A Manual of Photographic Chemistry, Including the Practice of the Collodion ProcessHardwich, T. Frederick
Science
A Manual of Photographic Chemistry, Including the Practice of the Collodion Process
Hardwich, T. Frederick
Photographic chemistry; Photography
This fact may be demonstrated by throwing a pencil of Sunlight upon one
angle of a _prism_, and receiving the oblong image, so formed, upon a
white screen.
The space illuminated and coloured by a pencil of rays analyzed in this
way is called "the Solar Spectrum." The action of a prism in decomposing
white light will be more fully explained in the next Section. At present
we notice only that seven principal colours may be distinguished in the
Solar Spectrum, viz. red, orange, yellow, green, blue, indigo, and violet.
Sir David Brewster has made observations which lead him to suppose that
the _primary_ colours are in reality but three in number, viz. red,
yellow, and blue, and that the others are _compound_, being produced by
two or more of these overlapping each other; thus the red and yellow
spaces intermingled constitute _orange_; the yellow and blue spaces,
_green_.
[Illustration]
The composition of white light from the seven prismatic colours may be
roughly proved by painting them on the face of a wheel, and causing it to
rotate rapidly; this blends them together, and a sort of greyish-white
is the result. The white is imperfect, because the colours employed
cannot possibly be obtained of the proper tints or laid on in the exact
proportions.
The decomposition of light is effected in other ways besides that already
given:---
First, by _reflection_ form the surfaces of coloured bodies. All
substances throw off rays of light, which impinge upon the retina of the
eye and produce the phenomena of vision. Colour is caused by a _portion
only_, and not the whole, of the elementary rays, being projected in this
way. Surfaces termed _white_ reflect all the rays; coloured surfaces
absorb some and reflect others: thus _red_ substances reflect only red
rays, _yellow_ substances, yellow rays, etc, the ray which is reflected in
all cases deciding the colour of the substance.
Secondly, light may be decomposed by _transmission_ through media which
are transparent to certain rays, but opaque to others.
Ordinary transparent glass allows all the rays constituting white light
to pass; but by the addition of certain metallic oxides to it whilst in a
state of fusion, its properties are modified, and it becomes _coloured_.
Glass stained by Oxide of Cobalt is permeable only to blue rays. Oxide of
Silver imparts a pure yellow tint; Oxide of Gold or Suboxide of Copper a
ruby red, etc.
DIVISION OF THE ELEMENTARY RAYS OF WHITE LIGHT INTO LUMINOUS,
HEAT-PRODUCING, AND CHEMICAL. RAYS.
The agency of Light produces a variety of distinct effects upon the bodies
which surround us. These may be classed together as the properties of
light. They are of three kinds--the phenomena of colour and vision, of
heat, and of chemical action.
By resolving white light into its constituent rays, we find that these
properties are associated each one with certain of the elementary colours.
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