Popular Books on Natural Science: For Practical Use in Every Household, for Readers of All ClassesBernstein, Aaron David
Science
Popular Books on Natural Science: For Practical Use in Every Household, for Readers of All Classes
Bernstein, Aaron David
Science -- Popular works
"E" street, which lies at five times the distance from the light, will
be twenty-five times darker, for 5 x 5 = 25. "F" street, which is six
times the distance, we shall find thirty-six times darker; and, lastly,
"G" street, seven times the distance from the light, will be forty-nine
times darker than "A" street, because 7 x 7 = 49. The letters of a piece
of writing, in order to be legible there, must cover forty-nine times
the surface that our letters cover now.
But the reader will exclaim: "This evil can be remedied. We need but
place forty-nine lights on Trinity steeple; there will then be
sufficient light on "G" street for any newspaper to be read." Our friend
will easily perceive, however, that it is more judicious to distribute
forty-nine lights in different places on Broadway, than to put them all
on one spot.
This is sufficient to convince any one that we may be able to illuminate
large public places with _one_ light, but not the streets of a city, and
still less whole cities.
CHAPTER II.
ILLUMINATION OF THE PLANETS BY THE SUN.
It was demonstrated above, that it is impossible to illuminate large
distances by a single light. Yet we must acknowledge that nature herself
does this, and that the sun is the only light which shines throughout
the solar system; for the light which is seen in the planets is but
light received and reflected from the sun.
This is sufficient reason for us to believe, that there are not on every
planet creatures as we see them on our earth; but that, on the contrary,
each celestial body may be inhabited by creatures organized according to
the distance of the planet from the sun; that is, adapted to the degree
of light produced there by the sun.
For the natural sciences teach us, that solar light is subject to the
same laws as our artificial light: it decreases as the distance
increases. The planets more remote from the sun are illuminated less
than those nearer to it. The ratio in which this light decreases, is
precisely the same as that of the terrestrial light illustrated above,
viz., according to the square of the distance. In other words, when the
distance is double, the intensity of the light is one-fourth as great;
when three times, one-ninth as great; when four times more remote,
one-sixteenth as strong, etc.; in short, at every distance as much
weaker as the distance multiplied by itself.
Presently we shall see that the planets are illuminated in inverse
proportion to their distance from the sun. From this alone we come to
the conclusion, that on every planet the living beings must necessarily
be differently constituted.
Public-domain text, read in full here on John Shaqi.
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