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Electromagnetic Fields and Waves in Fractional Dimensional Space [electronic resource] /by Muhammad Zubair, Muhammad Junaid Mughal, Qaisar Abbas Naqvi.

by Zubair, Muhammad [author.]; Mughal, Muhammad Junaid [author.]; Naqvi, Qaisar Abbas [author.]; SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: SpringerBriefs in Applied Sciences and Technology: Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2012.Description: XVIII, 70p. 14 illus. online resource.ISBN: 9783642253584.Subject(s): Engineering | Mathematical physics | Microwaves | Engineering | Microwaves, RF and Optical Engineering | Optics and Electrodynamics | Mathematical Methods in PhysicsDDC classification: 621.3 Online resources: Click here to access online
Contents:
Differential Electromagnetic Equations in Fractional Space -- Potentials for Static and Time-Varying Fields in Fractional Space -- Electromagnetic Wave Propagation in Fractional Space -- Electromagnetic Radiations from Sources in Fractional Space.
In: Springer eBooksSummary: This book presents the concept of fractional dimensional space applied to the use of electromagnetic fields and waves.  It demonstrates the advantages in studying  the behavior of electromagnetic fields and waves in fractal media. The book presents novel fractional space generalization of the differential electromagnetic equations as well as a new form of vector differential operators in fractional space. Using these modified vector differential operators, the classical Maxwell's electromagnetic equations are worked out. The Laplace's, Poisson's and Helmholtz's equations in fractional space are derived by using modified vector differential operators.
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Differential Electromagnetic Equations in Fractional Space -- Potentials for Static and Time-Varying Fields in Fractional Space -- Electromagnetic Wave Propagation in Fractional Space -- Electromagnetic Radiations from Sources in Fractional Space.

This book presents the concept of fractional dimensional space applied to the use of electromagnetic fields and waves.  It demonstrates the advantages in studying  the behavior of electromagnetic fields and waves in fractal media. The book presents novel fractional space generalization of the differential electromagnetic equations as well as a new form of vector differential operators in fractional space. Using these modified vector differential operators, the classical Maxwell's electromagnetic equations are worked out. The Laplace's, Poisson's and Helmholtz's equations in fractional space are derived by using modified vector differential operators.

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