themselves can do, and hence greens and yellows are called yellow by
such colour-blind persons, though their perception of yellow is really
the same as perception of green by normal eyes. Later on, by a
combination of adjustable slits, prisms, and lenses arranged in a
"colour-box," Maxwell succeeded in mixing, in any desired proportions,
the light from any three portions of the spectrum, so that he could
deal with pure spectral colours instead of the complex combinations of
differently coloured lights afforded by coloured papers. From these
experiments it appears that no ray of the solar spectrum can affect
one colour-sensation alone, so that there are no colours in nature so
pure as to correspond to the pure simple sensations, and the colours
occupying the angular points of Maxwell's diagram affect all three
colour-sensations, though they influence two of them to a much smaller
extent than the third. A particular colour in the spectrum corresponds
to light which, according to the undulatory theory, physically
consists of waves all of the same period, but it may affect all three
of the colour-sensations of a normal eye, though in different
proportions. Thus, yellow light of a given wave-length affects the red
and green sensations considerably and the blue (or violet) slightly,
and the same effect may be produced by various mixtures of red or
orange and green. For his researches on the perception of colour, the
Royal Society awarded to Clerk Maxwell the Rumford Medal in 1860.
Another optical contrivance of Maxwell's was a wheel of life, in which
the usual slits were replaced by concave lenses of such focal length
that the picture on the opposite side of the cylinder appeared, when
seen through a lens, at the centre, and thus remained apparently
fixed in position while the cylinder revolved. The same result has
since been secured by a different contrivance in the praxinoscope.
Another ingenious optical apparatus was a real-image stereoscope, in
which two lenses were placed side by side at a distance apart equal to
half the distance between the pictures on the stereoscopic slide.
These lenses were placed in front of the pictures at a distance equal
to twice their focal length. The real images of the two pictures were
then superposed in front of the lenses at the same distance from them
as the pictures, and these combined images were looked at through a
large convex lens.
The great difference in the sensibility to different colours of the
eyes of dark and fair persons when the light fell upon the _fovea
centralis_, led Maxwell to the discovery of the extreme want of
sensibility of this portion of the retina to blue light. This he made
manifest by looking through a bottle containing solution of chrome
alum, when the central portion of the field of view appears of a light
red colour for the first second or two.
Public-domain text, read in full here on John Shaqi.
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