2014Unpublished venueRequires access

150 Years of Maxwell's equations: A reflection

Weng Cho Chew

Open publisher page 3 citations

Abstract

Electromagnetics and optics knowledge yielded technologies in the early 1800s in terms of electric machinery, telegraphy, and optics. In 1864, James Clerk Maxwell completed the electromagnetic equations, now called Maxwell's equations. They helped bridge the gap between optics and electromagnetics. Since then, Maxwell's equations have undoubtedly profound impact on many modern science and technologies.

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What this paper is about

Electromagnetics and optics knowledge yielded technologies in the early 1800s in terms of electric machinery, telegraphy, and optics. In 1864, James Clerk Maxwell completed the electromagnetic equations, now called Maxwell's equations. They helped bridge the gap between optics and electromagnetics. Since then, Maxwell's equations have undoubtedly profound impact on many modern science and technologies.

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Available abstract

Electromagnetics and optics knowledge yielded technologies in the early 1800s in terms of electric machinery, telegraphy, and optics. In 1864, James Clerk Maxwell completed the electromagnetic equations, now called Maxwell's equations. They helped bridge the gap between optics and electromagnetics. Since then, Maxwell's equations have undoubtedly profound impact on many modern science and technologies.

Key concepts: Maxwell's equations, Electromagnetics, Electromagnetic field solver, Scattering-matrix method, Computational electromagnetics, Inhomogeneous electromagnetic wave equation, Reflection (computer programming), Physical optics

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