Results for 'Mesoscale physics'

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  1.  37
    Steel and bone: mesoscale modeling and middle-out strategies in physics and biology.Robert W. Batterman & Sara Green - 2020 - Synthese 199 (1-2):1159-1184.
    Mesoscale modeling is often considered merely as a practical strategy used when information on lower-scale details is lacking, or when there is a need to make models cognitively or computationally tractable. Without dismissing the importance of practical constraints for modeling choices, we argue that mesoscale models should not just be considered as abbreviations or placeholders for more “complete” models. Because many systems exhibit different behaviors at various spatial and temporal scales, bottom-up approaches are almost always doomed to fail. (...)
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  2.  48
    Physical Determinants in the Emergence and Inheritance of Multicellular Form.Stuart A. Newman & Marta Linde-Medina - 2013 - Biological Theory 8 (3):274-285.
    We argue that the physics of complex materials and self-organizing processes should be made central to the biology of form. Rather than being encoded in genes, form emerges when cells and certain of their molecules mobilize physical forces, effects, and processes in a multicellular context. What is inherited from one generation to the next are not genetic programs for constructing organisms, but generative mechanisms of morphogenesis and pattern formation and the initial and boundary conditions for reproducing the specific traits (...)
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  3.  57
    to Psychological Causation.Physical Causation - 2008 - In Kenneth S. Kendler & Josef Parnas (eds.), Philosophical Issues in Psychiatry: Explanation, Phenomenology, and Nosology. Johns Hopkins University Press. pp. 71--184.
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  4.  13
    Forming physical culture teachers’ motivation to study.Melnyk Anastasiia & Chernii Physical - 2017 - Science and Education: Academic Journal of Ushynsky University 23 (8):150-156.
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  5. Hiking Boots and Wheelchairs.Physical Disability - 2005 - In Barbara S. Andrew, Jean Clare Keller & Lisa H. Schwartzman (eds.), Feminist Interventions in Ethics and Politics: Feminist Ethics and Social Theory. Rowman & Littlefield Publishers. pp. 131.
     
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  6.  5
    Roberto torret'I 'I (puerto rico).Physical Necessity - 1992 - In Javier Echeverria, Andoni Ibarra & Thomas Mormann (eds.), The Space of Mathematics: Philosophical, Epistemological, and Historical Explorations. De Gruyter. pp. 132.
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  7. A. The Nature of Intentionality.Physical Phenomena - 2002 - In David J. Chalmers (ed.), Philosophy of Mind: Classical and Contemporary Readings. Oxford University Press. pp. 479.
     
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  8. Jeffrey Edwards and Martin Schonfeld.View of Physical Reality - 2006 - Journal of Chinese Philosophy 33:109.
     
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  9.  14
    Trinity and Spirit, DALE M. SCHLITT.Absolute Spirit Revisited & Physical Determinism - 1991 - American Philosophical Quarterly 28 (1).
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  10.  5
    Elements of Physical Education: Philosophical aspects.M. G. Mason, A. G. L. Ventre & Carnegie College of Physical Education - 1965 - [Thistie Books,].
  11. Tones of Theory a Theoretical Structure for Physical Education--A Tentative Perspective.Celeste Ulrich, John E. Nixon & Physical Education Recreation American Association for Health - 1972 - American Association for Health, Physical Education, and Recreation.
     
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  12.  29
    The grassblade beyond Newton: the pragmatizing of Kant for evolutionary-developmental biology.Lenny Moss & Stuart A. Newman - 2015 - Lebenswelt: Aesthetics and Philosophy of Experience 7:94-111.
    Much of the philosophical attention directed to Kant’s intervention into biology has been directed toward Kant’s idea of a transcendental limit upon what can be understood constitutively. Kant’s own wider philosophical practice, however, was principally oriented toward solving problems and the scientific benefits of his methodology of teleology have been largely underappreciated, at least in the English language literature. This paper suggests that all basic biology has had, and continues to have, a need for some form of heuristic “bracketing” and (...)
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  13.  20
    Mesoscale strain measurement in deformed crystals: A comparison of X-ray microdiffraction with electron backscatter diffraction.D. P. Field, K. R. Magid, I. N. Mastorakos, J. N. Florando, D. H. Lassila & J. W. Morris - 2010 - Philosophical Magazine 90 (11):1451-1464.
  14.  29
    Mapping mesoscale heterogeneity in the plastic deformation of a copper single crystal.K. R. Magid, J. N. Florando, D. H. Lassila, M. M. LeBlanc, N. Tamura & J. W. Morris - 2009 - Philosophical Magazine 89 (1):77-107.
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  15.  2
    Reconstructing Mesoscale Network Structures.Jeroen van Lidth de Jeude, Riccardo Di Clemente, Guido Caldarelli, Fabio Saracco & Tiziano Squartini - 2019 - Complexity 2019:1-13.
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  16.  13
    Mesoscale modeling of dislocations in molecular crystals.Lei Lei & Marisol Koslowski - 2011 - Philosophical Magazine 91 (6):865-878.
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  17.  12
    Mesoscale modelling of mobile crystal defects—dislocations, cracks and surface roughening: phase field microelasticity approach.Yu U. Wang, Yongmei M. Jin & Armen G. Khachaturyan † - 2005 - Philosophical Magazine 85 (2-3):261-277.
  18.  15
    Mesoscale thermodynamic analysis of atomic-scale dislocation–obstacle interactions simulated by molecular dynamics.G. Monnet, YuN Osetsky & D. J. Bacon - 2010 - Philosophical Magazine 90 (7-8):1001-1018.
  19.  36
    Physics.Daniel W. Aristotle & Graham - 2018 - Hackett Publishing Company.
    The _Physics_ is a foundational work of western philosophy, and the crucial one for understanding Aristotle's views on matter, form, essence, causation, movement, space, and time. This richly annotated, scrupulously accurate, and consistent translation makes it available to a contemporary English reader as no other does—in part because it fits together seamlessly with other closely associated works in the New Hackett Aristotle series, such as the _Metaphysics_, _De Anima_, and forthcoming _De Caelo_ and _On Coming to Be and Passing Away_. (...)
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  20.  21
    Experimental characterization of the mesoscale dislocation density tensor.B. C. Larson, Anter El-Azab, Wenge Yang, J. Z. Tischler, Wenjun Liu & G. E. Ice - 2007 - Philosophical Magazine 87 (8-9):1327-1347.
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  21.  76
    The Physics of Time Asymmetry.Paul Davies - 1974 - University of California Press.
    The physics of time asymmetry has never been a single well-defined subject, but more a collection of consistency problems which arise in almost all branches ...
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  22. Atomic physics and human knowledge.Niels Bohr - 1958 - New York,: Wiley.
    These articles and speeches by the Nobel Prize-winning physicist date from 1934 to 1958. Rather than expositions on quantum physics, the papers are philosophical in nature, exploring the relevance of atomic physics to many areas of human endeavor. Includes an essay in which Bohr and Einstein discuss quantum and_wave equation theories. 1961 edition.
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  23. The physics of extended simples.D. Braddon-Mitchell & K. Miller - 2006 - Analysis 66 (3):222-226.
    The idea that there could be spatially extended mereological simples has recently been defended by a number of metaphysicians (Markosian 1998, 2004; Simons 2004; Parsons (2000) also takes the idea seriously). Peter Simons (2004) goes further, arguing not only that spatially extended mereological simples (henceforth just extended simples) are possible, but that it is more plausible that our world is composed of such simples, than that it is composed of either point-sized simples, or of atomless gunk. The difficulty for these (...)
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  24.  49
    Quantum physics, illusion or reality?Alastair I. M. Rae - 2004 - New York: Cambridge University Press.
    Quantum physics is believed to be the fundamental theory underlying our understanding of the physical universe. However, it is based on concepts and principles that have always been difficult to understand and controversial in their interpretation. This book aims to explain these issues using a minimum of technical language and mathematics. After a brief introduction to the ideas of quantum physics, the problems of interpretation are identified and explained. The rest of the book surveys, describes and criticises a (...)
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  25.  13
    Linking atomistic and mesoscale simulations of nanocrystalline materials: quantitative validation for the case of grain growth.Dorel Moldovan†, Dieter Wolf‡ & Simon R. Phillpot - 2003 - Philosophical Magazine 83 (31-34):3643-3659.
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  26.  30
    The new physics for the twenty-first century.Gordon Fraser (ed.) - 2006 - New York: Cambridge University Press.
    Underpinning all the other branches of science, physics affects the way we live our lives, and ultimately how life itself functions. Recent scientific advances have led to dramatic reassessment of our understanding of the world around us, and made a significant impact on our lifestyle. In this book, leading international experts, including Nobel prize winners, explore the frontiers of modern physics, from the particles inside an atom to the stars that make up a galaxy, from nano-engineering and brain (...)
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  27.  55
    After Physics.David Z. Albert - 2015 - Cambridge, Massachusetts: Harvard University Press.
    Here the philosopher and physicist David Z Albert argues, among other things, that the difference between past and future can be understood as a mechanical phenomenon of nature and that quantum mechanics makes it impossible to present the entirety of what can be said about the world as a narrative of “befores” and “afters.”.
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  28.  8
    Multiscale Modeling in Neuroethology: The Significance of the Mesoscale.Kelle Dhein & Julia R. S. Bursten - forthcoming - Philosophy of Science:1-17.
    Recent accounts of multiscale modeling investigate ontic and epistemic constraints imposed by relations between component models at varying relative scales (macro, meso, micro). These accounts often focus especially on the role of the meso, or intermediate, relative scale in a multiscale model. We aid this effort by highlighting a novel role for mesoscale models: they can function as a focal point, and rationale, for disagreement between researchers who otherwise share theoretical commitments. We illustrate with a case study in multiscale (...)
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  29.  30
    Physics and Chance: Philosophical Issues in the Foundations of Statistical Mechanics.Robert Batterman & Lawrence Sklar - 1995 - Philosophical Review 104 (4):624.
    Philosophers of physics are very familiar with foundational problems in quantum mechanics and in the theory of relativity. In both fields, the puzzles, if not solved, are at least reasonably well formulated and possess well-characterized solution strategies. Sklar’s book Physics and Chance focuses on a pair of theories, thermodynamics and statistical mechanics, for which puzzles and foundational paradoxes abound, but where there is very little agreement upon the means with which they may best be approached. As he notes (...)
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  30. Physics and Philosophy: The Revolution in Modern Science.Werner Heisenberg - 1958 - New York: Harper.
    The seminal work by one of the most important thinkers of the twentieth century, Physics and Philosophy is Werner Heisenberg's concise and accessible narrative of the revolution in modern physics, in which he played a towering role. The outgrowth of a celebrated lecture series, this book remains as relevant, provocative, and fascinating as when it was first published in 1958. A brilliant scientist whose ideas altered our perception of the universe, Heisenberg is considered the father of quantum (...); he is most famous for the Uncertainty Principle, which states that quantum particles do not occupy a fixed, measurable position. His contributions remain a cornerstone of contemporary physics theory and application. Book jacket. (shrink)
  31.  28
    Physics and Necessity: Rationalist Pursuits From the Cartesian Past to the Quantum Present.Olivier Darrigol - 2014 - Oxford, United Kingdom: Oxford University Press.
    This book recounts a few ingenious attempts to derive physical theories by reason only, beginning with Descartes' geometric construction of the world, and finishing with recent derivations of quantum mechanics from natural axioms.
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  32.  40
    Physical Relativity: Space-Time Structure From a Dynamical Perspective.Harvey R. Brown - 2005 - Oxford, GB: Oxford University Press UK.
    Physical Relativity explores the nature of the distinction at the heart of Einstein's 1905 formulation of his special theory of relativity: that between kinematics and dynamics. Einstein himself became increasingly uncomfortable with this distinction, and with the limitations of what he called the 'principle theory' approach inspired by the logic of thermodynamics. A handful of physicists and philosophers have over the last century likewise expressed doubts about Einstein's treatment of the relativistic behaviour of rigid bodies and clocks in motion in (...)
  33. From physics to metaphysics.Michael Redhead - 1995 - New York: Cambridge University Press.
    The book is drawn from the Tarner lectures, delivered in Cambridge in 1993. It is concerned with the ultimate nature of reality, and how this is revealed by modern physical theories such as relativity and quantum theory. The objectivity and rationality of science are defended against the views of relativists and social constructionists. It is claimed that modern physics gives us a tentative and fallible, but nevertheless rational, approach to the nature of physical reality. The role of subjectivity in (...)
  34.  47
    Physical Computation: A Mechanistic Account.Gualtiero Piccinini - 2015 - Oxford, GB: Oxford University Press UK.
    Gualtiero Piccinini articulates and defends a mechanistic account of concrete, or physical, computation. A physical system is a computing system just in case it is a mechanism one of whose functions is to manipulate vehicles based solely on differences between different portions of the vehicles according to a rule defined over the vehicles. Physical Computation discusses previous accounts of computation and argues that the mechanistic account is better. Many kinds of computation are explicated, such as digital vs. analog, serial vs. (...)
  35.  60
    Physics and philosophy: the revolution in modern science.Werner Heisenberg - 1958 - Amherst, N.Y.: Prometheus Books.
  36.  22
    Physical Action, Species, and Matter: The Debate between Roger Bacon and Peter John Olivi.Dominique Demange & Yael Kedar - 2020 - Journal of the History of Philosophy 58 (1):49-69.
    did roger bacon and peter john olivi ever meet? We suggest a positive answer to this question. After he became a Franciscan in 1257, Roger Bacon spent ten years at the Franciscan Paris convent. In those years he wrote the De multiplicatione specierum —his most thought-out piece—the Opus majus, Opus minus, and Opus tertium, which he completed by early 1268. It is not clear whether Bacon returned to England after 1268, or remained in Paris until 1280.1 Peter John Olivi wrote (...)
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  37. Why Physics Alone Cannot Define the ‘Physical’.Seth Crook - 2001 - Canadian Journal of Philosophy 31 (3):333-359.
    Materialist metaphysicians want to side with physics, but not to take sides within physics.If we took literally the claim of a materialist that his position is simply belief in the claim that all is matter, as currently conceived, we would be faced with an insoluble mystery. For how would such a materialist know how to retrench when his favorite scientific hypotheses fail? How did the 18th century materialist know that gravity, or forces in general, were material? How did (...)
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  38.  11
    Combinatorial Physics.Ted Bastin & Clive William Kilmister - 1995 - World Scientific.
    The authors aim to reinstate a spirit of philosophical enquiry in physics. They abandon the intuitive continuum concepts and build up constructively a combinatorial mathematics of process. This radical change alone makes it possible to calculate the coupling constants of the fundamental fields which? via high energy scattering? are the bridge from the combinatorial world into dynamics. The untenable distinction between what is?observed?, or measured, and what is not, upon which current quantum theory is based, is not needed. If (...)
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  39. Physical reality.Max Born - 1953 - Philosophical Quarterly 3 (11):139-149.
    The notion of reality in the physical world has become, during the last century, somewhat problematic. The contrast between the simple and obvious reality of the innumerable instruments, machines, engines, and gadgets produced by our technological industry, which is applied physics, and of the vague and abstract reality of the fundamental concepts of physical science, as forces and fields, particles and quanta, is doubtlessly bewildering. There has already developed a gap between pure and applied science and between the groups (...)
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  40. Physical literacy: throughout the lifecourse.Margaret Whitehead (ed.) - 2010 - New York: Routledge.
    Through the use of particular pedagogies and the adoption of new modes of thinking, physical literacy promises more realistic models of physical competence and ...
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  41.  94
    How Physics Makes Us Free.Jenann Ismael - 2016 - , US: Oxford University Press USA.
    In 1687 Isaac Newton ushered in a new scientific era in which laws of nature could be used to predict the movements of matter with almost perfect precision. Newton's physics also posed a profound challenge to our self-understanding, however, for the very same laws that keep airplanes in the air and rivers flowing downhill tell us that it is in principle possible to predict what each of us will do every second of our entire lives, given the early conditions (...)
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  42. Physics and Chance: Philosophical Issues in the Foundations of Statistical Mechanics.Lawrence Sklar - 1993 - New York: Cambridge University Press.
    Statistical mechanics is one of the crucial fundamental theories of physics, and in his new book Lawrence Sklar, one of the pre-eminent philosophers of physics, offers a comprehensive, non-technical introduction to that theory and to attempts to understand its foundational elements. Among the topics treated in detail are: probability and statistical explanation, the basic issues in both equilibrium and non-equilibrium statistical mechanics, the role of cosmology, the reduction of thermodynamics to statistical mechanics, and the alleged foundation of the (...)
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  43. Physical Intentionality, Extrinsicness, and the Direction of Causation.William A. Bauer - 2016 - Acta Analytica 31 (4):397-417.
    The Physical Intentionality Thesis claims that dispositions share the marks of psychological intentionality; therefore, intentionality is not exclusively a mental phenomenon. Beyond the standard five marks, Alexander Bird introduces two additional marks of intentionality that he argues dispositions do not satisfy: first, thoughts are extrinsic; second, the direction of causation is that objects cause thoughts, not vice versa. In response, this paper identifies two relevant conceptions of extrinsicness, arguing that dispositions show deep parallels to thoughts on both conceptions. Then, it (...)
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  44.  95
    Physical Causation.Phil Dowe - 2000 - New York: Cambridge University Press.
    This book, published in 2000, is a clear account of causation based firmly in contemporary science. Dowe discusses in a systematic way, a positive account of causation: the conserved quantities account of causal processes which he has been developing over the last ten years. The book describes causal processes and interactions in terms of conserved quantities: a causal process is the worldline of an object which possesses a conserved quantity, and a causal interaction involves the exchange of conserved quantities. Further, (...)
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  45. Physical Perspectives on Computation, Computational Perspectives on Physics.Michael E. Cuffaro & Samuel C. Fletcher (eds.) - 2018 - Cambridge University Press.
    Although computation and the science of physical systems would appear to be unrelated, there are a number of ways in which computational and physical concepts can be brought together in ways that illuminate both. This volume examines fundamental questions which connect scholars from both disciplines: is the universe a computer? Can a universal computing machine simulate every physical process? What is the source of the computational power of quantum computers? Are computational approaches to solving physical problems and paradoxes always fruitful? (...)
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  46. Physics and Philosophy of Physics in the Work of Mario Bunge.Gustavo E. Romero - 2019 - In Mario Augusto Bunge, Michael R. Matthews, Guillermo M. Denegri, Eduardo L. Ortiz, Heinz W. Droste, Alberto Cordero, Pierre Deleporte, María Manzano, Manuel Crescencio Moreno, Dominique Raynaud, Íñigo Ongay de Felipe, Nicholas Rescher, Richard T. W. Arthur, Rögnvaldur D. Ingthorsson, Evandro Agazzi, Ingvar Johansson, Joseph Agassi, Nimrod Bar-Am, Alberto Cupani, Gustavo E. Romero, Andrés Rivadulla, Art Hobson, Olival Freire Junior, Peter Slezak, Ignacio Morgado-Bernal, Marta Crivos, Leonardo Ivarola, Andreas Pickel, Russell Blackford, Michael Kary, A. Z. Obiedat, Carolina I. García Curilaf, Rafael González del Solar, Luis Marone, Javier Lopez de Casenave, Francisco Yannarella, Mauro A. E. Chaparro, José Geiser Villavicencio- Pulido, Martín Orensanz, Jean-Pierre Marquis, Reinhard Kahle, Ibrahim A. Halloun, José María Gil, Omar Ahmad, Byron Kaldis, Marc Silberstein, Carolina I. García Curilaf, Rafael González del Solar, Javier Lopez de Casenave, Íñigo Ongay de Felipe & Villavicencio-Pulid (eds.), Mario Bunge: A Centenary Festschrift. Springer Verlag. pp. 289-301.
    This brief review of Mario Bunge’s research on physics begins with an analysis of his masterpiece Foundations of Physics, and then it discusses his other contributions to the philosophy of physics. Following that is a summary of his more recent reactions to scientific discoveries in physics and a discussion of his position about non-locality in quantum mechanics, as well as his changing opinions on the nature of spacetime. The paper ends with a brief assessment of Bunge’s (...)
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  47. Physical Realization.Sydney Shoemaker - 2007 - Oxford, GB: Oxford University Press UK.
    In Physical Realization, Sydney Shoemaker considers the question of how physicalism can be true: how can all facts about the world, including mental ones, be constituted by facts about the distribution in the world of physical properties? Physicalism requires that the mental properties of a person are 'realized in' the physical properties of that person, and that all instantiations of properties in macroscopic objects are realized in microphysical states of affairs. Shoemaker offers an account of both these sorts of realization, (...)
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  48.  76
    Physics, metaphysics, dispositions, and symmetries – À la French.Anjan Chakravartty - 2019 - Studies in History and Philosophy of Science Part A 74:10-15.
    Recent philosophy has paid increasing attention to the nature of the relationship between the philosophy of science and metaphysics. In The Structure of the World: Metaphysics and Representation, Steven French offers many insights into this relationship (primarily) in the context of fundamental physics, and claims that a specific, structuralist conception of the ontology of the world exemplifies an optimal understanding of it. In this paper I contend that his messages regarding how best to think about the relationship are mixed, (...)
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  49.  46
    The Physics of Duns Scotus: The Scientific Context of a Theological Vision.Richard Cross - 1998 - Clarendon Press.
    Duns Scotus, along with Thomas Aquinas and William of Ockham, was one of the three most talented and influential of the medieval schoolmen, and a highly original thinker. This book examines the central concepts in his physics, including matter, space, time, and unity.
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  50.  16
    Spacetime physics.Edwin F. Taylor - 1966 - San Francisco,: W. H. Freeman. Edited by John Archibald Wheeler.
    Collaboration on the First Edition of Spacetime Physics began in the mid-1960s when Edwin Taylor took a junior faculty sabbatical at Princeton University where John Wheeler was a professor. The resulting text emphasized the unity of spacetime and those quantities (such as proper time, proper distance, mass) that are invariant, the same for all observers, rather than those quantities (such as space and time separations) that are relative, different for different observers. The book has become a standard introduction to (...)
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