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wave radiation from green included. The other dye-stuff is also
transparent to green but shall absorb radiation from longer wave-
lengths as orange and red radiation. Unfortunately it is common
that these dye-stuffs transmit a more or less narrow wavelength
range in the upper red range. This is the case with this filter.
We see that the absorption in red reaches a maximum at about 6500
À and then decreases again towards infrared. This transparence in
the farthermost part of red is, however, not seen oculariy owing
to the very small sensitivity of the human eye for the longer
wavelenghts in red. But as the sensitivity curve of the film is
extremely high within this range, which is seen from fig. 3, whe-
re the ordinate values are given logarithmically, we have here a
very Serious Source of error, especially as also the leaves and
needles have a very high remission power at these wavelengths,
It may once more be emphasized that it is impossible to decide
by ocular inspection whether a green filter to be had in the mar-
ket transmits light containing red or not. It is necessary to
control this with a spectrophotometer, especially at the red end
of the visible spectrum.
According to First Cartographer E.Welander the above mente
ioned green filter (fig. 4) notwithstanding gave somewhat better
results at photography for forestry purposes than the earlier
used orange one. A still better differentiating of the tree spe-
cies was obtained if according to my directions, an orthochromat-
ic film material and a strong yellow filter were used at aerial
Photography. The sensitivity range for the Orthofilm is seen
from fig. 5. It extends from 4000 Á to about 5800 A. Then only
one filter-dye is needed, which is opaque to blue light but trans-
nits all the light above 7200 A. The yellow filter worked out by
us (fig. 6) is based on the dye-stuff tartrazine, in gelatin,
Cast with 10 grammes per Square meter on each filter gless which
NT STE AN us
Buh iid ww Lo > o PM A p ie Rio i lor.