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Edward Anderson [7]Edward J. Anderson [1]
  1.  7
    The Problem of Time: Quantum Mechanics Versus General Relativity.Edward Anderson - 2017 - Cham: Imprint: Springer.
    This book is a treatise on time and on background independence in physics. It first considers how time is conceived of in each accepted paradigm of physics: Newtonian, special relativity, quantum mechanics (QM) and general relativity (GR). Substantial differences are moreover uncovered between what is meant by time in QM and in GR. These differences jointly source the Problem of Time: Nine interlinked facets which arise upon attempting concurrent treatment of the QM and GR paradigms, as is required in particular (...)
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  2. Scale-invariant gravity: Geometrodynamics.Edward Anderson, Julian Barbour, Brendan Foster & Niall Ó~Murchadha - 2003 - Classical and Quantum Gravity 20:1571--604.
     
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  3.  45
    On the recovery of geometrodynamics from two different sets of first principles.Edward Anderson - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (1):15-57.
  4.  6
    On the recovery of geometrodynamics from two different sets of first principles.Edward Anderson - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (1):15-57.
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  5.  9
    Equality as a Global Goal.Edward Anderson - 2016 - Ethics and International Affairs 30 (2):189-200.
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  6.  8
    Kendall׳s shape statistics as a classical realization of Barbour-type timeless records theory approach to quantum gravity.Edward Anderson - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 51:1-8.
  7.  10
    Magnetohydrodynamic Shock Waves.Edward J. Anderson - 2003 - MIT Press.
    Studies based on the Rankine-Hugoniot relations have classified MHO shock waves as fast, switch-on, intermediate, switch-off, and slow. Any waves found in nature must also: possess steady-state structures and be stable in the presence of small-flow disturbances. In this monograph, Dr. Anderson examines these criteria in relation to plane shocks for which the collision frequency is large compared with cyclotron frequency. It contains a three-dimensional graphic representation of shock end states and presents an exact solution for the shock adiabatic curve (...)
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