Density (lbs. per cu. ft.) = (numerically) 62.4 × sp. gr.
=50. Methods for Finding Density and Specific Gravity=
=(a) Regular Solids.=--Solids of regular shapes such as cubes, spheres,
etc., whose volumes may be readily found by measurement, may be weighed.
The mass divided by the volume gives the density, or _D = Mμ/v_.
=(b) Irregular Solids.=--with these the volume cannot be found by
measurement but may be obtained by Archimedes' Principle. Weigh the
solid first in the air and then in water. The apparent loss of weight
equals the weight of the equal volume of water displaced. From this the
volume may be found. And then the
density equals mass/volume; the specific gravity =
wt. in air / wt. of equal volume of water = wt. in air / ((wt. in air) -
(wt. in water))
mass
density equals ------; the specific gravity =
volume
wt. in air wt. in air
---------------------------- = -----------------------------
wt. of equal volume of water ((wt. in air) - (wt. in water))
=(c) Solids Lighter than Water.=--This will require a sinker to hold the
body under water. Weigh the solid in air (_w_). Weigh the sinker in
water (_s_). Attach the sinker to the solid and weigh both in water
(w´). The specific gravity equals
(wt. of solid in air)/(loss in wt. of solid in water) or _w/((w +
s) - w´)_
wt. of solid in air _w_
--------------------------- or ------------
loss of wt. of solid in water (_w + s_) - _w´_
The apparent loss of weight of the solid is equal to the sum of its
weight in air plus the weight of the sinker in water, less the combined
weight of both in water.
=(d) The Density of a Liquid by a Hydrometer.=--One may also easily find
the density of any liquid by Archimedes' Principle. If one takes the rod
described in Art. 46, and places it in water, the number of cubic
centimeters of water it displaces indicates its weight in grams. On
placing the rod in another liquid in which it floats, it will of course
displace its own weight and the height to which the liquid rises on the
scale gives the volume. By dividing the _weight_ of the rod as shown by
its position in _water_ by the _volume_ of the _liquid_ displaced we
obtain the density of the liquid. Commercial hydrometers for testing the
density of milk, alcohol and other liquids are made of glass of the form
shown in Fig. 28. The long narrow stem permits small differences in
volume to be noticed, hence they are more accurate than the rod
described in the preceding paragraph. For convenience this rod contains
a paper scale, so that when the height of the liquid on the stem is
noted, the density is read at once.
[Illustration: FIG. 28.--A hydrometer used to find the density of a
liquid.]
=Density of Liquids by Loss of Weight.= Weigh a piece of glass in air
(_W_{a}_), in water (_W_{w}_), and in the liquid to be tested (_W_{l}_).
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