Now what is true of water is true of all other bodies or material
substances. Suppose that one of the measures is emptied and replaced,
the beam may be brought to the horizontal position again by means of a
piece of lead cut to exactly the right size. The piece of lead will
thenceforth furnish an exactly corresponding or equivalent weight for so
much water; and pieces of iron or brass, which counterpoise the lead,
will also be equivalents of the weight of the water, or of the lead, or
of one another. But the pieces of lead, iron, or brass will obviously be
of much less volume or bulk than the water which they counterpoise. Here
it follows that the densities of these metals, or the quantity of matter
contained in the same volume, must be much greater than in the case of
water.
What are called =weights= in commerce are pieces of lead, or iron, or
brass exactly equivalent in weight to a certain bulk of water under
certain conditions. =An imperial gallon of water thus weighs ten pounds,
and therefore an imperial pint weighs a pound and a quarter.=
23. =Equal Volumes of Different Things under the same circumstances,
have Different Weights: the Density of Different Bodies is Different.=
The important fact which has just been alluded to must be considered
more fully. We have seen that an imperial pint measure gives us the
space which is taken up by as much water as weighs a pound and a
quarter; and this space is the bulk or =volume= of that weight of water.
But if you take an ordinary pound weight and a quarter-pound weight, and
put them into an imperial pint measure, you will find that instead of
filling it, they take up only a very small portion of the space in its
interior, or in other words, of its capacity. Thus the volume of a pound
and a quarter of lead, or of iron, or of brass, is very much less than
the volume of the same weight of water; that is to say, the metals are
=denser= than water; the same volume has greater mass or more gravity.
Or, to put the case in another way, fill the tumbler with which we began
half full of water, making a mark on the side exactly at the level of
the top of the water. Then place it in one scale of a balance, and
counterpoise it with weights in the other. Next, pour out the water, and
after drying the tumbler, fill it with fine sand carefully up to the
mark. The volume of sand will be equal to the volume of water. But now
the same weights will no longer counterpoise it, and you will have to
put more weights in the opposite scale. Volume for volume, therefore,
sand is heavier than water. Throw out the sand, and put in sawdust in
the same way, and you will find that a less weight than was necessary to
counterpoise the water counterpoises the sawdust. Volume for volume,
therefore, sawdust is lighter than water. Experiment in the same way
with spirit and oil, and they will be found to be lighter than water,
while treacle will be heavier, and quicksilver very much heavier than
water.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account