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  1. The Visual Role of Objects' Facing Surfaces.William E. S. Mcneill - 2016 - Philosophy and Phenomenological Research 92 (2):411-431.
    It is often assumed that when we see common opaque objects in standard light this is in virtue of seeing their facing surfaces. Here I argue that we should reject that claim. Either we don't see objects' facing surfaces, or—if we hold on to the claim that we do see such things—it is at least not in virtue of seeing them that we see common opaque objects. I end by showing how this conclusion squares both with our intuitions and with (...)
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  • Mereological nihilism: quantum atomism and the impossibility of material constitution.Jeffrey Grupp - 2006 - Axiomathes 16 (3):245-386.
    Mereological nihilism is the philosophical position that there are no items that have parts. If there are no items with parts then the only items that exist are partless fundamental particles, such as the true atoms (also called philosophical atoms) theorized to exist by some ancient philosophers, some contemporary physicists, and some contemporary philosophers. With several novel arguments I show that mereological nihilism is the correct theory of reality. I will also discuss strong similarities that mereological nihilism has with empirical (...)
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  • Levinas's Philosophy of Perception.Matt E. M. Bower - 2017 - Southern Journal of Philosophy 55 (4):383-414.
    Levinas is usually discussed as a philosopher wrestling with the nature of our experience of others, ethical obligation, and the divine. Unlike other phenomenologists, such as Husserl and Heidegger, he is not often mentioned in discussions about issues in philosophy of mind. His work in that area, especially on perception, is underappreciated. He gives an account of the nature of perceptual experience that is remarkable both in how it departs from that of others in the phenomenological tradition and for how (...)
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  • SNAP and SPAN: Towards dynamic spatial ontology.Pierre Grenon & Barry Smith - 2004 - Spatial Cognition and Computation 4 (1):69–103.
    We propose a modular ontology of the dynamic features of reality. This amounts, on the one hand, to a purely spatial ontology supporting snapshot views of the world at successive instants of time and, on the other hand, to a purely spatiotemporal ontology of change and process. We argue that dynamic spatial ontology must combine these two distinct types of inventory of the entities and relationships in reality, and we provide characterizations of spatiotemporal reasoning in the light of the interconnections (...)
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  • Surfaces, holes, shadows.Roberto Casati - 2009 - In Robin Le Poidevin, Simons Peter, McGonigal Andrew & Ross P. Cameron (eds.), The Routledge Companion to Metaphysics. New York: Routledge. pp. 382--388.
    Minor entities provide an interesting testbed for metaphysical theories, but also for investigating the structure of concepts, as their concepts appear to be tributary of different representational systems.
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  • Reflections on surfaces.Avrum Stroll - 1992 - Canadian Journal of Philosophy 22 (2):191-210.
    Can there be a first-order, philosophical or psychological theory that explains all the facts of surface perception? By ‘first-order’ I mean a theory about the constituents of what J.J. Gibson called ‘the ecological environment’; and by ‘surface perception,’ I mean the perception of the surfaces of any of those ecological constituents that have surfaces. The question about surfaces is important for two reasons. First, as we shall see, they are complex features and, as such, provide a difficult test case for (...)
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  • The Dimensionality of Visual Space.William H. Rosar - 2016 - Topoi 35 (2):531-570.
    The empirical study of visual space has centered on determining its geometry, whether it is a perspective projection, flat or curved, Euclidean or non-Euclidean, whereas the topology of space consists of those properties that remain invariant under stretching but not tearing. For that reason distance is a property not preserved in topological space whereas the property of spatial order is preserved. Specifically the topological properties of dimensionality, orientability, continuity, and connectivity define “real” space as studied by physics and are the (...)
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