Goethe's Theory of ColoursGoethe, Johann Wolfgang von
Philosophy
Goethe's Theory of Colours
Goethe, Johann Wolfgang von
Color
Again, it may be inferred that a de-oxydation may produce black. This
occurs in the preparation of ink, which becomes yellow by the solution
of iron in strong sulphuric acid, but when partly de-oxydised by the
infusion of gall-nuts, appears black.
XXXVII.
FIRST EXCITATION OF COLOUR.
501.
In the division of physical colours, where semi-transparent mediums
were considered, we saw colours antecedently to white and black. In the
present case we assume a white and black already produced and fixed;
and the question is, how colour can be excited in them?
502.
Here, too, we can say, white that becomes darkened or dimmed inclines
to yellow; black, as it becomes lighter, inclines to blue.--Note U.
503.
Yellow appears on the active (plus) side, immediately in the light, the
bright, the white. All white surfaces easily assume a yellow tinge;
paper, linen, wool, silk, wax: transparent fluids again, which have
a tendency to combustion, easily become yellow; in other words they
easily pass into a very slight state of semi-transparence.
504.
So again the excitement on the passive side, the tendency to obscure,
dark, black, is immediately accompanied with blue, or rather with a
reddish-blue. Iron dissolved in sulphuric acid, and much diluted with
water, if held to the light in a glass, exhibits a beautiful violet
colour as soon as a few drops only of the infusion of gall-nuts are
added. This colour presents the peculiar hues of the dark topaz, the
_orphninon_ of a burnt-red, as the ancients expressed it.
505.
Whether any colour can be excited in the pure earths by the chemical
operations of nature and art, without the admixture of metallic oxydes,
is an important question, generally, indeed, answered in the negative.
It is perhaps connected with the question--to what extent changes may
be produced in the earths through oxydation?
506.
Undoubtedly the negation of the above question is confirmed by the
circumstance that wherever mineral colours are found, some trace of
metal, especially of iron, shows itself; we are thus naturally led
to consider how easily iron becomes oxydised, how easily the oxyde
of iron assumes different colours, how infinitely divisible it is,
and how quickly it communicates its colour. It were to be wished,
notwithstanding, that new experiments could be made in regard to the
above point, so as either to confirm or remove any doubt.
507.
However this may be, the susceptibility of the earths with regard
to colours already existing is very great; aluminous earth is thus
particularly distinguished.
508.
In proceeding to consider the metals, which in the inorganic world
have the almost exclusive prerogative of appearing coloured, we find
that, in their pure, independent, natural state, they are already
distinguished from the pure earths by a tendency to some one colour or
other.
509.
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