The _speed_ of a plate on the H & D scale is given by the intersection
of the straight line portion of the characteristic curve when produced,
with the exposure axis. This intersection point, called the _inertia_,
is the same irrespective of the time of development, as is shown in Fig.
103. The numerical value of the speed is obtained by dividing 34 by the
inertia, when the exposure is plotted in candle-meter-seconds.
If a plate is developed until no more density and contrast can be
obtained, its development factor is then γ_{∞}, (gamma infinity), and
the larger this is the more a plate can be forced in development. If the
plate fogs in its unexposed portions this fog is measured and recorded
in density units along with the other constants. The speed of
development is represented by the _velocity constant_, commonly
symbolized by κ.
[Illustration:
FIG. 103.—Typical characteristic curves of photographic plate.]
The length of the straight line portion determines the _latitude_ of the
plate, or the range of permissible exposures to secure a “perfect
negative.” Thus if we assume that an object has a range of brightness of
1 to 30, then a plate with a straight line characteristic extending over
a range of 1 to 120 would have a latitude of 120/30 or 4. That is, the
exposure could be as much as four times the necessary one, and still
give the same result on a sufficiently exposed print. If the latitude of
the plate is too small, the shadows will fall in the under exposure
region, the high-lights in the over exposure portion of the
characteristic curve, with consequent poor rendering of contrasts.
=Criteria of Speed.=—In airplane photography _speed_ is of paramount
importance, but great care must be exercised to insure that all the
factors are considered which can contribute toward yielding the
desirable pictorial quality in the brief exposure which alone is
possible from the moving plane. A “fast” plate on the H & D scale is not
necessarily suitable for aerial work, when we remember that accentuation
of natural contrast is desirable, particularly under hazy conditions.
For, as is shown in Fig. 104, it is a common characteristic of “fast”
plates to have comparatively small latitude and low contrast at their
maximum development.
It is to be noted that the Hurter and Driffield measure of speed is
bound up with the idea of correct tone rendering and with the use of the
straight line portion of the characteristic curve. Other criteria of
speed exist. For instance, the exposure necessary to produce a just
noticeable action (threshold value); and the exposure necessary to give
a chosen useful density in the high-lights when development is pushed to
the limit set by the growth of fog.
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