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V - THE REFLECTION OF RAINBOWS IN WATER (1861)

Published online by Cambridge University Press:  05 February 2015

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Summary

Sir,—I do not think there is much difficulty in the rainbow business. We cannot see the reflection of the same rainbow which we behold in the sky, but we see the reflection of another invisible one within it. Suppose A and B, Fig. 1, are two falling raindrops, and the spectator is at s, and x Y is the water surface. If R A S be a sun ray giving, we will say, the red ray in the visible rainbow, the ray, B C S, will give the same red ray, reflected from the water at c.

It is rather a long business to examine the lateral angles, and I have not time to do it; but I presume the result would be that if a m b, Fig. 2, be the visible rainbow, and x Y the water horizon, the reflection will be the dotted line c e d, reflecting, that is to say, the invisible bow, end; thus, the terminations of the arcs of the visible and reflected bows do not coincide.

The interval, m n, depends on the position of the spectator with respect to the water surface. The thing can hardly ever be seen in nature, for if there be rain enough to carry the bow to the water surface, that surface will be ruffled by the drops, and incapable of reflection.

Whenever I have seen a rainbow over water (sea, mostly), it has stood on it reflectionless; but interrupted conditions of rain might be imagined which would present reflection on near surfaces.

Always very truly yours,

J. RUSKIN.

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Publisher: Cambridge University Press
Print publication year: 2010
First published in: 1904

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