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  1. Clifford Algebra Formulation of an Electromagnetic Charge-Current Wave Theory.Amr M. Shaarawi - 2000 - Foundations of Physics 30 (11):1911-1941.
    In this work, a Clifford algebra approach is used to introduce a charge-current wave structure governed by a Maxwell-like set of equations. A known spinor representation of the electromagnetic field intensities is utilized to recast the equations governing the charge-current densities in a Dirac-like spinor form. Energy-momentum considerations lead to a generalization of the Maxwell electromagnetic symmetric energy-momentum tensor. The generalized tensor includes new terms that represent contributions from the charge-current densities. Stationary spherical modal solutions representing the charge-current densities and (...)
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  • Direct product and decomposition of certain physically important algebras.Robert W. Johnson - 1996 - Foundations of Physics 26 (2):197-222.
    I consider the direct product algebra formed from two isomorphic Clifford algebras. More specifically, for an element x in each of the two component algebras I consider elements in the direct product space with the form x ⊗ x. I show how this construction can be used to model the algebraic structure of particular vector spaces with metric, to describe the relationship between wavefunction and observable in examples from quantum mechanics, and to express the relationship between the electromagnetic field tensor (...)
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  • Inconsistencies in the interpretation of the conservation equations for spin-1/2 fields.Kenneth R. Greider - 1985 - Foundations of Physics 15 (6):693-700.
    A number of inconsistencies are pointed out in the conservation equations that describe the tensor bilinear densities for the conserved properties of spin-1/2 spinor fields. All the inconsistencies are related to the description of the spin density, and the origin of these difficulties is discussed.
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