=35. Pressure of Liquids against Surfaces.=--The sight of a great ship,
perhaps built of iron and floating on water, causes one to wonder at the
force that supports it. This same force is noticed when one pushes a
light body, as a cork, under water. It is quite evident in such a case
that a force exists sufficient to overcome the weight of the cork so
that it tends to rise to the surface. Even the weight of our bodies is
so far supported by water that many persons can float.
[Illustration: FIG. 17.--Water forces the card against the chimney.]
The following experiment provides a means of testing this force:
If an empty can is pushed down into water, we feel at once the
force of the liquid acting against the object and tending to push
it upward. It may be noticed also that so long as the can is not
completely submerged the deeper the can is pushed into the water
the greater is the upward force exerted by the liquid.
We may test this action in various ways: a simple way is to take a
cylindrical lamp chimney, press a card against its lower end and
place it in the water in a vertical position. The force of the
water will hold the card firmly against the end of the chimney.
(See Fig. 17.) The amount of force may be tested by dropping shot
into the tube until the card drops off. At greater depths more shot
will be required, showing that the force of the water increases
with the depth. Or one may pour water into the chimney. It will
then be found that the card does not drop until the level of the
water inside the chimney is the same as on the outside. That is,
before the card will fall off, the water must stand as high within
the chimney as without no matter to what depth the lower end of the
chimney is thrust below the surface of the water.
=36. Law of Liquid Pressure.=--As there is twice as much water or shot
in the chimney when it is filled to a depth of 10 cm. as there is when
it is filled to a depth of 5 cm. the force of the water upward on the
bottom must be twice as great at a depth of 10 cm. as at a depth of 5
cm. Since this reasoning will hold good for a comparison of forces at
any two depths, we have the law: "_The pressure exerted by a liquid is
directly proportional to the depth_."
Public-domain text, read in full here on John Shaqi.
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