Results for 'celestial motion'

526 found
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  1.  58
    The ethics of celestial physics in late antique Platonism.Dirk Baltzly - 2016 - In Thomas Buchheim, David Meissner & Nora Wachsmann (eds.), Sōma: Körperkonzepte und körperliche Existenz in der antiken Philosophie und Literatur. Hamburg: Felix Meiner Verlag. pp. 183-97.
    Plato's Tim. 90b1-c6 describes a pathway to the soul's salvation via the study of the heavens. This paper poses three questions about this theme in Platonism: 1. The epistemological question: How is the paradigmatic function of the visible heavenly bodies to be reconciled with various Platonic misgivings about the faculty of perception? 2. The metaphysical question: How can »assimilation« to the motions of bodies in the realm of Becoming provide for the salvation of souls when souls are »higher«- a mid-point (...)
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  2.  89
    An alternative to the Empirical Physics of Motion and Gravity in Explaining the Big Bang.Mohamed Magueramane - manuscript
    This paper is based on a proposition concerning the origins of the universe that would not hold without the following principles: (1) the big bang did not emerge from nothing, without a primordial cause; (2) the unempirical nature of Isaac Newton’s laws of inertia are unempirical lead to the conclusion that motion is inherent in the universe (3) gravity is a function of celestial objects falling and rotating around other objects as their natural motion gets obstructed; (4) (...)
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  3. Aristotle on Divine and Human Contemplation.Bryan Reece - 2020 - Ergo: An Open Access Journal of Philosophy 7:131–160.
    Aristotle’s theory of human happiness in the Nicomachean Ethics explicitly depends on the claim that contemplation (theôria) is peculiar to human beings, whether it is our function or only part of it. But there is a notorious problem: Aristotle says that divine beings also contemplate. Various solutions have been proposed, but each has difficulties. Drawing on an analysis of what divine contemplation involves according to Aristotle, I identify an assumption common to all of these proposals and argue for rejecting it. (...)
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  4. Copernicus and Axiomatics.Alberto Bardi - 2021 - In Bharath Sriraman (ed.), Handbook of the History and Philosophy of Mathematical Practice. Springer.
    The debate about the foundations of mathematical sciences traces back to Greek antiquity, with Euclid and the foundations of geometry. Through the flux of history, the debate has appeared in several shapes, places, and cultural contexts. Remarkably, it is a locus where logic, philosophy, and mathematics meet. In mathematical astronomy, Nicolaus Copernicus’s axiomatic approach toward a heliocentric theory of the universe has prompted questions about foundations among historians who have studied Copernican axioms in their terminological and logical aspects but never (...)
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  5. A mestizo cosmographer in the New Kingdom of Granada: astronomy and chronology in Sánchez de Cozar Guanientá’s Tratado (c.1696).Sergio H. Orozco-Echeverri & Sebastián Molina-Betancur - 2021 - Annals of Science 78 (3):295-333.
    ABSTRACT This article interprets a recently recovered manuscript, Tratado de astronomía y la reformaçión del tiempo, composed by Antonio Sánchez in New Granada c.1696, in the context of the Spanish and Renaissance cosmographies. Sánchez’s Tratado proposes a spherical astronomy, in which celestial bodies – including comets — move in orbs containing pyramidal knots that explain the changing speed observed in the motion of planets. From this astronomy and following the peninsular style of repertorios, Sánchez derives two major conclusions: (...)
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  6. DESCARTES ON THE DISPOSITION OF THE BLOOD AND THE SUBSTANTIAL UNION OF MIND AND BODY.John Harfouch - 2014 - Studia Philosophica 58 (3):109-124.
    ABSTRACT. This essay addresses the interpretation of Descartes’ understanding of the mind-body relationship as a substantial union in light of a statement he makes in the Passions de l’âme regarding the role of the blood and vital heat. Here, it seems Descartes cites these corporeal properties as the essential dispositions responsible for accommodating the soul into the human fetus. I argue that this statement should be read in the context of certain medical texts with which Descartes was familiar, namely those (...)
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  7. Before the Creation of Time in Plato’s Timaeus.Daniel Vázquez - 2022 - In Daniel Vázquez & Alberto Ross (eds.), Time and Cosmology in Plato and the Platonic Tradition. pp. 111–133.
    I defend, against its more recent critics, a literal, factual, and consistent interpretation of Timaeus’ creation of the cosmos and time. My main purpose is to clarify the assumptions under which a literal interpretation of Timaeus’ cosmology becomes philosophically attractive. I propose five exegetical principles that guide my interpretation. Unlike previous literalists, I argue that assuming a “pre-cosmic time” is a mistake. Instead, I challenge the exegetical assumptions scholars impose on the text and argue that for Timaeus, a mere succession (...)
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  8.  86
    Preserving Absolute Simultaneity with the Lorentz Transformation.Attilio Colombo - manuscript
    In this work it is shown how absolute simultaneity of spatially distinct events can be established by means of a general criterion based on isotropically propagating signals and how it can be consistently preserved also when operating with Lorentz-like coordinate transformations between moving frames. The specific invariance properties of these transformations of coordinates are discussed, leading to a different interpretation of the physical meaning of the transformed variables with respect to their prevailing interpretation when associated with the Lorentz transformation. On (...)
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  9. Archeology of Consciousness ↔ The Ontological Basification of Mathematics (Knowledge) ↔ The Nature of Consciousness. [REVIEW]Vladimir Rogozhin - manuscript
    A condensed summary of the adventures of ideas (1990-2020). Methodology of evolutionary-phenomenological constitution of Consciousness. Vector (BeVector) of Consciousness. Consciousness is a qualitative vector quantity. Vector of Consciousness as a synthesizing category, eidos-prototecton, intentional meta-observer. The development of the ideas of Pierre Teilhard de Chardin, Brentano, Husserl, Bergson, Florensky, Losev, Mamardashvili, Nalimov. Dialectic of Eidos and Logos. "Curve line" of the Consciousness Vector from space and time. The lower and upper sides of the "abyss of being". The existential tension of (...)
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  10. Self‐Motion and Cognition: Plato's Theory of the Soul.Douglas R. Campbell - 2021 - Southern Journal of Philosophy 59 (4):523-544.
    I argue that Plato believes that the soul must be both the principle of motion and the subject of cognition because it moves things specifically by means of its thoughts. I begin by arguing that the soul moves things by means of such acts as examination and deliberation, and that this view is developed in response to Anaxagoras. I then argue that every kind of soul enjoys a kind of cognition, with even plant souls having a form of Aristotelian (...)
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  11. Seeing motion and apparent motion.Christoph Hoerl - 2015 - European Journal of Philosophy 23 (3):676-702.
    In apparent motion experiments, participants are presented with what is in fact a succession of two brief stationary stimuli at two different locations, but they report an impression of movement. Philosophers have recently debated whether apparent motion provides evidence in favour of a particular account of the nature of temporal experience. I argue that the existing discussion in this area is premised on a mistaken view of the phenomenology of apparent motion and, as a result, the space (...)
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  12.  48
    Substantial motion, 400 years of wishful thinking!Majid Borumand - manuscript
    The concept of Substantial motion (حركت جوهرى) is fundamentally flawed and severely muddled. Aristotle and Mulla Sadra’s conception of motion, substance (جوهر) and substantial form صورت نوعيه)) were all based on a severe misunderstanding of nature as later was established by the scientists and philosophers that came after them. Here, by recalling the established facts of modern science, particularly the universally accepted scientific fact that, properties of objects are reducible to the motion of their electrons and there’s (...)
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  13. Motion and the Affection Argument.Colin McLear - 2018 - Synthese 195 (11):4979-4995.
    In the Metaphysical Foundations of Natural Science, Kant presents an argument for the centrality of <motion> to our concept <matter>. This argument has long been considered either irredeemably obscure or otherwise defective. In this paper I provide an interpretation which defends the argument’s validity and clarifies the sense in which it aims to show that <motion> is fundamental to our conception of matter.
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  14. Motion in Leibniz's Middle Years: A Compatibilist Approach.Stephen Puryear - 2012 - Oxford Studies in Early Modern Philosophy 6:135-170.
    In the texts of the middle years (roughly, the 1680s and 90s), Leibniz appears to endorse two incompatible approaches to motion, one a realist approach, the other a phenomenalist approach. I argue that once we attend to certain nuances in his account we can see that in fact he has only one, coherent approach to motion during this period. I conclude by considering whether the view of motion I want to impute to Leibniz during his middle years (...)
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  15. Motion and Rest as Genuinely Greatest Kinds in the Sophist.Christopher Buckels - 2015 - Ancient Philosophy 35 (2):317-327.
    The paper argues that Motion and Rest are “greatest kinds” and not just convenient examples, since they are all-pervading. Thus Motion and Rest can be jointly predicated of a single subject and can be predicated of each other, just as Sameness and Otherness can. While Sameness and Otherness are opposites, a single subject may be the same in one respect, namely, the same as itself, and other in another respect, namely, other than other things. Thus they can be (...)
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  16. On Classical Motion.C. D. McCoy - 2018 - Philosophers' Imprint 18.
    The impetus theory of motion states that to be in motion is to have a non-zero velocity. The at-at theory of motion states that to be in motion is to be at different places at different times, which in classical physics is naturally understood as the reduction of velocities to position developments. I first defend the at-at theory against the criticism raised by Arntzenius that it renders determinism impossible. I then develop a novel impetus theory of (...)
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  17. Motion and God in XVIIth Century Cartesian manuals: Rohault, Régis and Gadroys.Nausicaa Elena Milani - 2015 - Noctua 2 (1-2):481-516.
    This work takes into account three Cartesian manuals diffused in 17th century France ; Jacques Rohault, Traité de physique ; Pierre-Sylvain Régis, Cours entier de philosophie, ou système general selon les principes de M. Descartes contenant la logique, la metaphysique, la physique et la morale ) in order to question if the development of an empirical attitude in the scientific research influenced their approaches to the study of motion. The article intends to deepen the role that these authors give (...)
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  18. Force, Motion, and Leibniz’s Argument from Successiveness.Peter Myrdal - 2021 - Archiv für Geschichte der Philosophie 103 (4):704-729.
    This essay proposes a new interpretation of a central, and yet overlooked, argument Leibniz offers against Descartes’s power-free ontology of the corporeal world. Appealing to considerations about the successiveness of motion, Leibniz attempts to show that the reality of motion requires force. It is often assumed that the argument is driven by concerns inspired by Zeno. Against such a reading, this essay contends that Leibniz’s argument is instead best understood against the background of an Aristotelian view of the (...)
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  19. True Motion Ch 4: Leibniz.Nicholas Huggett -
    This item is a chapter from a book in progress, entitled "True Motion". Leibniz’s mechanics was, as we shall see, a theory of elastic collisions, not formulated like Huygens’ in terms of rules explicitly covering every possible combination of relative masses and velocities, but in terms of three conservation principles, including (effectively) the conservation of momentum and kinetic energy. That is, he proposed what we now call (ironically enough) ‘Newtonian’ (or ‘classical’) elastic collision theory. While such a theory is, (...)
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  20. Motions of sounds, bodies, and souls [Plato, Laws VII. 790e ff.].Evangelos Moutsopoulos - 2002 - Prolegomena 1 (2):113-119.
    This article explores how Plato, in his “metaphysical” dialogues, sees the specific properties of motion (and especially of motion in music), which lend themselves to adaptation for the purposes of maintaining or restoring the health of the soul. Plato explores the property of regular or rhythmic motion in particular. The attention has been drawn to the analogy between the calming effect of music, at the human level, and the Demiurge’s achievement in willing the world into existence. The (...)
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  21. The motion of the subject - a metaphor? Reply to Pollok.Jens Saugstad - manuscript
    In Critique of Pure Reason Kant speaks about motion, as action of the subject in connection with the actions by which we describe a space, such as drawing a line or constructing a circle. In a 1992-paper in Kant-Studien I argued that this is one important piece of textual evidence for the so-called externalist interpretation, according to which the transcendental conditions of experience and indeed all the a priori elements in Kant’s system are public, depending upon overt action. Konstantin (...)
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  22. Why Continuous Motions Cannot Be Composed of Sub-motions: Aristotle on Change, Rest, and Actual and Potential Middles.Caleb Cohoe - 2018 - Apeiron 51 (1):37-71.
    I examine the reasons Aristotle presents in Physics VIII 8 for denying a crucial assumption of Zeno’s dichotomy paradox: that every motion is composed of sub-motions. Aristotle claims that a unified motion is divisible into motions only in potentiality (δυνάμει). If it were actually divided at some point, the mobile would need to have arrived at and then have departed from this point, and that would require some interval of rest. Commentators have generally found Aristotle’s reasoning unconvincing. Against (...)
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  23. The Motion Principle (Every thing moved is moved by another).Eric Brown - manuscript
    This article proves that the motion principle of philosophical physics (every thing moved is moved by another) is truly compatible with the inertia principle of mathematical physics (Newton's First Law).
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  24. Illusions of Optimal Motion, Relationism, and Perceptual Content.Santiago Echeverri - 2017 - Pacific Philosophical Quarterly 98 (S1):146-173.
    Austere relationism rejects the orthodox analysis of hallucinations and illusions as incorrect perceptual representations. In this article, I argue that illusions of optimal motion present a serious challenge for this view. First, I submit that austere-relationist accounts of misleading experiences cannot be adapted to account for IOMs. Second, I show that any attempt at elucidating IOMs within an austere-relationist framework undermines the claim that perceptual experiences fundamentally involve relations to mind-independent objects. Third, I develop a representationalist model of IOMs. (...)
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  25. The Nonduality of Motion and Rest: Sengzhao on the Change of Things.Chien-Hsing Ho - 2018 - In Youru Wang & Sandra A. Wawrytko (eds.), Dao Companion to Chinese Buddhist Philosophy. Dordrecht: Springer. pp. 175-188.
    In his essay “Things Do Not Move,” Sengzhao (374?−414 CE), a prominent Chinese Buddhist philosopher, argues for the thesis that the myriad things do not move in time. This view is counter-intuitive and seems to run counter to the Mahayana Buddhist doctrine of emptiness. In this book chapter, I assess Sengzhao’s arguments for his thesis, elucidate his stance on the change/nonchange of things, and discuss related problems. I argue that although Sengzhao is keen on showing the plausibility of the thesis, (...)
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  26. No Time to Move: Motion, Painting and Temporal Experience.Jack Shardlow - 2020 - Philosophy 95 (3):239 - 260.
    This paper is concerned with the senses in which paintings do and do not depict various temporal phenomena, such as motion, stasis and duration. I begin by explaining the popular – though not uncontroversial – assumption that depiction, as a pictorial form of representation, is a matter of an experiential resemblance between the pictorial representation and that which it is a depiction of. Given this assumption, I illustrate a tension between two plausible claims: that paintings do not depict (...) in the sense that video recordings do, and that paintings do not merely depict objects but may depict those objects as engaged in various activities, such as moving. To resolve the tension, I demonstrate that we need to recognise an ambiguity in talk of the appearance of motion, and distinguish between the depiction of motion and the depiction of an object as an object that is moving. Armed with this distinction, I argue that there is an important sense in which paintings depict neither motion, duration, nor – perhaps more controversially – stasis. (shrink)
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  27. Nāgārjuna’s Arguments on Motion Revisited.Jan Westerhoff - 2008 - Journal of Indian Philosophy 36 (4):455-479.
    This paper discusses a somewhat neglected reading of the second chapter of Nāgārjuna’s Mūlamadhyamakakārikā, arguing that the main focus of a crucial part is a particular theory of properties and their relation to individuals they instantiate, rather than the refutation of specific assumptions about the nature of space and time. Some of Nāgārjuna’s key arguments about motion should be understood as argument templates in which notions other than mover, motion, and so forth could be substituted. The remainder of (...)
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  28. Absolute and relative motion.Marius Stan - 2022 - In Charles T. Wolfe & Dana Jalobeanu (eds.), Encyclopedia of Early Modern Philosophy and the Sciences. Springer. pp. 1-8.
    Modern philosophy of physics debates whether motion is absolute or relative. The debate began in the 1600s, so it deserves a close look here. Primarily, it was a controversy in metaphysics, but it had epistemic aspects too. I begin with the former, and then touch upon the latter at the end.
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  29. Berkeley on Voluntary Motion: A Conservationist Account.Takaharu Oda - 2018 - Ruch Filozoficzny 74 (4):71–98.
    A plausible reading of Berkeley’s view of voluntary motion is occasionalism; this, however, leads to a specious conclusion against his argument of human action. Differing from an unqualified occasionalist reading, I consider the alternative reading that Berkeley is a conservationist regarding bodily motion by the human mind at will. That is, finite minds (spirits) immediately cause motions in their body parts, albeit under the divine conservation. My argument then comports with the conservationist reading from three perspectives: (i) theodicy (...)
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  30. “The Power of Self-Motion in Cavendish’s Nature”.Marcy P. Lascano - 2021 - In Julia Jorati (ed.), Powers: A History. Oxford: Oxford University Press. pp. 169-188.
    Nature, according to Cavendish, has “an Infinite Natural power, that is, a power to produce infinite effects in her own self, by infinite changes of Motions.” While Cavendish mentions powers with respect to human beings, medicines, occasional causes, and other entities, these powers are really just the power of self-moving matter to cause changes in the world. This chapter examines why Cavendish attributes the power of self-motion to matter, what this power is, how it arose, how it is enacted, (...)
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  31. Rigid Body Motion in Special Relativity.Jerrold Franklin - 2013 - Foundations of Physics 43 (12):1489-1501.
    We study the acceleration and collisions of rigid bodies in special relativity. After a brief historical review, we give a physical definition of the term ‘rigid body’ in relativistic straight line motion. We show that the definition of ‘rigid body’ in relativity differs from the usual classical definition, so there is no difficulty in dealing with rigid bodies in relativistic motion. We then describe The motion of a rigid body undergoing constant acceleration to a given velocity.The acceleration (...)
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  32. Descartes, Spacetime, and Relational Motion.Edward Slowik - 1999 - Philosophy of Science 66 (1):117-139.
    This paper examines Descartes' problematic relational theory of motion, especially when viewed within the context of his dynamics, the Cartesian natural laws. The work of various commentators on Cartesian motion is also surveyed, with particular emphasis placed upon the recent important texts of Garber and Des Chene. In contrast to the methodology of most previous interpretations, however, this essay employs a modern "spacetime" approach to the problem. By this means, the role of dynamics in Descartes' theory, which has (...)
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  33. The Ethics of Motion: Self-Preservation, Preservation of the Whole, and the ‘Double Nature of the Good’ in Francis Bacon.Manzo Silvia - 2016 - In Lancaster Gilgioni (ed.), Motion and Power in Francis Bacon's Philosophy. Springer. pp. 175-200.
    This chapter focuses on the appetite for self-preservation and its central role in Francis Bacon’s natural philosophy. In the first part, I introduce Bacon’s classification of universal appetites, showing the correspondences between natural and moral philosophy. I then examine the role that appetites play in his theory of motions and, additionally, the various meanings accorded to preservation in this context. I also discuss some of the sources underlying Bacon’s ideas, for his views about preservation reveal traces of Stoicism, Telesian natural (...)
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  34. Aristotle’s Theory of Motion.Mohammad Bagher Ghomi - manuscript
    Aristotle defines motion as such: ‘The fulfillment of what exists potentially, in so far as it exist potentially, is motion.’ (Phy., Γ, 1, 201a10-11) He defines it again in the same chapter: ‘It is the fulfillment of what is potential when it is already fully real and operates not as itself but as movable, that is motion. What I mean by ‘as’ is this: Bronze is potentially a statue. But it is not the fulfillment of bronze as (...)
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  35. Contradiction in motion: Hegel's organic concept of life and value.Susan Songsuk Hahn - 2007 - Ithaca, New York: Cornell University Press.
    In this analysis of one of the most difficult and neglected topics in Hegelian studies, Songsuk Susan Hahn tackles the status of contradiction in Hegel's ...
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  36. The Medium for Motion: A Critical Clue to Understand Spacetime.Alfonso Leon Guillen Gomez - 2015 - International Journal of Modern Physics and Applications 1 (5):210-218.
    Spacetime and motion are interconnected concepts. A better understanding of motion leads to a better understanding of spacetime. We use the historical critical analysis of the various theoretical proposals on motion in search of clues ignored. The prediction of the general relativity that the motion occurs in the static gravitational field is not valid because the motion always occurs in a given medium as vacuum, atmosphere, water, etc. The concept of motion and the equations (...)
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  37. Aesthetics in Motion. On György Szerdahely’s Dynamic Aesthetics.Botond Csuka - 2018 - In Anthropologische Ästhetik in Mitteleuropa (1750–1850). Anthropological Aesthetics in Central Europe (1750–1850). (Bochumer Quellen und Forschungen zum achtzehnten Jahrhundert, 9). Hannover, Németország: pp. 153-180.
    György Alajos Szerdahely, the first professor of aesthetics in Pest, publishes his Aesthetica in 1778, a work, written in Latin, that not only engages with the eclectic university aesthetics of late-18th-century Germany and Central Europe, but also marks the beginning of the Hungarian aesthetic tradition. Szerdahely proposes aesthetics as the doctrine of taste, a philosophical discipline that can polish our manners and social conduct through a sensual-affective Bildung offered by art experiences. Highlighting his sources in both British criticism and German (...)
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  38. Balint’s Syndrome, Visual Motion Perception, and Awareness of Space.Bartek Chomanski - 2018 - Erkenntnis 83 (6):1265-1284.
    Kant, Wittgenstein, and Husserl all held that visual awareness of objects requires visual awareness of the space in which the objects are located. There is a lively debate in the literature on spatial perception whether this view is undermined by the results of experiments on a Balint’s syndrome patient, known as RM. I argue that neither of two recent interpretations of these results is able to explain RM’s apparent ability to experience motion. I outline some ways in which each (...)
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  39. Kenelm Digby (and Margaret Cavendish) on Motion.Daniel Whiting - forthcoming - Journal of Modern Philosophy.
    Motion—and, in particular, local motion or change in location—plays a central role in Kenelm Digby’s natural philosophy and in his arguments for the immateriality of the soul. Despite this, Digby’s account of what motion consists in has yet to receive much scholarly attention. In this paper, I advance a novel interpretation of Digby on motion. According to it, Digby holds that for a body to move is for it to divide from and unify with other bodies. (...)
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  40. Comparing biological motion in two distinct human societies.Pierre Pica, Stuart Jackson, Randolph Blake & Nikolaus Troje - 2011 - PLoS ONE 6 (12):e28391.
    Cross cultural studies have played a pivotal role in elucidating the extent to which behavioral and mental characteristics depend on specific environmental influences. Surprisingly, little field research has been carried out on a fundamentally important perceptual ability, namely the perception of biological motion. In this report, we present details of studies carried out with the help of volunteers from the Mundurucu indigene, a group of people native to Amazonian territories in Brazil. We employed standard biological motion perception tasks (...)
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  41. Descartes' Quantity of Motion: 'New Age' Holism meets the Cartesian Conservation Principle.Edward Slowik - 1999 - Pacific Philosophical Quarterly 80 (2):178–202.
    This essay explores various problematical aspects of Descartes' conservation principle for the quantity of motion (size times speed), particularly its largely neglected "dual role" as a measure of both durational motion and instantaneous "tendencies towards motion". Overall, an underlying non-local, or "holistic", element of quantity of motion (largely derived from his statics) will be revealed as central to a full understanding of the conservation principle's conceptual development and intended operation; and this insight can be of use (...)
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  42. Geometry of motion: some elements of its historical development.Mario Bacelar Valente - 2019 - ArtefaCToS. Revista de Estudios de la Ciencia y la Tecnología 8 (2):4-26.
    in this paper we return to Marshall Clagett’s view about the existence of an ancient Greek geometry of motion. It can be read in two ways. As a basic presentation of ancient Greek geometry of motion, followed by some aspects of its further development in landmark works by Galileo and Newton. Conversely, it can be read as a basic presentation of aspects of Galileo’s and Newton’s mathematics that can be considered as developments of a geometry of motion (...)
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  43. Move Your Body! Margaret Cavendish on Self-Motion.Colin Chamberlain - manuscript
    Margaret Cavendish (1623-1673) argues that when someone throws a ball, their hand does not cause the ball to move. Instead, the ball moves itself. In this chapter, I reconstruct Cavendish’s argument that material things—like the ball—are self-moving. Cavendish argues that body-body interaction is unintelligible. We cannot make sense of interaction in terms of the transfer of motion nor the more basic idea that one body acts in another body. Assuming something moves bodies around, Cavendish concludes that bodies move themselves. (...)
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  44. Comparing the Motion of Solar System with Water Droplet Motion to Predict the Future of Solar System.Areena Bhatti - 2019 - Conference Paper Abstract.
    The geometric arrangement of planet and moon is the result of a self-organizing system. In our solar system, the planets and moons are constantly orbiting around the sun. The aim of this theory is to compare the motion of a solar system with the motion of water droplet when poured into a water body. The basic methodology is to compare both motions to know how they are related to each other. The difference between both systems will be that (...)
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  45. Hobbes on Powers, Accidents, and Motions.Stewart Duncan - 2024 - In Sebastian Bender & Dominik Perler (eds.), Powers and Abilities in Early Modern Philosophy. Routledge. pp. 126–145.
    Thomas Hobbes often includes powers and abilities in his descriptions of the world. Meanwhile, Hobbes’s philosophical picture of the world appears quite reductive, and he seems sometimes to say that nothing exists but bodies in motion. In more extreme versions of such a picture, there would be no room for powers. Hobbes is not an eliminativist about powers, but his view does tend toward ontological minimalism. It would be good to have an account of what Hobbes thinks powers are, (...)
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  46. Leibniz on Motion – Reply to Edward Slowik.Anja Jauernig - 2009 - The Leibniz Review 19:139-147.
    Response to critical comments by Edward Slowik on my article 'Leibniz on Motion and the Equivalence of Hypotheses' in The Leibniz Review 18 (2008).
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  47. Descartes’ Forgotten Hypotheses on Motion.Edward Slowik - 2002 - Journal of Philosophical Research 27:433-448.
    This essay explores two of the more neglected hypotheses that comprise, or supplement, Descartes’ relationalist doctrine of bodily motion. These criteria are of great importance, for they would appear to challenge Descartes’ principal judgment that motion is a purely reciprocal change of a body’s contiguous neighborhood. After critiquing the work of the few commentators who have previously examined these forgotten hypotheses, mainly, D. Garber and M. Gueroult, the overall strengths and weaknesses of Descartes’ supplementary criteria will be assessed. (...)
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  48. Kant’s Early Theory of Motion.Marius Stan - 2009 - The Leibniz Review 19:29-61.
    This paper examines the young Kant’s claim that all motion is relative, and argues that it is the core of a metaphysical dynamics of impact inspired by Leibniz and Wolff. I start with some background to Kant’s early dynamics, and show that he rejects Newton’s absolute space as a foundation for it. Then I reconstruct the exact meaning of Kant’s relativity, and the model of impact he wants it to support. I detail (in Section II and III) his polemic (...)
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  49. Space time event motion (STEM) – A better metaphor and a new concept.Joseph Naimo - 2002 - Consciousness, Literature and the Arts 3 (No 3).
    The content of this paper is primarily the product of an attempt to understand consciousness by working through the Gestell - conventionalised epistemology, at least some of several foundational concepts. This paper indirectly addresses the ancient question: “How is objective reference – or intentionality, possible? How is it possible for one thing to direct its thoughts upon another thing?” As such, I have adopted a holistic methodology; one in which I develop a framework based on a form of process philosophy (...)
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  50. On Explanations from Geometry of Motion.Juha Saatsi - 2018 - British Journal for the Philosophy of Science 69 (1):253–273.
    This paper examines explanations that turn on non-local geometrical facts about the space of possible configurations a system can occupy. I argue that it makes sense to contrast such explanations from "geometry of motion" with causal explanations. I also explore how my analysis of these explanations cuts across the distinction between kinematics and dynamics.
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