Results for 'Lorentz, H. A.'

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  1.  6
    Das Relativitätsprinzip.H. A. Lorentz - 1913 - Darmstadt,: Wissenschaftliche Buchgesellschaft. Edited by Albert Einstein & H. Minkowski.
    This is a reproduction of the original artefact. Generally these books are created from careful scans of the original. This allows us to preserve the book accurately and present it in the way the author intended. Since the original versions are generally quite old, there may occasionally be certain imperfections within these reproductions. We're happy to make these classics available again for future generations to enjoy!
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  2.  33
    Note on the History of the FitzGerald-Lorentz Contraction.Stephen G. Brush, H. A. Lorentz & George Francis FitzGerald - 1967 - Isis 58 (2):230-232.
  3.  87
    Generalized Dirac Equation with Induced Energy-Dependent Potential via Simple Similarity Transformation and Asymptotic Iteration Methods.T. Barakat & H. A. Alhendi - 2013 - Foundations of Physics 43 (10):1171-1181.
    This study shows how precise simple analytical solutions for the generalized Dirac equation with repulsive vector and attractive energy-dependent Lorentz scalar potentials, position-dependent mass potential, and a tensor interaction term can be obtained within the framework of both similarity transformation and the asymptotic iteration methods. These methods yield a significant improvement over existing approaches and provide more plausible and applicable ways in explaining the pseudospin symmetry’s breaking mechanism in nuclei.
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  4.  19
    H. A. Lorentz's contributions to kinetic gas theory.A. J. Kox - 1990 - Annals of Science 47 (6):591-606.
  5.  44
    Extension of trigonometric and hyperbolic functions to vectorial arguments and its application to the representation of rotations and Lorentz transformations.H. Yamasaki - 1983 - Foundations of Physics 13 (11):1139-1154.
    The use of the axial vector representing a three-dimensional rotation makes the rotation representation much more compact by extending the trigonometric functions to vectorial arguments. Similarly, the pure Lorentz transformations are compactly treated by generalizing a scalar rapidity to a vector quantity in spatial three-dimensional cases and extending hyperbolic functions to vectorial arguments. A calculation of the Wigner rotation simplified by using the extended functions illustrates the fact that the rapidity vector space obeys hyperbolic geometry. New representations bring a Lorentz-invariant (...)
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  6.  10
    Finite Difference Computation of Au-Cu/Magneto-Bio-Hybrid Nanofluid Flow in an Inclined Uneven Stenosis Artery.H. Thameem Basha, Karthikeyan Rajagopal, N. Ameer Ahammad, S. Sathish & Sreedhara Rao Gunakala - 2022 - Complexity 2022:1-18.
    The present study addresses the fluid transport behaviour of the flow of gold -copper /biomagnetic blood hybrid nanofluid in an inclined irregular stenosis artery as a consequence of varying viscosity and Lorentz force. The nonlinear flow equations are transformed into dimensionless form by using nonsimilar variables. The finite-difference technique is involved in computing the nonlinear transport dimensionless equations. The significant parameters like angle parameter, the Hartmann number, changing viscosity, constant heat source, the Reynolds number, and nanoparticle volume fraction on the (...)
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  7.  38
    A Democritean phenomenology for quantum scattering theory.H. Pierre Noyes - 1976 - Foundations of Physics 6 (1):83-100.
    The basic operational devices in a particle theory are detectors which show that a particle is “here, now” rather than “there, then.” Successful operation of these devices requires a limiting velocity. Given auxiliary devices which can change particle velocities in both magnitude and direction, the Lorentz-invariant mass can be defined. The wave-particle duality operationally required to explain the scattering of particles from a diffraction grating then predicts fluctuations in particle number (the Wick-Yukawa mechanism), if we postulate a smallest mass. We (...)
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  8.  29
    A Non-Lorenzian Force Stronger than the Lorentz Force.S. H. Kim - 1994 - Apeiron (Misc) 19:1.
  9. Dark Matter versus Mach's Principle.H.-H. V. Borzeszkowski & H.-J. Treder - 1998 - Foundations of Physics 28 (2):273-290.
    Empirical and theoretical evidence show that the astrophysical problem of dark matter might be solved by a theory of Einstein-Mayer type. In this theory, up to global Lorentz rotations, the reference system is determined by the motion of cosmic matter. Thus, one is led to a “Riemannian space with teleparallelism” realizing a geometric version of the Mach-Einstein doctrine. The field equations of this gravitational theory contain hidden matter terms, where the existence of hidden matter is inferred solely from its gravitational (...)
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  10.  46
    Lorentz deformation and the jet phenomenon. II. Explanation of the nearly constant average jet transverse momentum.S. H. Oh, Y. S. Kim & Marilyn E. Noz - 1980 - Foundations of Physics 10 (7-8):635-639.
    It is shown that the jet mechanism derivable from the Lorentz deformation picture leads to a nearly constant average jet transverse momentum. It is pointed out that this is consistent with the high-energy experimental data. It is pointed out further that this result strengthens the physical basis for the minimal time-energy uncertainty combined covariantly with Heisenberg's space-momentum uncertainty relation.
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  11. Mach’s principle and hidden matter.H. -H. V. Borzeszkowski & H. -J. Treder - 1997 - Foundations of Physics 27 (4):595-603.
    According to the Einstein-Mayer theory of the Riemanniann space-time with Einstein-Cartan teleparallelism, the local Lorentz invariance is broken by the gravitational field defining Machian reference systems. This breaking of symmetry implies the occurrence of “hidden matter” in the Einstein equations of gravity. The hidden matter is described by the non-Lorentz-invariant energy-momentum tensor $\hat \Theta _{ik}$ satisfying the relation $\hat \Theta _{i;k}^k = 0$ . The tensor $\hat \Theta _{ik}$ is formed from the Einstein-Cartan torsion field given by the anholonomy objects, (...)
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  12. Note on the History of the FitzGerald-Lorentz Contraction.Stephen Brush, H. Lorentz & George Fitzgerald - 1967 - Isis 58:230-232.
     
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  13.  51
    Stochastic electrodynamics. I. On the stochastic zero-point field.G. H. Goedecke - 1983 - Foundations of Physics 13 (11):1101-1119.
    This is the first in a series of papers that present a new classical statistical treatment of the system of a charged harmonic oscillator (HO) immersed in an omnipresent stochastic zero-point (ZP) electromagnetic radiation field. This paper establishes the Gaussian statistical properties of this ZP field using Bourret's postulate that all statistical moments of the stochastic field plane waves at a given space-time point should agree with their corresponding quantized field vacuum expectations. This postulate is more than adequate to derive (...)
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  14.  28
    Stochastic electrodynamics. II. The harmonic oscillator-zero-point field system.G. H. Goedecke - 1983 - Foundations of Physics 13 (11):1121-1138.
    In this second paper in a series on stochastic electrodynamics the system of a charged harmonic oscillator (HO) immersed in the stochastic zero-point field is analyzed. First, a method discussed by Claverie and Diner and Sanchez-Ron and Sanz permits a finite closed form renormalization of the oscillator frequency and charge, and allows the third-order Abraham-Lorentz (AL) nonrelativistic equation of motion, in dipole approximation, to be rewritten as an ordinary second-order equation, which thereby admits a conventional phase-space description and precludes the (...)
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  15. Classical Electromagnetic Interaction of a Point Charge and a Magnetic Moment: Considerations Related to the Aharonov–Bohm Phase Shift.Timothy H. Boyer - 2002 - Foundations of Physics 32 (1):1-39.
    A fundamentally new understanding of the classical electromagnetic interaction of a point charge and a magnetic dipole moment through order v 2 /c 2 is suggested. This relativistic analysis connects together hidden momentum in magnets, Solem's strange polarization of the classical hydrogen atom, and the Aharonov–Bohm phase shift. First we review the predictions following from the traditional particle-on-a-frictionless-rigid-ring model for a magnetic moment. This model, which is not relativistic to order v 2 /c 2 , does reveal a connection between (...)
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  16. The construction of Electromagnetism.Mario Natiello & H. G. Solari - manuscript
    Abstract We examine the construction of electromagnetism in its current form, and in an alternative form, from a point of view that combines a minimal realism with strict rational demands. We begin by discussing the requests of reason when constructing a theory and next, we follow the historical development as presented in the record of original publications, the underlying epistemology (often explained by the authors) and the mathematical constructions. The historical construction develops along socio-political disputes (mainly, the reunification of Germany (...)
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  17.  9
    Classical Electromagnetic Interaction of a Charge with a Solenoid or Toroid.Timothy H. Boyer - 2023 - Foundations of Physics 53 (4):1-29.
    The Aharonov–Bohm phase shift in a particle interference pattern when electrons pass a long solenoid is identical in form with the optical interference pattern shift when a piece of retarding glass is introduced into one path of a two-beam optical interference pattern. The particle interference-pattern deflection is a relativistic effect of order $$1/c^{2}$$, though this relativity aspect is rarely mentioned in the literature. Here we give a thorough analysis of the classical electromagnetic aspects of the interaction between a solenoid or (...)
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  18.  15
    Construction of Non-Perturbative, Unitary Particle–Antiparticle Amplitudes for Finite Particle Number Scattering Formalisms.James Lindesay & H. Pierre Noyes - 2005 - Foundations of Physics 35 (5):699-741.
    Starting from a unitary, Lorentz invariant two-particle scattering amplitude, we show how to use an identification and replacement process to construct a unique, unitary particle–antiparticle amplitude. This process differs from conventional on-shell Mandelstam s, t, u crossing in that the input and constructed amplitudes can be off-diagonal and off-energy shell. Further, amplitudes are constructed using the invariant parameters which are appropriate to use as driving terms in the multi-particle, multichannel non-perturbative, cluster decomposable, relativistic scattering equations of the Faddeev-type integral equations (...)
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  19.  22
    Conformal symmetry of classical electromagnetic zero-point radiation.Timothy H. Boyer - 1989 - Foundations of Physics 19 (4):349-365.
    The two-point correlation functions of classical electromagnetic zero-point radiation fields are evaluated in four-vector notation. The manifestly Lorentz-covariant expressions are then shown to be invariant under scale transformations and under the conformal transformations of Bateman and Cunningham. As a preliminary to the electromagnetic work, analogous results are obtained for a scalar Gaussian random classical field with a Lorentz-invariant spectrum.
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  20.  90
    The Blackbody Radiation Spectrum Follows from Zero-Point Radiation and the Structure of Relativistic Spacetime in Classical Physics.Timothy H. Boyer - 2012 - Foundations of Physics 42 (5):595-614.
    The analysis of this article is entirely within classical physics. Any attempt to describe nature within classical physics requires the presence of Lorentz-invariant classical electromagnetic zero-point radiation so as to account for the Casimir forces between parallel conducting plates at low temperatures. Furthermore, conformal symmetry carries solutions of Maxwell’s equations into solutions. In an inertial frame, conformal symmetry leaves zero-point radiation invariant and does not connect it to non-zero-temperature; time-dilating conformal transformations carry the Lorentz-invariant zero-point radiation spectrum into zero-point radiation (...)
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  21.  44
    Connecting Blackbody Radiation, Relativity, and Discrete Charge in Classical Electrodynamics.Timothy H. Boyer - 2007 - Foundations of Physics 37 (7):999-1026.
    It is suggested that an understanding of blackbody radiation within classical physics requires the presence of classical electromagnetic zero-point radiation, the restriction to relativistic (Coulomb) scattering systems, and the use of discrete charge. The contrasting scaling properties of nonrelativistic classical mechanics and classical electrodynamics are noted, and it is emphasized that the solutions of classical electrodynamics found in nature involve constants which connect together the scales of length, time, and energy. Indeed, there are analogies between the electrostatic forces for groups (...)
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  22.  48
    Mach-Einstein doctrine and general relativity.H. -H. von Borzeszkowski & H. -J. Treder - 1996 - Foundations of Physics 26 (7):929-942.
    It is argued that, under the assumption that the strong principle of equivalence holds, the theoretical realization of the Mach principle (in the version of the Mach-Einstein doctrine) and of the principle of general relativity are alternative programs. That means only the former or the latter can be realized—at least as long as only field equations of second order are considered. To demonstrate this we discuss two sufficiently wide classes of theories (Einstein-Grossmann and Einstein-Mayer theories, respectively) both embracing Einstein's theory (...)
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  23. Does moral philosophy rest on a mistake?H. A. Prichard - 1912 - Mind 21 (81):21-37.
    Probably to most students of Moral Philosophy there comes a time when they feel a vague sense of dissatisfaction with the whole subject. And the sense of dissatisfaction tends to grow rather than to diminish. It is not so much that the positions, and still more the arguments, of particular thinkers seem unconvincing, though this is true. It is rather that the aim of the subject becomes increasingly obscure. "What," it is asked, "are we really going to learn by Moral (...)
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  24.  31
    From Bargmann’s Superselection Rule to Quantum Newtonian Spacetime.H. Hernandez-Coronado - 2012 - Foundations of Physics 42 (10):1350-1364.
    Bargmann’s superselection rule, which forbids the existence of superpositions of states with different mass and, therefore, implies the impossibility of describing unstable particles in non-relativistic quantum mechanics, arises as a consequence of demanding Galilean covariance of Schrödinger’s equation. However, the usual Galilean transformations inadequately describe the symmetries of non-relativistic quantum mechanics since they can produce phases in the wavefunction which are relativistic time contraction remnants and therefore, cannot be physically interpreted within the theory. In this paper we review the incompatibility (...)
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  25. Problems of Consciousness: Transactions of the First Conference.H. A. Abramson (ed.) - 1950 - Josiah Macy Foundation.
  26. Problems of Consciousness: Transactions of the Second Conference.H. A. Abramson (ed.) - 1951 - Josiah Macy Foundation.
  27. Problems of Consciousness: Transactions of the Third Conference.H. A. Abramson (ed.) - 1952 - Josiah Macy Foundation.
  28.  38
    Problems of Consciousness: Transactions of the Fourth Conference.H. A. Abramson (ed.) - 1953 - Josiah Macy Foundation.
  29. Problems of Consciousness: Transactions of the Fifth Conference.H. A. Abramson (ed.) - 1954 - Josiah Macy Foundation.
     
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  30. The Principles of Logic.H. A. Aikens - 1903 - The Monist 13:474.
     
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  31.  69
    Radiation from Bodies with Extreme Acceleration II: Kinematics. [REVIEW]Ulrich H. Gerlach - 2003 - Foundations of Physics 33 (2):179-221.
    When applied to a dipole source subjected to acceleration which is violent and long lasting (“extreme acceleration”), Maxwell's equations predict radiative power which augments Larmor's classical radiation formula by a nontrivial amount. The physical assumptions behind this result are made possible by the kinematics of a system of geometrical clocks whose tickings are controlled by cavities which are expanding inertially. For the purpose of measuring the radiation from such a source we take advantage of the physical validity of a spacetime (...)
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  32. Does Moral Philosophy rest on a Mistake?H. A. Pritchard - 1912 - Philosophical Review 21:493.
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  33.  40
    Hendrik Antoon Lorentz. On the Theory of the Reflection and Refraction of Light: Academic Dissertation for Acquiring the Degree of Doctor of Mathematical and Physical Sciences at Leyden University. Edited and translated by, Nancy J. Nersessian and H. Floris Cohen. xi + vii + 186 pp., frontis., tables. Amsterdam/Atlanta, Ga.: Rodopi, 1997. $42, £25, DFl 80. [REVIEW]A. J. Kox - 2002 - Isis 93 (4):711-712.
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  34.  30
    H. A. Lorentz and the Electromagnetic View of Nature.Russell McCormmach - 1970 - Isis 61 (4):459-497.
  35.  91
    The 'present' in physics.H. A. C. Dobbs - 1969 - British Journal for the Philosophy of Science 19 (4):317-324.
  36.  29
    Time and the Physical World. [REVIEW]J. H. B. - 1962 - Review of Metaphysics 15 (4):679-679.
    A discussion of "the time-concept" which depends heavily upon physical theory for its basis and conclusions. Within these limits, it is thorough, careful, and sometimes illuminating. The physical meanings of "direction" and "irreversibility" of time are thoroughly explored; the relation of time to entropy is discussed, as well as the concept of time in relativity and quantum theory. The principal original contribution of the book is its suggested distinction between "Lorentz-" and "Clausius-processes" as a means for solving the clock problems (...)
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  37. Part II. End-of-Life Care in Islamic Studies: 3. Muqārabāt falsafīyah akhlāqīyah li-rihāb al-mawt fī al-ḥaḍārah al-Islāmīyah: dirāsat ārāʼ Muḥammad ibn Zakarīyā al-Rāzī, wa-Abī ʻAlī Maskawayh, wa-Ṣadr al-Dīn al-Shīrāzī.Ḥāmid Ārḍāʼī va-Asmāʼ Asadī - 2022 - In Mohammed Ghaly (ed.), End-of-life care, dying and death in the Islamic moral tradition. Boston: Brill.
  38. Duty and Ignorance of Fact.H. A. Prichard - 1932 - Philosophy 8 (30):226-228.
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  39. Knowledge and Perception.H. A. Prichard - 1950 - Philosophy 25 (95):358-360.
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  40. Muslim falsafah: caudhvīn ṣadī ʻĪsvī tak ke nāmvar Musalmān mufakkirīn kē ilāhiyyātī, mā baʻdut̤-t̤abaʻī, nafsiyātī, ak̲h̲lāqī, aur siyāsī naẓriyāt. ʻAbdulk̲h̲āliq - 1984 - Lāhaur: ʻAzīz Pablisharz. Edited by Yūsuf Shaidāʼi.
  41. al-Ījābīyah fī ḥayāt al-Muslim.Muḥammad ʻAbd Allāh Ḥāwirī - 2008 - Ṣanʻāʼ: Markaz al-Mutafawwiq lil-Ṭibāʻah wa-al-Nashr wa-al-Tawzīʻ.
     
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  42. al-Niẓām al-qānūnī lil-munaẓẓamāt al-duwalīyah: taṭbīqan ʻalá Munaẓẓamat al-Umam al-Muttaḥidah.Muḥammad ʻAlī ʻAlī Ḥājj - 2016 - Ṣanʻāʼ: Maktabat Markaz al-Ṣādiq lil-Ṭibāʻah wa-al-Nashr wa-al-Tawzīʻ.
     
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  43.  39
    Studies in space orientation. III. Perception of the upright in the absence of a visual field.H. A. Witkin & S. E. Asch - 1948 - Journal of Experimental Psychology 38 (5):603.
  44.  2
    The Obligation to Keep a Promise.H. A. Prichard - 2002 - In H. A. Prichard (ed.), Moral writings. New York: Oxford University Press.
    A promise to do some action seems to create a binding obligation to do that action. And yet, paradoxically, an obligation seems not to be a fact that we can create or bring into existence; we can create an obligation only by creating or bringing into existence something else. The only way to avoid the paradox is to show that the act of promising creates something other than an obligation, which nonetheless binds us to perform the action in question. After (...)
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  45. The Concepts of Classical Thermodynamics.H. A. Buchdahl - 1967 - British Journal for the Philosophy of Science 18 (1):83-84.
  46.  10
    Man and Aggression. [REVIEW]O. H. S. - 1969 - Review of Metaphysics 23 (2):364-364.
    Montague seems to have marshalled this repetitive, overlapping collection of essays to stamp out once and for all the Hobbesian myth that man is innately aggressive and violent. He succeeds by over-kill; there are no voices for the other side. This is in part because the other side has already spoken, and to too wide an audience. The targets of this collection of diatribes are Konrad Lorentz, and Robert Ardrey. Both are repeatedly accused of over-simplification, inadequate or irresponsible research, subjectivism, (...)
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  47. The time of physics and psychology.H. A. C. Dobbs - 1956 - British Journal for the Philosophy of Science 7 (26):156-160.
    This note is in answer to some criticisms by professor mundle of dobb's work on the above topic. he first presents a general argument, relevant to those criticisms, regarding the physical significance of the fifth dimension. (staff).
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  48.  46
    Multidimensional time.H. A. C. Dobbs - 1958 - British Journal for the Philosophy of Science 9 (35):225-227.
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  49. Obituary notices.H. A. C. Dobbs - 1956 - British Journal for the Philosophy of Science 7 ([25/28]):180.
     
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  50. Philosophy of science conference.H. A. C. Dobbs - 1956 - British Journal for the Philosophy of Science 7 ([25/28]):184.
     
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