Bulletin of the National Research Council, Ausgabe 24National Research Council of the National Academy of Sciences, 1922 - 172 Seiten |
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... MOVING MEDIA Report of the National Research Council Committee on Electrodynamics of Moving Media By W. F. G. Swann , John T. Tate , H. Bateman , E. H. Kennard Ou PUBLISHED BY THE NATIONAL RESEARCH COUNCIL OF THE NATIONAL ACADEMY OF ...
... MOVING MEDIA Report of the National Research Council Committee on Electrodynamics of Moving Media By W. F. G. Swann , John T. Tate , H. Bateman , E. H. Kennard Ou PUBLISHED BY THE NATIONAL RESEARCH COUNCIL OF THE NATIONAL ACADEMY OF ...
Seite 1
... MOVING MEDIA Report of the National Research Council Committee on Electro- dynamics of Moving Media * PART I By W. F. G. SWANN Professor of Physics , University of Minnesota PART II By JOHN T. TATE Professor of Physics , University of ...
... MOVING MEDIA Report of the National Research Council Committee on Electro- dynamics of Moving Media * PART I By W. F. G. SWANN Professor of Physics , University of Minnesota PART II By JOHN T. TATE Professor of Physics , University of ...
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... moving media . Appendix ... Note 1. Concerning definitions in terms of a unit pole or unit.magnet 55 Note 2. Equations for free aether .. Equations for media containing charges . Note 3. Concerning the significance of v in the circuital ...
... moving media . Appendix ... Note 1. Concerning definitions in terms of a unit pole or unit.magnet 55 Note 2. Equations for free aether .. Equations for media containing charges . Note 3. Concerning the significance of v in the circuital ...
Seite 4
... moving electric pole ... 105 The reflection of light at a moving plane mirror . 108 Behaviour of electrical quantities under a relativity transformation .. 112 Fields with singularities of a complex nature which move with velocities ...
... moving electric pole ... 105 The reflection of light at a moving plane mirror . 108 Behaviour of electrical quantities under a relativity transformation .. 112 Fields with singularities of a complex nature which move with velocities ...
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... is given by a law of the type above specified , it is certainly possible to assign a distribution σ which when combined with 6 ELECTRODYNAMICS OF MOVING MEDIA The laws of inverse squares and of conservation of charge.
... is given by a law of the type above specified , it is certainly possible to assign a distribution σ which when combined with 6 ELECTRODYNAMICS OF MOVING MEDIA The laws of inverse squares and of conservation of charge.
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acceleration aether assumption axis boundary calculate circuit components condenser conductor constant corresponding curl H defined definition density derivatives dielectric direction of motion discussed displacement distribution doublet dynamical effect electric charges electric doublet electric field electric force electric pole electrical point electromagnetic theory electromotive force electron electrostatic element of volume energy equation of motion experiment experimental expression external force fact field due function fundamental given grad H. A. LORENTZ inverse squares J. J. THOMSON lines of induction Lorentzian macroscopic magnetic doublet magnetic field medium obtained particles phenomena Phil Phys plates polarization positive possible Proc quantities quantum theory radiation regarded relation relativity represents result rotating scalar potential stationary supposed surface integral theory of relativity torque unipolar induction unit volume vector potential velocity volume element Zeitschr zero дх მყ
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Seite 87 - No mere rotation of a bar-magnet on its axis produces any inductive effects on circuits exterior to it. The system of power about the magnet must not be considered as revolving with the magnet any more than the rays of light which emanate from the sun are supposed to revolve with the sun. The magnet may even, in certain cases, be considered as revolving amongst its own forces, and producing a full electric effect sensible at the galvanometer.
Seite 158 - Phil. Mag." Jan. (1915). p. 49. SR MILNER. "Phil. Mag." Vol. 40 (1920), p. 494. (5) AL PARSON. "A magneton theory of the structure of the atom." "Smithsonian Misc. Coll." Nov. 29 (1915). See also DL WEBSTER. "Phys. Review." Vol. 9 (1917), p. 484. (6) AH COMPTON. "Phys. Review." Vol. 14 (1919), pp. 20, 247; "Phil. Mag." Vol. 41 (1921), p. 279. (7) LEIGH PAGE. "Phys. Review." Vol. 18 (1921), p. 58. (8) H. POINCARE. "Rend. Palermo.
Seite 41 - ... electron, a difficulty exists as to the application of the principle of conservation of energy; and the difficulty is this: If we calculate the longitudinal electromagnetic mass of the electron we find where a is the radius of the spherical shell of charge which constitutes the electron when at rest...
Seite 1 - Price $0.50. Number 24. Electrodynamics of moving media. Report of the National Research Council Committee on Electrodynamics of Moving Media. WFG Swann, John T. Tate, H. Bateman, and EH Kennard. December, 1922.
Seite 62 - ... would be obviously nothing more than a manipulation of symbols. Our desire is to emphasize the fact that, until some further assumption is made, there is no connection whatever between the velocity of the boundary of our charge and the v which occurs in equation (97). Co-existent with any set of motions which we like to assign to the boundaries of the charges, /, ie, pv can have any values whatever, as far as our definitions are concerned, and this is what might be expected in view of the fact...