The Experts below are selected from a list of 63 Experts worldwide ranked by ideXlab platform
Darko Kapor - One of the best experts on this subject based on the ideXlab platform.
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Bohr quantum Theory and creation by gauge transformation of the magnetic monopoles
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr sommerfeld quantum Theory of the magnetic monopoles and electron electromagnetic mass
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr sommerfeld Theory of the magnetic monopole
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr sommerfeld Theory of the magnetic monopole with quasi confinement
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
Vladan Pankovic - One of the best experts on this subject based on the ideXlab platform.
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Bohr quantum Theory and creation by gauge transformation of the magnetic monopoles
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr sommerfeld quantum Theory of the magnetic monopoles and electron electromagnetic mass
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr sommerfeld Theory of the magnetic monopole
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr sommerfeld Theory of the magnetic monopole with quasi confinement
2010Co-Authors: Vladan Pankovic, Darko KaporAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
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Bohr quantum Theory of the magnetic monopoles and classical electron electromagnetic mass problem
arXiv: General Physics, 2010Co-Authors: Vladan PankovicAbstract:In the first part of this work we apply Bohr (old or naive quantum atomic) Theory for analysis of the remarkable electro-dynamical problem of magnetic monopoles. We reproduce formally exactly some basic elements of the Dirac magnetic monopoles Theory, especially Dirac electric/magnetic charge quantization condition. It follows after application of Bohr Theory at the system, simply called magnetic monopole "atom", consisting of the practically standing, massive magnetic monopole as the "nucleus" and electron rotating stable around magnetic monopole under magnetic and electrostatic interactions. Also, in the second part of this work we suggest a simple solution of the classical electron electromagnetic mass problem.
Vladimir P Milantev - One of the best experts on this subject based on the ideXlab platform.
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creation and development of Bohr s Theory on the 90th anniversary of the Bohr Theory of the atom
Physics-Uspekhi, 2004Co-Authors: Vladimir P MilantevAbstract:The history of the creation and development of Bohr's atomic Theory is discussed. Even now, with a consistent quantum Theory available, Bohr's Theory is not simply the property of history, of methodological interest only. To this day, the ideas of the Theory not only provide an excellent introduction to atomic physics, but are also used successfully in treating atomic Rydberg states, exotic atoms, etc.
Guido Van Hooydonk - One of the best experts on this subject based on the ideXlab platform.
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generic quantum numbers for symmetry breaking in and chiral harmonic chaotic and fractal behavior of a 2 unit charge system part i Bohr Theory as a precursor of quantum field Theory
Social Science Research Network, 2003Co-Authors: Guido Van HooydonkAbstract:Following our recent analysis of the H Lyman ns terms [Van Hooydonk, Phys. Rev. A 66, 044104 (2002)] in search for H-chirality, we explore the generic chiral behavior of numbers in an arithmetic and harmonic series. This physics-independent number theoretical solution explains all known physics quantum numbers on the basis of All quantum numbers, including spin, are hidden in original achiral Bohr Theory, when this is transformed in a generic chiral Theory. transforms Bohr Theory in a quantum field Theory and avoids wave- and/or matrix-based quantum mechanics, relativity and bound state QED. Singlet-triplet splitting in bonds is a typical generic result with chiral number Theory, much simpler than a Heitler-London based wave mechanical treatment. Left and right bits 0 and 1 in the absolute 1D unit structure [0,1] and the continuous transition from 0 to 1 are the sole elements needed to account for left-right asymmetry, chaos and harmony in the 2 unit-charge Coulomb system in H, exhibiting either atomic (hydrogen) or anti-atomic (antihydrogen) behavior. Current experiments at CERN (ATHENA, ATRAP...) on artificially produced antihydrogen H may well be superfluous.
J P Oleary - One of the best experts on this subject based on the ideXlab platform.
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the effects of the pauli exclusion principle in determining the ionization energies of the helium atom and helium like ions
European Journal of Physics, 2012Co-Authors: F A Deeney, J P OlearyAbstract:For helium and helium-like ions, we have examined the differences between the values of the ionization energies as calculated from the Bohr Theory and those measured in experiments. We find that these differences vary linearly with the atomic number of the system. Using this result, we show how the Bohr model for single-electron systems may be modified in a simple way so that it may be applied to two-electron systems as well.