Another idea is that there can be no such condition as absolute zero of
temperature of what we are accustomed to think of as a gas, as far as
science is concerned; as on arriving at that condition, perhaps long
before, any gas would slip out of its hands altogether. But there is a
much more rational reason than this, which we have brought forward on
a former occasion. We are taught that heat is a mode of motion, which
means that as long as there is heat there will be motion to account for
it, so that motion would have to be annihilated on the earth before
absolute zero of temperature could be reached. We have, then, to come
back to what we said when treating of the heat of space, and look upon
the temperature of the vibration of the ether as being the lowest that
can be measured by science. We said then that it must be far below
-225°. Since then a temperature has been reached of within 23° or 24°
of absolute zero, according as that condition is measured by 273 or 274.
This, of course, leads us to think of the ether as a carrier of light,
heat, etc., and of how it can carry heat to the earth without becoming
heated itself, as there can be no doubt about its being a material
substance. How it can bring what may be called considerable heat to
the earth and still have little or no heat in itself; even should it
turn out, which we do not believe possible, that the estimates of the
heat of space of -150° and -142°, made about the beginning of this
century by Sir John Herschel and Pouillet, turn out to be near the
truth. We have seen, in "Nature" of July 15, 1886, a monograph by
Captain Ericsson, in which he shows that the heat radiated by the sun
to where his rays strike our atmosphere is somewhere about 83°F., and
it is not easy to see how radiated heat can be transmitted through 90
million miles of space at a temperature of much lower than -225°, and
reach the confines of our atmosphere with the heat of 83°F. There is
one supposition that occurs to us under which this can happen, and that
is, that the sun only radiates heat to bodies which can receive it,
and does not radiate it into all space where there is nothing but the
ether to hold it. This, of course, implies that the ether acts the same
part--the part for which it was really invented--with respect to heat
that a telegraph wire does with respect to electricity; in which case,
we could imagine that it starts from the sun with the maximum heat
radiated by him, and that this goes on decreasing in the ratio of the
square of the distance it travels through, the same as is understood
to be the case with all radiated heat; and that the part of space not
occupied, for the time necessary, by these connexions might be supposed
to form the return current which we believe must exist, just the same
as the earth does for electricity. For that there is a return current
is demonstrated by the fact that the earth radiates heat into space
when the sun is not shining upon it. Again, even in this case, we
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