Results for ' angularity'

302 found
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  1.  40
    Field Angular Momentum.A. Kato, G. Muñoz, D. Singleton, J. Dryzek & V. Dzhunushaliev - 2003 - Foundations of Physics 33 (5):769-780.
    We examine the possible role played by field angular momentum in two systems of vastly different sizes: (i) the nucleon and (ii) highly magnetic white dwarf stars. For the nucleon we study the restrictions on the nucleon's structure that arise from the requirement that the total field angular (spin, orbital and field angular momentum) should satisfy the standard angular momentum commutation relationship. For the magnetic white dwarfs we argue that the magnetic field may alter the statistics of some fraction of (...)
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  2.  23
    The angular dislocation.Elizabeth H. Yoffe - 1960 - Philosophical Magazine 5 (50):161-175.
  3.  44
    Angular-momentum theory and projective geometry.B. R. Judd - 1983 - Foundations of Physics 13 (1):51-59.
    The Desarguesian nature of angular-momentum theory is illustrated by drawing correspondences between relations satisfied by then-j symbols and various collinearity properties of the appropriate diagrams. No examples of Pappus' theorem have been found. A relation is suggested between the operations of angular-momentum theory and Hilbert's constructions for the addition and multiplication of points on a line.
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  4.  32
    The Angular Momentum Dilemma and Born–Jordan Quantization.Maurice A. de Gosson - 2017 - Foundations of Physics 47 (1):61-70.
    The rigorous equivalence of the Schrödinger and Heisenberg pictures requires that one uses Born–Jordan quantization in place of Weyl quantization. We confirm this by showing that the much discussed “ angular momentum dilemma” disappears if one uses Born–Jordan quantization. We argue that the latter is the only physically correct quantization procedure. We also briefly discuss a possible redefinition of phase space quantum mechanics, where the usual Wigner distribution has to be replaced with a new quasi-distribution associated with Born–Jordan quantization, and (...)
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  5. Angular homeostasis: IV. Polygonal orbits.Edmond A. Murphy, Kenneth R. Berger, Joseph E. Trojak & E. Manuel Rosell - 1989 - Theoretical Medicine and Bioethics 10 (4).
    Some properties are discussed of regular polygons that may result from angular homeostatic processes in stable orbit. To characterize these homeostatic polygons we need to discuss the winding number, the sidedness (integer, fractional and irrational), multiplicity, envelopes, and density. A regular (i.e., equilateral, equiangular) polygon may be closed in one revolution about its unique center, in multiple revolutions, or not at all. A homeostatic polygon can be generated only if all vertices are included in a single polygon, which occurs if (...)
     
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  6.  14
    Electromagnetic Angular Momentum of an Orbiting Charge.W. J. Trompetter - 2021 - Foundations of Physics 51 (5):1-22.
    The electric field of an orbiting charge or electron observed in the rotating frame takes on a circular trajectory with a maximum radius of \. The resultant extended electromagnetic structure is used to derive the spin–orbit energy of the orbiting electron. A surprising result of the derived expression is that the orbital velocity has a specific value ) in close agreement ) with the experimentally determined value for the fine structure constant ). Furthermore, the derived spin–orbit expression does not include (...)
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  7.  7
    Angular helical dislocations in quenched β'-brass.A. J. Mokton - 1970 - Philosophical Magazine 22 (177):483-491.
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  8. Angular homeostasis: III. The formalism of discrete orbits in ontogeny.Kenneth R. Berger & Edmond A. Murphy - 1989 - Theoretical Medicine and Bioethics 10 (4).
    The formal properties of orbits in a plane are explored by elementary topology. The notions developed from first principles include: convex and polygonal orbits; convexity; orientation, winding number and interior; convex and star-shaped regions. It is shown that an orbit that is convex with respect to each of its interior points bounds a convex region. Also, an orbit that is convex with respect to a fixed point bounds a star-shaped region.Biological considerations that directed interest to these patterns are indicated, and (...)
     
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  9.  4
    Angular estimation: An exploratory study.S. Gelmini, M. Dalantis & M. S. Mayzner - 1979 - Bulletin of the Psychonomic Society 14 (4):285-287.
  10.  17
    The angular dislocation parallel to a free surface. Application to a Si low-angle twist boundary.S. Neily, S. Youssef, F. Fournel & R. Bonnet - 2011 - Philosophical Magazine 91 (31):4001-4012.
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  11.  4
    XIV. Angular correlation measurements on88Sr.C. F. Coleman - 1956 - Philosophical Magazine 1 (2):166-174.
  12.  18
    The angular correlation of the gamma cascade in sulphur 34.P. S. Fisher & G. G. Shute - 1957 - Philosophical Magazine 2 (22):1255-1263.
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  13. Angular distribution of photoelectrons from ba.Zbornik Matice Srpske - 2002 - Facta Universitatis, Series: Linguistics and Literature 2 (4):185-191.
     
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  14.  18
    Functional Disconnection of the Angular Gyrus Related to Cognitive Impairment in Patients With Type 2 Diabetes Mellitus.Fei Qi, Dongsheng Zhang, Jie Gao, Min Tang, Man Wang, Yu Su, Yumeng Lei, Zhirong Shao & Xiaoling Zhang - 2021 - Frontiers in Human Neuroscience 15.
    Type 2 diabetes mellitus is related to a variety of cognitive impairments that may even progress to dementia. Studies have found the angular gyrus is a cross-modal integration hub that is involved in a variety of cognitive processes. However, few studies have focused on the patterns of resting-state functional connections of the AG in patients with T2DM. This study explored the functional connection between the AG and the whole brain and the relationship between the FC and clinical/cognitive variables in patients (...)
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  15.  11
    Variables affecting the angular displacement threshold of simulated auditory movement.R. C. Wilcott - 1955 - Journal of Experimental Psychology 49 (1):68.
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  16.  7
    Magnitude estimation of angular velocity during passive rotation.James H. Brown - 1966 - Journal of Experimental Psychology 72 (2):169.
  17.  51
    Orbital and Field Angular Momentum in the Nucleon.D. Singleton & V. Dzhunushaliev - 2000 - Foundations of Physics 30 (7):1093-1105.
    The nucleon spin problem raises experimental and theoretical questions regarding the contribution of the orbital angular momentum of the quarks to the total spin of the nucleon. In this article we examine the commutation relationships of various operators that contribute to the total angular momentum of the nucleon. We find that the sum of the orbital plus gluon field angular momenta should satisfy the angular momentum commutators, at least up to the one-loop level. This, requirement on the sum of these (...)
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  18.  8
    On the angular component map modulo P.Johan Pas - 1990 - Journal of Symbolic Logic 55 (3):1125-1129.
  19.  74
    Energy and Angular Momentum of Systems in General Relativity.F. I. Cooperstock - 2001 - Foundations of Physics 31 (7):1067-1082.
    Stemming from our energy localization hypothesis that energy in general relativity is localized in the regions of the energy-momentum tensor, we had devised a test with the classic Eddington spinning rod. Consistent with the localization hypothesis, we found that the Tolman energy integral did not change in the course of the motion. This implied that gravitational waves do not carry energy in vacuum, bringing into question the demand for the quantization of gravity. Also if information is conveyed by the waves, (...)
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  20.  8
    Multi-temperature equal channel angular pressing of Mg-3 wt%Al-1 wt%Zn alloy.Peter Molnár & Aleš Jäger - 2013 - Philosophical Magazine 93 (27):3612-3626.
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  21.  43
    Extended Electromagnetic Theory, Angular Momentum and the B (3) Field.Bo Lehnert & Sisir Roy - 1997 - Apeiron 4 (2-3):59.
  22. Abel summability and angular convergence.Ricardo Estrada - 2003 - Scientia 9:45-51.
     
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  23.  15
    Effects of angular gain transformations between movement and visual feedback on coordination performance in unimanual circling.Martina Rieger, Sandra Dietrich & Wolfgang Prinz - 2014 - Frontiers in Psychology 5.
  24.  12
    Delayed γ-ray angular correlations in tantalum 181.R. E. Azuma & G. M. Lewis - 1957 - Philosophical Magazine 2 (23):1325-1332.
  25.  25
    Depth discrimination of constant angular size stimuli in action space: role of accommodation and convergence cues.Abdeldjallil Naceri, Alessandro Moscatelli & Ryad Chellali - 2015 - Frontiers in Human Neuroscience 9.
  26.  26
    The Energy and Angular Distributions of the Protons from the Reaction60Ni60Co Induced by 13.5 MeV Neutrons.P. V. March & W. T. Morton - 1958 - Philosophical Magazine 3 (30):577-581.
  27.  10
    Assessing the strength of angular induction using waveforms.Ernest Greene & Sabah Al-Quaddoomi - 1989 - Bulletin of the Psychonomic Society 27 (3):245-248.
  28.  16
    John Wallis' Treatise of Angular Sections and Thabit ibn Qurra's Generalization of the Pythagorean Theorem.Christoph J. Scriba - 1966 - Isis 57 (1):56-66.
  29.  15
    Effects of angular shift transformations between movements and their visual feedback on coordination in unimanual circling.Martina Rieger, Sandra Dietrich & Wolfgang Prinz - 2014 - Frontiers in Psychology 5.
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  30.  20
    An Uncertainty Relation for the Orbital Angular Momentum Operator.H. Fakhri & M. Sayyah-Fard - 2016 - Foundations of Physics 46 (8):1062-1073.
    A common reducible representation space of the Lie algebras su and su is equipped with two different types of scalar products. The representation bases are labeled by the azimuthal and magnetic quantum numbers. The generators of su are the x-, y- and z-components of the orbital angular momentum operator. The representation of each of these Lie algebras is unitary with respect to only one of the scalar products. To each positive magnetic quantum number a family of the su-Barut–Girardello coherent states (...)
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  31.  44
    Dissociating the effects of angular disparity and image similarity in mental rotation and object recognition.Olivia S. Cheung, William G. Hayward & Isabel Gauthier - 2009 - Cognition 113 (1):128-133.
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  32.  33
    Bianchi identities and the automatic conservation of energy-momentum and angular momentum in general-relativistic field theories.Friedrich W. Hehl & J. Dermott McCrea - 1986 - Foundations of Physics 16 (3):267-293.
    Automatic conservation of energy-momentum and angular momentum is guaranteed in a gravitational theory if, via the field equations, the conservation laws for the material currents are reduced to the contracted Bianchi identities. We first execute an irreducible decomposition of the Bianchi identities in a Riemann-Cartan space-time. Then, starting from a Riemannian space-time with or without torsion, we determine those gravitational theories which have automatic conservation: general relativity and the Einstein-Cartan-Sciama-Kibble theory, both with cosmological constant, and the nonviable pseudoscalar model. The (...)
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  33.  62
    Dirac Equation with Coupling to 1/r Singular Vector Potentials for all Angular Momenta.A. D. Alhaidari - 2010 - Foundations of Physics 40 (8):1088-1095.
    We consider the Dirac equation in 3+1 dimensions with spherical symmetry and coupling to 1/r singular vector potential. An approximate analytic solution for all angular momenta is obtained. The approximation is made for the 1/r orbital term in the Dirac equation itself not for the traditional and more singular 1/r 2 term in the resulting second order differential equation. Consequently, the validity of the solution is for a wider energy spectrum. As examples, we consider the Hulthén and Eckart potentials.
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  34.  19
    Multidimensional stimulus generalization of a tactile response along the dimensions of angularity and texture.Ronald B. Purtle & Frederick L. Newman - 1969 - Journal of Experimental Psychology 81 (3):566.
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  35.  28
    Increased Functional Connectivity of the Angular Gyrus During Imagined Music Performance.Shoji Tanaka & Eiji Kirino - 2019 - Frontiers in Human Neuroscience 13.
  36.  15
    Eyemovement latency, duration, and response time as a function of angular displacement.Albert E. Bartz - 1962 - Journal of Experimental Psychology 64 (3):318.
  37.  23
    Detectability of relative motion as a function of exposure duration, angular separation, and background.Lewis O. Harvey & John A. Michon - 1974 - Journal of Experimental Psychology 103 (2):317.
  38.  11
    Shape discrimination as a function of the angular orientation of the stimuli.Malcolm D. Arnoult - 1954 - Journal of Experimental Psychology 47 (5):323.
  39.  25
    Effect of duration of stimulus presentation on the angular acceleration threshold.Richard L. Doty - 1969 - Journal of Experimental Psychology 80 (2p1):317.
  40.  13
    Magnitude estimates of the oculogyral illusion during and following angular acceleration.Richard D. Parsons - 1970 - Journal of Experimental Psychology 84 (2):230.
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  41.  68
    Relativistic description of a rotating disk with angular acceleration.Ø Grøn - 1979 - Foundations of Physics 9 (5-6):353-369.
    A rotating disk with angular acceleration is given a relativistic description as observed from the rotating rest frameR of the disk. It is shown how a non-Euclidean intrinsic spatial geometry develops inR, as the disk gets an angular velocity. The explanation of this as given by anR-observer is discussed. A recent description of the geometry inR presented by Grünbaum and Janis is criticized. The motion of light as described by use of coordinate clocks inR is discussed in connection with some (...)
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  42. QCD in the Infrared with Exact Angular Integrations.D. Atkinson & J. C. R. Bloch - unknown
    In a previous paper we have shown that in quantum chromodynamics the gluon propagator vanishes in the infrared limit, while the ghost propagator is more singular than a simple pole. These results were obtained after angular averaging, but in the current paper we go beyond this approximation and perform an exact calculation of the angular integrals. The powers of the infrared behaviour of the propagators are changed substantially. We find the very intriguing result that the gluon propagator vanishes in the (...)
     
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  43.  67
    The Tensors of the Averaged Relative Energy–Momentum and Angular Momentum in General Relativity and Some of Their Applications.Janusz Garecki - 2007 - Foundations of Physics 37 (3):341-365.
    There exist different kinds of averaging of the differences of the energy–momentum and angular momentum in normal coordinates NC(P) which give tensorial quantities. The obtained averaged quantities are equivalent mathematically because they differ only by constant scalar dimensional factors. One of these averaging was used in our papers [J. Garecki, Rep. Math. Phys. 33, 57 (1993); Int. J. Theor. Phys. 35, 2195 (1996); Rep. Math. Phys. 40, 485 (1997); J. Math. Phys. 40, 4035 (1999); Rep. Math. Phys. 43, 397 (1999); (...)
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  44.  18
    Perceptual thresholds of curvilinearity and angularity as functions of line length.Louis Della Valle, T. G. Andrews & Sherman Ross - 1956 - Journal of Experimental Psychology 51 (5):343.
  45. Active set Methods for Problems in Column Block Angular Form.Julio Michael Stern & Stephen A. Vavasis - 1993 - Computational and Applied Mathematics 12 (3):199-226.
    We study active set methods for optimization problems in Block Angular Form (BAF). We begin by reviewing some standard basis factorizations, including Saunders' orthogonal factorization and updates for the simplex method that do not impose any restriction on the pivot sequence and maintain the basis factorization structured in BAF throughout the algorithm. We then suggest orthogonal factorization and updating procedures that allow coarse grain parallelization, pivot updates local to the affected blocks, and independent block reinversion. A simple parallel environment appropriate (...)
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  46.  66
    Cross-Term Conservation Relationships for Electromagnetic Energy, Linear Momentum, and Angular Momentum.Daniel C. Cole - 1999 - Foundations of Physics 29 (11):1673-1693.
    Cross-term conservation relationships for electromagnetic energy, linear momentum, and angular momentum are derived and discussed here. When two or more sources of electromagnetic fields are present, these relationships connect the cross terms that appear in the traditional expressions for the electromagnetic (1) energy, (2) linear momentum, and (3) angular momentum, over to, respectively, (1) the sum of the rates of work, (2) the sum of the forces, and (3) the sum of the torques, that are due to the fields of (...)
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  47.  72
    Time as a Geometric Concept Involving Angular Relations in Classical Mechanics and Quantum Mechanics.Juan Eduardo Reluz Machicote - 2010 - Foundations of Physics 40 (11):1744-1778.
    The goal of this paper is to introduce the notion of a four-dimensional time in classical mechanics and in quantum mechanics as a natural concept related with the angular momentum. The four-dimensional time is a consequence of the geometrical relation in the particle in a given plane defined by the angular momentum. A quaternion is the mathematical entity that gives the correct direction to the four-dimensional time.Taking into account the four-dimensional time as a vectorial quaternionic idea, we develop a set (...)
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  48.  27
    Quantum mechanics in discrete space and angular momentum.T. S. Santhanam - 1977 - Foundations of Physics 7 (1-2):121-127.
    Recently we have studied quantum mechanics of bounded operators with a discrete spectrum. In particular, we derived an expression for the commutator[Q, P] of two bounded operators whose spectrum is discrete, and we showed that in the limit of a continuous spectrum the commutator becomes the standard one of Heisenberg. In this paper we show that the angular momentum operator and the phase operator satisfy the new commutation relation. We also briefly discuss the problem of the canonical phase operator conjugate (...)
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  49.  26
    Magnitude estimates of rotational velocity during and following prolonged increasing, constant, and zero angular acceleration.Brant Clark & John D. Stewart - 1968 - Journal of Experimental Psychology 78 (2p1):329.
  50.  22
    Higher Language Ability is Related to Angular Gyrus Activation Increase During Semantic Processing, Independent of Sentence Incongruency.Helene Van Ettinger-Veenstra, Anita McAllister, Peter Lundberg, Thomas Karlsson & Maria Engström - 2016 - Frontiers in Human Neuroscience 10.
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