Results 211 to 220 of about 198,703 (275)
Quadratic mixed convection of Maxwell-Buongiorno nanofluid over cubic stratified surface incorporating cross diffusion effects and solar radiation. [PDF]
Khan A +8 more
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Development of novel symbolic regression models for prediction of nano filters efficiency using CFD and DPM. [PDF]
Taghavi A, Farahani SD.
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MxDiffusion: A Physics-Aware Maxwell's Law-Guided Diffusion Model Strategy for Inverse Photonic Metasurface Design. [PDF]
Mondal S +4 more
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Plasma-induced flow of de-mineralised water is governed by the aqueous grounding configuration. [PDF]
Ryan CT +4 more
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Fast Numerical Solvers for Parameter Identification Problems in Mathematical Biology. [PDF]
Benková K, Pearson JW, Ptashnyk M.
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Nonlinear kinematic impacts on nanofluid flow across rough surface with numerical simulation. [PDF]
Khan A +8 more
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2014
This chapter is devoted to the review of Maxwell’s equations in differential and integral forms as well as the electromagnetic boundary conditions. We will also discuss the electromagnetic potentials and wave equations. The solution to inhomogeneous wave equation using field representations by the Green’s function will be presented.
Kasra Barkeshli, Sina Khorasani
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This chapter is devoted to the review of Maxwell’s equations in differential and integral forms as well as the electromagnetic boundary conditions. We will also discuss the electromagnetic potentials and wave equations. The solution to inhomogeneous wave equation using field representations by the Green’s function will be presented.
Kasra Barkeshli, Sina Khorasani
+4 more sources
2021
Since Maxwell established a foundation of the modern electromagnetic theory in 1873 [1], electromagnetics has undergone a rapid development and has been one of the most important research areas in engineering and science. It demands the study of Maxwell’s equations and their application to the analysis and design of devices and systems.
Gang Bao, Peijun Li
openaire +1 more source
Since Maxwell established a foundation of the modern electromagnetic theory in 1873 [1], electromagnetics has undergone a rapid development and has been one of the most important research areas in engineering and science. It demands the study of Maxwell’s equations and their application to the analysis and design of devices and systems.
Gang Bao, Peijun Li
openaire +1 more source
1983
We have analyzed, up to this point, the origin and the consequences of four physical laws associated with static electromagnetic phenomena. The first of them, Gauss’s law, relates the electric field to its sources. In differential form it is written as $$\nabla \cdot E = 4\pi \rho .$$ (7.1) Within the area of application of electromagnetism ...
Allan W. Snyder, John D. Love
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We have analyzed, up to this point, the origin and the consequences of four physical laws associated with static electromagnetic phenomena. The first of them, Gauss’s law, relates the electric field to its sources. In differential form it is written as $$\nabla \cdot E = 4\pi \rho .$$ (7.1) Within the area of application of electromagnetism ...
Allan W. Snyder, John D. Love
openaire +1 more source
1971
The preceding sections have introduced all the basic concepts needed for the treatment of electromagnetic fields. The various ideas, developed more or less independently above, together form the basis for further development. It will not be out of place, therefore, to summarize the most important equations below.
openaire +2 more sources
The preceding sections have introduced all the basic concepts needed for the treatment of electromagnetic fields. The various ideas, developed more or less independently above, together form the basis for further development. It will not be out of place, therefore, to summarize the most important equations below.
openaire +2 more sources

