The Story of the HeavensBall, Robert S. (Robert Stawell)
History
The Story of the Heavens
Ball, Robert S. (Robert Stawell)
Astronomy
If, however, we change the _length_ of the wire by which the weight is
supported, then the period will not remain unchanged. This can be very
easily illustrated. Take a short pendulum with a wire only one-fourth of
the length of that of the long one; suspend the two close together, and
compare the periods of vibration of the short pendulum with that of the
long one, and we find that the former has a period only half that of the
latter. We may state the result generally, and say that the time of
vibration of a pendulum is proportional to the square root of its
length. If we quadruple the length of the suspending cord we double the
time of its vibration; if we increase the length of the pendulum
ninefold, we increase its period of vibration threefold.
It is the gravitation of the earth which makes the pendulum swing. The
greater the attraction, the more rapidly will the pendulum oscillate.
This may be easily accounted for. If the earth pulls the weight down
very vigorously, the time will be short; if the power of the earth's
attraction be lessened, then it cannot pull the weight down so quickly,
and the period will be lengthened.
The time of vibration of the pendulum can be determined with great
accuracy. Let it swing for 10,000 oscillations, and measure the time
that these oscillations have consumed. The arc through which the
pendulum swings may not have remained quite constant, but this does not
appreciably affect the _time_ of its oscillation. Suppose that an error
of a second is made in the determination of the time of 10,000
oscillations; this will only entail an error of the ten-thousandth part
of the second in the time of a single oscillation, and will afford a
correspondingly accurate determination of the force of gravity at the
place where the experiment was made.
Take a pendulum to the equator. Let it perform 10,000 oscillations, and
determine carefully the _time_ that these oscillations have required.
Bring the same pendulum to another part of the earth, and repeat the
experiment. We have thus a means of comparing the gravitation at the two
places. There are, no doubt, a multitude of precautions to be observed
which need not here concern us. It is not necessary to enter into
details as to the manner in which the motion of the pendulum is to be
sustained, nor as to the effect of changes of temperature in the
alteration of its length. It will suffice for us to see how the time of
the pendulum's swing can be measured accurately, and how from that
measurement the intensity of gravitation can be calculated.
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