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Propagation of Electromagnetic Waves

1958
The propagation of electromagnetic waves has a vectorial character, its basic equations being the vectorial differential equations of Maxwell. In Gaussian units the latter read: $${\begin{array}{*{20}{c}} {{\text{curl }}E + \frac{1}{c}\frac{{\partial B}}{{\partial t}} = 0;{\text{ curl }}H - \frac{1}{c}\frac{{\partial D}}{{\partial t}} = \frac{{4\pi
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Propagation of electromagnetic waves in a rectangular tunnel

Applied Mathematics and Computation, 2003
A study of radio communication in the underground metero tunnel of the city of Cairo, Egypt was carried out. A part of this tunnel was selected, which has a rectangular shape. Its dimensions are 8.85 m wide, 5.9 m height and 4.5 km long. The walls are made of concrete which have conductivity between 10^-^1 and 10^-^2mho/m.
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Propagation of Electromagnetic Waves

1991
The propagation of electromagnetic waves in three dimensional dielectric wave guides is described by the Maxwell system of equations $$ \nabla \times \bar{E} = - {{\mu }_{0}}\left( z \right)\frac{{\partial \bar{H}}}{{\partial t}}, $$ (1.1) , $$\nabla \times \bar H = - { \in _0}\left( z \right)\frac{{\partial \bar E}}{{\partial t}},$$ (1 ...
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Theory of electromagnetic wave propagation in ferromagnetic Rashba conductor

Journal of Applied Physics, 2018
Akihito Takeuchi   +2 more
exaly  

Problem of nonlinear coupled electromagnetic TE-TE wave propagation

Journal of Mathematical Physics, 2013
Yu G Smirnov, D V Valovik
exaly  

Propagation of electromagnetic wave in dusty plasma and the influence of dust size distribution

Physics of Plasmas, 2016
Zhongxiang Zhou   +2 more
exaly  

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