thesis. The theory of computation began with logic and gradually moved to the capacity of …nite automata. Consequently, modern computer models rely on general physical principles, with quantum computers representing the extreme case. The paper discusses this development, and the challenges to the Church-Turing thesis in its physical form, in particular, Kieu’s quantum computer and relativistic hyper-computation. Finally, (...)
     
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  25.  87
    Pancomputationalism and the Computational Description of Physical Systems.Neal G. Anderson & Gualtiero Piccinini - manuscript
    According to pancomputationalism, all physical systems – atoms, rocks, hurricanes, and toasters – perform computations. Pancomputationalism seems to be increasingly popular among some philosophers and physicists. In this paper, we interpret pancomputationalism in terms of computational descriptions of varying strength—computational interpretations of physical microstates and dynamics that vary in their restrictiveness. We distinguish several types of pancomputationalism and identify essential features of the computational descriptions required to support them. By tying various pancomputationalist theses directly to notions of what counts as (...)
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  26. Physical Order vs. Divine Designer: Celestial Mechanics and Natural Theology Struggling for the System of the World.Massimiliano Badino - manuscript
  27. On Cellular Automata Representation of Submicroscopic Physics: From Static Space to Zuse’s Calculating Space Hypothesis.Victor Christianto, Volodymyr Krasnoholovets & Florentin Smarandache - manuscript
    In some recent papers (G. ‘t Hooft and others), it has been argued that quantum mechanics can arise from classical cellular automata. Nonetheless, G. Shpenkov has proved that the classical wave equation makes it possible to derive a periodic table of elements, which is very close to Mendeleyev’s one, and describe also other phenomena related to the structure of molecules. Hence the classical wave equation complements Schrödinger’s equation, which implies the appearance of a cellular automaton molecular model starting from classical (...)
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  28.  20
    Is the new physics really mystical?Nick Gier - manuscript
    There is widespread misuse of the word "mystical." Even religious scholars do not use the word precisely. In common parlance its meaning is so loose that the word has lost its power to communicate anything intelligible. The popular books..
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  29. Principles of physical time directionality and fallacies of the conventional philosophy.Andrew Holster - manuscript
    These are the first two chapters from a monograph (The Time Flow Manifesto, Holster, 2013-14; unpublished), defending the concepts of time directionality and time flow in physics and naturalistic metaphysics, against long-standing attacks from the ‘conventional philosophy of physical time’. This monograph sets out to disprove twelve specific “fallacies of the conventional philosophy”, stated in the first section below. These are the foundational principles of the conventional philosophy, which developed in the mid-C20th from positivist-inspired studies. The first chapter begins (...)
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  30.  20
    Ruliology: Linking Computation, Observers and Physical Law.Dean Rickles, Hatem Elshatlawy & Xerxes D. Arsiwalla - manuscript
    Stephen Wolfram has recently outlined an unorthodox, multicomputational approach to fundamental theory, encompassing not only physics but also mathematics in a structure he calls The Ruliad, understood to be the entangled limit of all possible computations. In this framework, physical laws arise from the the sampling of the Ruliad by observers (including us). This naturally leads to several conceptual issues, such as what kind of object is the Ruliad? What is the nature of the observers carrying out the sampling, (...)
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  31.  16
    Subj: Physics and Philosophy.Henry P. Stapp - unknown
    In order to derive any conclusions from CM about a specific system one must, of course, specify what the system is, and do so within the language and conceptual framework of that theory. These specifications within the mathematical framework of CM are the `boundary conditions' that a physicist must introduce to make the problem mathematically well defined.
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  32. Physics and the Philosophy of Science – Diagnosis and analysis of a misunderstanding, as well as conclusions concerning biology and epistemology.Rudolf Lindpointner - manuscript
    For two reasons, physics occupies a preeminent position among the sciences. On the one hand, due to its recognized position as a fundamental science, and on the other hand, due to the characteristic of its obvious certainty of knowledge. For both reasons it is regarded as the paradigm of scientificity par excellence. With its focus on the issue of epistemic certainty, philosophy of science follows in the footsteps of classical epistemology, and this is also the basis of its 'judicial' (...)
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  33.  55
    Physics as theodicy.Don Howard - unknown
    On Saturday, August 26, 1893, thirteen-year-old Edith Low Babson was swimming in her favorite swimming hole on the Annisquam river in her home town of Gloucester, Massachusetts. Though she was a strong swimmer, something went wrong, and she drowned. A tragedy like all such. But this drowning had unusual consequences. Edith’s older brother was Roger W. Babson, who grew up to become one of America’s most prominent businessmen of the early twentieth century. A statistician, prolific author, philanthropist, founder of Babson (...)
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  34. Commentary on Mathias Frisch's Causal Reasoning in Physics.Ney Alyssa - manuscript
    This is a commentary on Mathias Frisch's book Causal Reasoning in Physics (Cambridge 2014). This commentary was presented at the 2016 Pacific Division Meeting of the American Philosophical Association in a session sponsored by the Society for the Metaphysics of Science.
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  35. When mathematics touches physics: Henri Poincaré on probability.Jacintho Del Vecchio Junior - manuscript
    Probability plays a crucial role regarding the understanding of the relationship which exists between mathematics and physics. It will be the point of departure of this brief reflection concerning this subject, as well as about the placement of Poincaré’s thought in the scenario offered by some contemporary perspectives.
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  36. Priority monism, physical intentionality and the internal relatedness of all things.Hilan Bensusan & Manuel de Pinedo - manuscript
    Schaffer (2010) argues that the internal relatedness of all things, no matter how it is conceived, entails priority monism. He claims that a sufficiently pervasive internal relation among objects implies the priority of the whole, understood as a concrete object. This paper shows that at least in the case of an internal relatedness of all things conceived in terms of physical intentionality - one way to understand dispositions - priority monism not only doesn't follow but also is precluded. We conclude (...)
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  37. Deconstructing the Physical World: Relationship to Russellian Monism.Brendon Hammer - manuscript
    This is Appendix A to the note: Deconstructing the Physical World (DPW). It shows how the conceptual framework developed in DPW relates to Russellian Monism (RM) and that it can accrue RM’s benefits while defeating the combination problem that challenges many RMs.
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  38. On the physical possibility of ordinal computation (draft).Jeffrey A. Barrett & Wayne Aitken - unknown
    α-recursion lifts classical recursion theory from the first transfinite ordinal ω to an arbitrary admissible ordinal α [10]. Idealized computational models for α-recursion analogous to Turing machine models for classical recursion have been proposed and studied [4] and [5] and are applicable in computational approaches to the foundations of logic and mathematics [8]. They also provide a natural setting for modeling extensions of the algorithmic logic described in [1] and [2]. On such models, an α-Turing machine can complete a θ-step (...)
     
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  39. Pregeometry, Formal Language and Constructivist Foundations of Physics.Xerxes D. Arsiwalla, Hatem Elshatlawy & Dean Rickles - manuscript
    How does one formalize the structure of structures necessary for the foundations of physics? This work is an attempt at conceptualizing the metaphysics of pregeometric structures, upon which new and existing notions of quantum geometry may find a foundation. We discuss the philosophy of pregeometric structures due to Wheeler, Leibniz as well as modern manifestations in topos theory. We draw attention to evidence suggesting that the framework of formal language, in particular, homotopy type theory, provides the conceptual building blocks (...)
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  40. Physics and ontology - or The 'ontology-ladenness' of epistemology and the 'scientific realism'-debate.Rudolf Lindpointner - manuscript
    The question of what ontological insights can be gained from the knowledge of physics (keyword: ontic structural realism) cannot obviously be separated from the view of physics as a science from an epistemological perspective. This is also visible in the debate about 'scientific realism'. This debate makes it evident, in the form of the importance of perception as a criterion for the assertion of existence in relation to the 'theoretical entities' of physics, that epistemology itself is 'ontologically (...)
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  41. Condensed Matter Physics.Jonathan Bain - manuscript
    In this essay, I consider what condensed matter physics has to say about the nature of spacetime. In particular, I consider the extent to which spacetime can be modeled as a quantum liquid, with matter and force fields described by effective field theories of the low-energy excitations of the liquid. After a brief review of effective field theories in 2-dim highly-correlated condensed matter systems, I evaluate analogies in the recent physics literature between spacetime and superfluid Helium, and proposals (...)
     
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  42. Levels of Fundamentality in the Metaphysics of Physics.Karen Crowther - manuscript
    Within physics there are two ways of establishing the relative fundamentality of one theory compared to another, via two senses of reduction: "inter-level" and "intra-level" (Crowther, 2018). The former is standardly recognised as roughly correlating with the chain of ontological dependence (i.e., the phenomena described by theories of macro-physics are typically supposed to be ontologically dependent on the entities/behaviour described by theories of micro-physics), and thus has been of interest to naturalised metaphysics. The latter, though, has not (...)
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  43. Consciousness without Physical Basis. A Metaphysical Meditation on the Immortality of the Soul.Olaf L. Müller - manuscript
    Can we conceive of a mind without body? Does, for example, the idea of the soul's immortality make sense? Certain versions of materialism deny such questions; I shall try to prove that these versions of materialism cannot be right. They fail because they cannot account for the mental vocabulary from the language of brains in the vat. Envatted expressions such as "I think", "I believe", etc., do not have to be reinterpreted when we translate them to our language; they are (...)
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  44.  36
    Topology, chronology, and order of magnitude of physical individuation.John Protevi - unknown
    For the most part, this is a fairly literal translation, but I have opted for a few English idioms for the sake of readability. In that spirit, I have kept the original punctuation, which results in very long sentences, but I have inserted paragraph breaks for readability. I mark these inserted breaks with this sign [¶]; unmarked breaks are in the original. In addition to providing the French for difficult translations, I also interpolate a few English words for readability. Simondon’s (...)
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  45. Deconstructing the Physical World.Brendon Hammer - manuscript
    Some metaphysics are provided showing that what is commonly called ‘the physical world’ can be deconstructed into three ‘levels’: a single, unified ‘noumenal world’ on which everything supervenes; a ‘phenomenal world’ that we each privately experience through direct perception of phenomena; and a ‘collective world’ that people in any given ‘language using group’ experience through learning, using and adapting that group’s language. This deconstruction is shown to enable a clear account of qualia and of how people can hold some things (...)
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  46. The Time Flow Manifesto CHAPTER 2 TIME SYMMETRY IN PHYSICS.Andrew Holster - manuscript
    This chapter starts with a simple conventional presentation of time reversal in physics, and then returns to analyse it, rejects the conventional analysis, and establishes correct principles in their place.
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  47.  36
    Using representations of space to study early modern physical science: An example of philosophy in the service of history.David Marshall Miller - manuscript
    Most historians of science eagerly acknowledge that the early modern period witnessed a shift from a prevailing Aristotelian, spherical, centered conception of space to a prevailing Cartesian, rectilinear, oriented spatial framework. Indeed, this shift underlay many of the important advances for which the period is celebrated. However, historians have failed to engage the general conceptual shift, focusing instead on the particular explanatory developments that resulted. This historical lacuna can be attributed to a historiographical problem: the lack of an adequate unit (...)
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  48. Functionalism Fit for Physics.Eleanor Knox & David Wallace - manuscript
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  49. Physical object.Ned Markosian - manuscript
    Physical objects are the most familiar of all objects, and yet the concept of a physical object remains elusive. Any six-year-old can give you a dozen examples of physical objects, and most people with at least one undergraduate course in philosophy can also give examples of non-physical objects. But if asked to produce a definition of ‘physical object’ that adequately captures the distinction between the physical and the nonphysical, the average person can offer little more than hand-waving.
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  50. VF You claim that it is possible to eradicate all suffering on earth, whether physical or mental. When?David Pearce - unknown
    D.P. It will technically be possible to get rid of all suffering within a century or two. Its abolition would be practical only if it were agreed in the sense of something like the moon program or the human genome project – if there was a degree of social consensus. There are certainly technological obstacles, but they are dwarfed by the ethical-ideological ones. Many people’s negative reaction to the idea of a world without suffering comes from a fear that someone (...)
     
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