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Refraction   Listen
noun
Refraction  n.  
1.
The act of refracting, or the state of being refracted.
2.
The change in the direction of ray of light, heat, or the like, when it enters obliquely a medium of a different density from that through which it has previously moved. "Refraction out of the rarer medium into the denser, is made towards the perpendicular."
3.
(Astron.)
(a)
The change in the direction of a ray of light, and, consequently, in the apparent position of a heavenly body from which it emanates, arising from its passage through the earth's atmosphere; hence distinguished as atmospheric refraction, or astronomical refraction.
(b)
The correction which is to be deducted from the apparent altitude of a heavenly body on account of atmospheric refraction, in order to obtain the true altitude.
Angle of refraction (Opt.), the angle which a refracted ray makes with the perpendicular to the surface separating the two media traversed by the ray.
Conical refraction (Opt.), the refraction of a ray of light into an infinite number of rays, forming a hollow cone. This occurs when a ray of light is passed through crystals of some substances, under certain circumstances. Conical refraction is of two kinds; external conical refraction, in which the ray issues from the crystal in the form of a cone, the vertex of which is at the point of emergence; and internal conical refraction, in which the ray is changed into the form of a cone on entering the crystal, from which it issues in the form of a hollow cylinder. This singular phenomenon was first discovered by Sir W. R. Hamilton by mathematical reasoning alone, unaided by experiment.
Differential refraction (Astron.), the change of the apparent place of one object relative to a second object near it, due to refraction; also, the correction required to be made to the observed relative places of the two bodies.
Double refraction (Opt.), the refraction of light in two directions, which produces two distinct images. The power of double refraction is possessed by all crystals except those of the isometric system. A uniaxial crystal is said to be optically positive (like quartz), or optically negative (like calcite), or to have positive, or negative, double refraction, according as the optic axis is the axis of least or greatest elasticity for light; a biaxial crystal is similarly designated when the same relation holds for the acute bisectrix.
Index of refraction. See under Index.
Refraction circle (Opt.), an instrument provided with a graduated circle for the measurement of refraction.
Refraction of latitude, Refraction of longitude, Refraction of declination, Refraction of right ascension, etc., the change in the apparent latitude, longitude, etc., of a heavenly body, due to the effect of atmospheric refraction.
Terrestrial refraction, the change in the apparent altitude of a distant point on or near the earth's surface, as the top of a mountain, arising from the passage of light from it to the eye through atmospheric strata of varying density.






Collaborative International Dictionary of English 0.48








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"Refraction" Quotes from Famous Books



... which she now abandoned herself utterly, plunging gaily into the deepest waters of the basin. From side to side of its narrow depths she sped rapidly, the blue-white of the spring water showing her lithe limbs in perfect grace of motion made mystically indefinite and shimmering by refraction through the little rippling waves her progress raised. She raced and strained, from the pure love of effort, as if a stake of magnitude depended on ...
— In Old Kentucky • Edward Marshall and Charles T. Dazey

... intimate acquaintance with the very matters defined. It would be tedious to enumerate the countless absurd explanations given in elementary text-books of the phenomena of interference, polarization, and double refraction,—explanations as enigmatical as the inscriptions at Memphis and Karnak,—explanations useless to the optician because needless, and to the student because obscure. It would seem that subjects so simple and beautiful as these could not be ...
— Atlantic Monthly,Volume 14, No. 82, August, 1864 - A Magazine Of Literature, Art, And Politics • Various

... encircled by a beautiful halo, but also by those lovely lights of the Arctic regions known as parhelia, or mock-suns. Four of these made no mean display in emulation of their great original. On the horizon, refraction caused the ice-floes and bergs to present endless variety of fantastic forms, and in the immediate foreground—at the giant's feet— tremendous precipices of ice went sheer down into the deep water, while, away to the right, where a bay still retained its winter grasp of an ice-field, could ...
— The Giant of the North - Pokings Round the Pole • R.M. Ballantyne

... remark that as another result of the thinness of the Martian atmosphere twilight is much shorter than on the earth, the light being less diffused when the sun is below the horizon, and refraction also considerably less ...
— To Mars via The Moon - An Astronomical Story • Mark Wicks

... Ratty, my love, you must study. I will give you the renowned Kirwan's book. Charlotte tore some of it for curl papers; but there's enough left to enlighten you with the sun's rays, and reflection and refraction—" ...
— Handy Andy, Vol. 2 - A Tale of Irish Life • Samuel Lover


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