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Titlebook: Electromagnetic Interactions; Slobodan Danko Bosanac Book 2016 Springer-Verlag Berlin Heidelberg 2016 Charge in Electromagnetic Wave.Confi

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https://doi.org/10.1007/978-3-642-50696-3del, when owing to relativistic effects the phase space is almost stationary, except for translational degrees of freedom. Relativistic motion is an example of the universal recipe to control motion of, charged, particles; they should be confined to a small volume of space and then manipulated by el
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Introduction,densities is examined and discussed under what circumstances the two are identical. Charge density and resulting properties of molecules is reviewed, together with describing adiabatic expansion for calculating their structure. Particular emphases is to derive non adiabatic coupling among the electr
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Relativistic Wave Equations,n, and they could be derived from a single equation. Solutions are analyzed and with special emphases on applying various Green functions. Particular emphases is devoted to analyzing Dirac equation, being representative of relativistic quantum dynamics for spin half particles.
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Charge in Electromagnetic Wave,ulse, which is produced by relativistic motion of a charge, is examined. Theory for the field reaction force is developed, which is the missing link between dynamics of charge and radiation that it generates.
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Confinement of Charge,del, when owing to relativistic effects the phase space is almost stationary, except for translational degrees of freedom. Relativistic motion is an example of the universal recipe to control motion of, charged, particles; they should be confined to a small volume of space and then manipulated by el
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