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On the regularization procedure in classical electrodynamics

Journal of Physics A: Mathematical and General, 2003
Summary: We consider the self-action problem in classical electrodynamics. A strict geometrical sense of commonly used renormalization of mass is made. A regularization procedure is proposed which relies on energy-momentum and angular momentum balance equations. We correct the expression for angular momentum tensor obtained by us in a previous paper [J.
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Classical electrodynamics of spinning particles

Canadian Journal of Physics, 1984
We consider particles with mass, charge, intrinsic magnetic and electric dipole moments, and intrinsic angular momentum in interaction with a classical electromagnetic field. From this action we derive the equations of motion of the position and intrinsic angular momentum of the particle including the radiation reaction, the wave equations of the ...
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Gauge Invariance and Classical Electrodynamics

Physical Review, 1953
A Lagrangian for deriving the Maxwell-Lorentz field equations is obtained by starting from a general tensor of the second rank ${\mathcal{G}}_{\ensuremath{\mu}\ensuremath{\nu}}$, which is expressed as the sum of a symmetric and an antisymmetric part ${\mathcal{G}}_{\ensuremath{\mu}\ensuremath{\nu}}=\ensuremath{\lambda}{g}_{\ensuremath{\mu}\ensuremath ...
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Classical Electrodynamics

2019
Julian Schwinger   +3 more
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Quantum mechanical ground state of hydrogen obtained from classical electrodynamics

Physics Letters, Section A: General, Atomic and Solid State Physics, 2003
Daniel Cole
exaly  

Time in classical electrodynamics

American Journal of Physics, 2006
Fritz Rohrlich
exaly  

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