Results for ' Kepler's equation'

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  1.  11
    Ibn al-Zarqālluh’s discovery of the annual equation of the Moon.S. Mohammad Mozaffari - forthcoming - Archive for History of Exact Sciences:1-34.
    Ibn al-Zarqālluh (al-Andalus, d. 1100) introduced a new inequality in the longitudinal motion of the Moon into Ptolemy’s lunar model with the amplitude of 24′, which periodically changes in terms of a sine function with the distance in longitude between the mean Moon and the solar apogee as the variable. It can be shown that the discovery had its roots in his examination of the discrepancies between the times of the lunar eclipses he obtained from the data of his eclipse (...)
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  2.  3
    A note on ‘Kepler's equation’.Jacques Dutka - 1997 - Archive for History of Exact Sciences 51 (1):59-65.
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  3.  9
    Analytical initial-guess-free solution to Kepler's transcendental equation using Boubaker Polynomials Expansion Scheme BPES.K. Boubaker - 2010 - Apeiron: Studies in Infinite Nature 17 (1):1.
  4.  14
    Early Numerical Analysis in Kepler's New Astronomy.Steinar Thorvaldsen - 2010 - Science in Context 23 (1):39-63.
    ArgumentJohannes Kepler published hisAstronomia novain 1609, based upon a huge amount of computations. The aim of this paper is to show that Kepler's new astronomy was grounded on methods from numerical analysis. In his research he applied and improved methods that required iterative calculations, and he developed precompiled mathematical tables to solve the problems, including a transcendental equation. Kepler was aware of the shortcomings of his novel methods, and called for a new Apollonius to offer a formal mathematical (...)
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  5. Contemporary Thinking about Paul, An Anthology.Thomas S. Kepler - 1950
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  6. The Book of Revelation: A Commentary for Laymen.Thomas S. Kepler - 1957
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  7. The Fellowship of the Saints: An Anthology of Christian Devotional Literature.Thomas S. Kepler - 1948
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  8. The Meaning and Mystery of the Resurrection.Thomas S. Kepler - 1963
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  9.  5
    The immune system as a complex system: adaptation by somatic mutation.Alan S. Perelson & B. Kepler - 1995 - In R. J. Russell, N. Murphy & A. R. Peacocke (eds.), Chaos and Complexity. Vatican Observatory Publications.
  10.  23
    Kepler's Early WritingsGesammelte Werke.Edward Rosen & Johannes Kepler - 1985 - Journal of the History of Ideas 46 (3):449.
  11.  21
    Use of Philosophy in Children’s Literature.Cynthia Kepler - 2007 - Questions: Philosophy for Young People 7:9-11.
    In the following Kepler suggests a number of different readings of Carroll’s Alice books that would be useful to those attempting to integrate philosophy into an existing curriculum.
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  12.  3
    Medical stewardship: fulfilling the Hippocratic legacy.Milton Oliver Kepler - 1981 - Westport, Conn.: Greenwood Press.
    Medical ethics involve more than a prohibition against advertising or solicitation of patients, or a limit on the height of the letters on a doctor's office door. The true ethics of health care are the fundamental values that guide-or should guide-physicians in every aspect of their interaction with patients, their families, and society at large. Professional ethics is a complex and controversial issue, but one that must be dealt with in an era of increasing skepticism about the practice of medicine. (...)
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  13.  84
    Kepler's Laws of Planetary Motion, Before and After Newton's "Principia": an Essay on the Transformation of Scientific Problems.Brian S. Baigrie - 1987 - Studies in History and Philosophy of Science Part A 18 (2):177.
  14.  58
    The Justification of Kepler's Ellipse.Brian S. Baigrie - 1990 - Studies in History and Philosophy of Science Part A 21 (4):633.
  15. A rigorous analytic solution of nonlinear differential equation of the poisson-bolitzmann type.S. N. Bagchi & G. P. Das - 1965 - In Karl W. Linsenmann (ed.), Proceedings. St. Louis, Lutheran Academy for Scholarship. pp. 29--28.
  16.  58
    Kepler's Theory of Hypothesis and the 'Realist Dilemma'.Robert S. Westman - 1972 - Studies in History and Philosophy of Science Part A 3 (3):233.
  17.  12
    The study of partial differential equations of the first order in the 18th and 19th centuries.S. S. Demidov - 1982 - Archive for History of Exact Sciences 26 (4):325-350.
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  18. Individual and Essence in Aristotle's Metaphysics.S. Marc Cohen - 1978 - Paideia (Special Aristotle Edition):75-85.
    Aristotle's claim in Metaphysics Z.6 that "each substance is the same as its essence" has long puzzled commentators. For it seems to conflict with two other Aristotelian theses: (1) primary substances are individuals (e.g., Socrates and Callias), and (2) essences are universals (e.g., Man and Horse). Three traditional solutions to this difficulty are considered and rejected. Instead, to make the Z.6 equation consistent with (1) and (2), I propose that it be interpreted to be making something other than a (...)
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  19.  11
    The New Defense of Determinism: Neurobiological Reduction.Mehmet Ödemi̇ş - 2021 - Kader 19 (1):29-54.
    Determinist thought with its sui generis view on life, nature and being as a whole is a point of view that could be observed in many different cultures and beliefs. It was thanks to Greek thought that it ceased to be a cultural element and transformed into a systematic cosmology. Schools such as Leucippos, then Democritos and Stoa attempted to integrate the determinist philosophy into ontology and cosmology. In the course of time, physics and metaphysics-based determinism approaches were introduced, and (...)
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  20.  13
    Mechanical Model of Maxwell’s Equations and of Lorentz Transformations.Lachezar S. Simeonov - 2022 - Foundations of Physics 52 (3):1-22.
    We present a mechanical model of a quasi-elastic body which reproduces Maxwell’s equations with charges and currents. Major criticism against mechanical models of electrodynamics is that any presence of charges in the known models appears to violate the continuity equation of the aether and it remains a mystery as to where the aether goes and whence it comes. We propose a solution to the mystery—in the present model the aether is always conserved. Interestingly it turns out that the charge (...)
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  21.  9
    The Reality of the Past.S. Alexander - 2021 - In A. R. J. Fisher (ed.), Marking the Centenary of Samuel Alexander’s Space, Time and Deity. Basingstoke: Palgrave Macmillan. pp. 41-58.
    This chapter focuses on the ontological nature of the past and our experience of the present in relation to the actual. It is argued that philosophers mistakenly equate the real with the actual. The actual is what is presented to us in experience, but what is presented to us in experience is confined to the present; so one might think that it follows that only the present is real. This presentist theory is subsequently rejected. Past, present and future are real (...)
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  22.  8
    Anarchism and the Crisis or Represe: Hermeneutics, Aesthetics, Politics.Jesse S. Cohn, Barry A. Brown & Christopher Conway - 2006 - Susquehanna University Press.
    Current theories of knowledge, art, and power are locked into sterile debates around the question of representation. This book examines the limits of antirepresentationalism in these fields and argues that the anarchist tradition can point the way beyond our contemporary crisis of representation. The author rereads the theory and practical experiences of anarchism from the nineteenth century to the present, proposing a radical revision of received notions of the subject - from the equation of anarchy with literary decadence to (...)
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  23.  10
    Exact solution of the discrete Schrödinger equation for ferromagnetic chains.S. Cojocaru, V. Bârsan & A. Ceulemans - 2006 - Philosophical Magazine 86 (32):4983-4995.
  24.  21
    A Hilbert-Style Axiomatisation for Equational Hybrid Logic.Luís S. Barbosa, Manuel A. Martins & Marta Carreteiro - 2014 - Journal of Logic, Language and Information 23 (1):31-52.
    This paper introduces an axiomatisation for equational hybrid logic based on previous axiomatizations and natural deduction systems for propositional and first-order hybrid logic. Its soundness and completeness is discussed. This work is part of a broader research project on the development a general proof calculus for hybrid logics.
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  25. Johannes Kepler: Optics, Paralipomena to Witelo & Optical Part of Astronomy, ed. WH Donahue.S. Unguru - 2003 - Early Science and Medicine 8 (3):274-275.
     
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  26.  72
    A Note on Stress-Tensors, Conservation and Equations of Motion.S. Deser - 2005 - Foundations of Physics 35 (11):1935-1940.
    Some unusual relations between stress tensors, conservation and equations of motion are briefly reviewed.
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  27. Arbitrary order differential equations with fuzzy parameters.T. Allahviranloo & S. Salahshour - 2020 - In Snehashish Chakraverty (ed.), Mathematical methods in interdisciplinary sciences. Hoboken, NJ: Wiley.
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  28.  7
    Review: Don Pigozzi, Base-Undecidable Properties of Universal Varieties; Don Pigozzi, Universal Equational Theories and Varieties of Algebras. [REVIEW]S. Burris - 1982 - Journal of Symbolic Logic 47 (4):904-904.
  29.  4
    Review: Ralph McKenzie, Definability in Lattices of Equational Theories. [REVIEW]S. Burris - 1974 - Journal of Symbolic Logic 39 (3):601-602.
  30.  6
    Review: V. L. Murskii, D. M. Pritzker, Nondiscernible Properties of Finite Systems of Identity Relations; George F. McNulty, The Decision Problem for Equational Bases of Algebras; George F. McNulty, Undecidable Properties of Finite Sets of Equations. [REVIEW]S. Burris - 1982 - Journal of Symbolic Logic 47 (4):903-904.
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  31.  6
    REVIEWS-Decision problems for equational theories of relation algebras.H. Andreka, S. Givant, I. Nemeti & Roger D. Maddux - 2003 - Bulletin of Symbolic Logic 9 (1):37-38.
  32.  32
    Gravitational field equations based on Finsler geometry.G. S. Asanov - 1983 - Foundations of Physics 13 (5):501-527.
    The analysis of a previous paper (see Ref. 1), in which the possibility of a Finslerian generalization of the equations of motion of gravitational field sources was demonstrated, is extended by developing the Finslerian generalization of the gravitational field equations on the basis of the complete contractionK = K lj lj of the Finslerian curvature tensorK l j hk (x, y). The relevant Lagrangian is constructed by the replacement of the directional variabley i inK by a vector fieldy i (x), (...)
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  33.  21
    Polanyi’s Problematic ‘Man in Thought’.S. R. Jha - 1999 - Tradition and Discovery 26 (3):15-23.
    Polanyi’s philosophy of “man in thought,” by all appearances, chronologically and structurally, seems to be founded on his epistemology. Polanyi’s epistemology of tacit knowing as integration is teleological. By his “ontological equation,” he patterned comprehensive (and complex) entities as emergence on his epistemology. This forces him to make puzzling formulaic statements which land him in trouble with fellow scientists. The equation also lends itself to unwarranted problematic interpretations. The exploration leads me to suggest that Polanyi may be understood (...)
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  34.  3
    A lost chapter in the pre-history of algebraic analysis: Whittaker on contact transformations.S. C. Coutinho - 2010 - Archive for History of Exact Sciences 64 (6):665-706.
    In the early 1930s W. O. Kermack and W. H. McCrea published three papers in which they attempted to prove a result of E. T. Whittaker on the solution of differential equations. In modern parlance, their key idea consisted in using quantized contact transformations over an algebra of differential operators. Although their papers do not seem to have had any impact, either then or at any later time, the same ideas were independently developed in the 1960–1980s in the framework of (...)
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  35.  20
    Electrodynamics in terms of functions over the groupSU(2). I. The equation of the vector potential.A. O. Barut & S. Malin - 1975 - Foundations of Physics 5 (3):375-386.
    This is the first in a series of papers in which a method of harmonic analysis in terms of functions over the groupSU(2) is applied to the description of interaction between matter and the electromagnetic field. Carmeli'sSU(2) formulation of Maxwell's equations is extended to anSU(2) formulation of the equations for the electromagnetic vector potential. The four functions which describe the vector potential are expanded in a generalized Fourier series [SU(2) harmonic analysis] and the equations for the coefficients are derived. These (...)
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  36. Connectionist learning models for application problems involving differential and integral equations.S. Mall, S. K. Jeswal & S. Chakraverty - 2020 - In Snehashish Chakraverty (ed.), Mathematical methods in interdisciplinary sciences. Hoboken, NJ: Wiley.
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  37.  16
    Ralph McKenzie. Definability in lattices of equational theories. Annals of mathematical logic, vol. 3 no. 2 , pp. 197–237. [REVIEW]S. Burris - 1974 - Journal of Symbolic Logic 39 (3):601-602.
  38. General non-square systems of linear equations in single-valued triangular neutrosophic number environment.S. A. Edalatpanah - 2020 - In Florentin Smarandache & Said Broumi (eds.), Neutrosophic Theories in Communication, Management and Information Technology. New York: Nova Science Publishers.
     
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  39.  15
    Crossing symmetry and the relativistic equation for two fermions.S. F. Edwards & P. T. Matthews - 1957 - Philosophical Magazine 2 (19):831-838.
  40. XI Numerical Methods for the Schrodinger Equation and Application-A Modular Method for the Efficient Calculation of Ballistic Transport Through Quantum Billiards.S. Rotter, B. Weingartner, F. Libisch, F. Aigner, J. Feist & J. Burgdorfer - 2006 - In O. Stock & M. Schaerf (eds.), Lecture Notes in Computer Science. Springer Verlag. pp. 586-593.
     
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  41.  85
    Polanyi’s Problematic ‘Man in Thought’.S. R. Jha - 1999 - Tradition and Discovery 26 (3):15-23.
    Polanyi’s philosophy of “man in thought,” by all appearances, chronologically and structurally, seems to be founded on his epistemology. Polanyi’s epistemology of tacit knowing as integration is teleological. By his “ontological equation,” he patterned comprehensive (and complex) entities as emergence on his epistemology. This forces him to make puzzling formulaic statements which land him in trouble with fellow scientists. The equation also lends itself to unwarranted problematic interpretations. The exploration leads me to suggest that Polanyi may be understood (...)
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  42.  12
    Polanyi’s Problematic ‘Man in Thought’.S. R. Jha - 1999 - Tradition and Discovery 26 (3):15-23.
    Polanyi’s philosophy of “man in thought,” by all appearances, chronologically and structurally, seems to be founded on his epistemology. Polanyi’s epistemology of tacit knowing as integration is teleological. By his “ontological equation,” he patterned comprehensive (and complex) entities as emergence on his epistemology. This forces him to make puzzling formulaic statements which land him in trouble with fellow scientists. The equation also lends itself to unwarranted problematic interpretations. The exploration leads me to suggest that Polanyi may be understood (...)
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  43.  16
    An Accurate Approximate-Analytical Technique for Solving Time-Fractional Partial Differential Equations.M. Bishehniasar, S. Salahshour, A. Ahmadian, F. Ismail & D. Baleanu - 2017 - Complexity:1-12.
    The demand of many scientific areas for the usage of fractional partial differential equations to explain their real-world systems has been broadly identified. The solutions may portray dynamical behaviors of various particles such as chemicals and cells. The desire of obtaining approximate solutions to treat these equations aims to overcome the mathematical complexity of modeling the relevant phenomena in nature. This research proposes a promising approximate-analytical scheme that is an accurate technique for solving a variety of noninteger partial differential equations. (...)
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  44.  14
    Using fMRI to Test Models of Complex Cognition.John R. Anderson, Cameron S. Carter, Jon M. Fincham, Yulin Qin, Susan M. Ravizza & Miriam Rosenberg-Lee - 2008 - Cognitive Science 32 (8):1323-1348.
    This article investigates the potential of fMRI to test assumptions about different components in models of complex cognitive tasks. If the components of a model can be associated with specific brain regions, one can make predictions for the temporal course of the BOLD response in these regions. An event‐locked procedure is described for dealing with temporal variability and bringing model runs and individual data trials into alignment. Statistical methods for testing the model are described that deal with the scan‐to‐scan correlations (...)
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  45.  76
    Living in the borderland: the evolution of consciousness and the challenge of healing trauma.Jerome S. Bernstein - 2005 - New York: Routledge, Taylor & Francis Group.
    Living in the Borderland addresses the evolution of Western consciousness and describes the emergence of the "Borderland," a spectrum of reality that is beyond the rational yet is palpable to an increasing number of individuals. Building on Jungian theory, Jerome Bernstein argues that a greater openness to transrational reality experienced by Borderland personalities allows new possibilities for understanding and healing confounding clinical and developmental enigmas." "Living in the Borderland challenges the standard clinical model, which views normality as an absence of (...)
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  46.  29
    Field theory onR× S 3 topology. III: The Dirac equation[REVIEW]M. Carmeli & S. Malin - 1985 - Foundations of Physics 15 (10):1019-1029.
    A Dirac-type equation on R×S 3 topology is derived. It is a generalization of the previously obtained Klein-Gordon-type, Schrödinger-type, and Weyl-type equations, and reduces to the latter in the appropriate limit. The (discrete) energy spectrum is found and the corresponding complete set of solutions is given as expansions in terms of the matrix elements of the irreducible representations of the group SU 2 . Finally, the properties of the solutions are discussed.
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  47.  20
    Field theory onR× S 3 topology. II: The Weyl equation[REVIEW]M. Carmeli & S. Malin - 1985 - Foundations of Physics 15 (2):185-191.
    A Weyl-type equation onR×S 3 topology is derived, as a generalization to previously obtained Klein-Gordon- and Schrödinger-type equations for the same topology. The general solution of the new equation is given as an expansion in the matrix elements of the irreducible representations of the groupSU 2. The properties of the solutions are discussed.
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  48.  37
    Splitting the Source Term for the Einstein Equation to Classical and Quantum Parts.T. S. Biró & P. Ván - 2015 - Foundations of Physics 45 (11):1465-1482.
    We consider the special and general relativistic extensions of the action principle behind the Schrödinger equation distinguishing classical and quantum contributions. Postulating a particular quantum correction to the source term in the classical Einstein equation we identify the conformal content of the above action and obtain classical gravitation for massive particles, but with a cosmological term representing off-mass-shell contribution to the energy–momentum tensor. In this scenario the—on the Planck scale surprisingly small—cosmological constant stems from quantum bound states having (...)
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  49.  87
    On the Derivation of the Time-Dependent Equation of Schrödinger.John S. Briggs & Jan M. Rost - 2001 - Foundations of Physics 31 (4):693-712.
    Few have done more than Martin Gutzwiller to clarify the connection between classical time-dependent motion and the time-independent states of quantum systems. Hence it seems appropriate to include the following discussion of the origins of the time-dependent Schrödinger equation in this volume dedicated to him.
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  50.  28
    Dimensions.S. Sterrett - 2022 - In Eleanor Knox & Alastair Wilson (eds.), The Routledge Companion to Philosophy of Physics. London, UK: Routledge.
    This chapter concerns dimensions as the term is used in the physical sciences today. Some key points made are: Quantities of the same kind have the same dimension; but that two quantities have the same dimension does not necessarily mean they are of the same kind. The dimension of a quantity is not determined for a single quantity in isolation, but relative to a system of quantities and the relations that hold between them. Dimensions, units, and quantities are distinct notions. (...)
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