A study of the extent of daily variations is also of interest. As a
general thing they are less extreme in localities when the seasonal
variations are also less. In Cairo, however, which has a seasonal
variation greater than San Francisco, the daily variations during
the hatching season are much less than in California. This is due to
a constant wind from sea to land, and an absolute absence of
rainfall, conditions for which Egypt is noted.
Nearness to a coast does not mean uniform vapor pressure, for with
wind alternating from sea to land, it means just the opposite.
As will be readily seen the months in spring which give the best
hatches, occupy a medium place in the humidity scale. The fact that
both hens and machines succeed best in this period, is to me very
suggestive of the possibility that with an incubator absolutely
controlling evaporation, much of the seasonal variation in the
hatchability would disappear.
The uniform humidity of the California coast is shown in the above
table. This is not inconsistent with the excellent results obtained
at Petaluma.
The Egyptian hatcher in his long experience has learned just about
how much airholes and smudge fire are necessary to get results. With
these kept constant and the atmosphere constant, we have more nearly
perfect conditions of incubation than are to be found anywhere else
in the world, and I do not except the natural methods. The climatic
conditions of Egypt cannot be equaled in any other climate, but as
will be shown in the last section of this chapter, their effect can
be duplicated readily enough by modern science and engineering.
Mr. Edward Brown, who was sent over here by the English Government
to investigate our poultry industry, was greatly surprised at our
poor results in artificial incubation. Compared with our
acknowledged records of less than 50 per cent. hatches, he quotes
the results obtained in hatching 18,000 eggs at an English
experiment station as 62 per cent. I have not obtained any data of
English humidity, but it is undoubtedly more uniform than the
eastern United States.
Ventilation--Carbon Dioxide.
The last of the four life requisites we have to consider is that of
oxygen. The chick in the shell, like a fish, breathes oxygen which
is dissolved in a liquid. A special breathing organ is developed for
the chick during its embryonic stages and floats in the white and
absorbs the oxygen and gives off carbon dioxide. The amount of this
breathing that occurs in the chick is at first insignificant, but
increases with development. At no time, however, is it anywhere
equal to that of the hatched chicks, for the physiological function
to be maintained by the unhatched chicks requires little energy and
little oxidation.
Public-domain text, read in full here on John Shaqi.
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