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
Ever since the great discovery of the immortal Newton, it has been known
that all celestial bodies attract one another, and that this attraction
is the greater, the greater the attracting body is. Not only such
celestial bodies as the sun, the earth, the moon, the planets, and the
fixed stars, but _all_ bodies have this power of attraction; and it
increases in direct proportion to the increase of the mass of the body.
In order to make this clear, let us illustrate it by an example. A pound
of iron attracts a small body near by; two pounds of iron attract it
precisely twice as much; in other words, the greater the weight of an
object, the greater the power of attraction it exercises on the objects
near by. Hence, if we know the attractive power of a body, we also know
its weight. Nay, we would be able to do without scales of any kind in
the world, if we were only able to measure accurately the attractive
power of every object. This, however, is not possible; for the earth is
so large a mass, and has consequently so great an attractive power, that
it draws down to itself all objects which we may wish other bodies to
attract. If, therefore, we wish to place a small ball in the
neighborhood of ever so large an iron-ball, for the purpose of having
the little one attracted by the large one, this little ball will, as
soon as we let it go, fall to the earth, because the attractive power of
the earth is many, very many times greater than that of the largest
iron-ball; so much greater is it, that the attraction of the iron-ball
is not even perceptible.
Physical science, however, has taught us to measure the earth's
attractive power very accurately, and this by a very simple instrument,
viz., a pendulum, such as is used in a clock standing against the wall.
If a pendulum in a state of rest--in which it is nearest to the
earth--is disturbed, it hastens back to this resting-point with a
certain velocity. But because it is started and cannot stop without the
application of force, it recedes from the earth on the other side. The
earth's attraction in the meanwhile draws it back, making it go the same
way over again. Thus it moves to and fro with a velocity which would
increase, if the earth's mass were to increase; and decrease, if the
earth's mass were to decrease. Since the velocity of a pendulum may be
measured very accurately by counting the number of vibrations it makes
in a day, we are able also to calculate accurately the attractive power
of the earth.
A few moments' consideration will make it clear to everybody, that the
precise weight of the earth can be known so soon as an apparatus is
contrived, by means of which a pendulum may be attracted by a certain
known mass, and thus be made to move to and fro. Let us suppose this
mass to be a ball of a hundred pounds, and placed near a pendulum. Then
as many times as this ball weighs less than the earth, so many times
more slowly will a pendulum be moved by the ball.
Public-domain text, read in full here on John Shaqi.
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