Suppose an elastic bag were to be tied on to the nozzle of a kettle full
of boiling water. If the bag were kept as hot as the boiling water it
would become fully distended, and maintain its shape in spite of the
pressure of the air upon all sides of it. If the bag were taken away it
would retain its shape so long as it was kept as hot as boiling water;
but, if it were allowed to cool, it would gradually become flattened by
the outside air squeezing up the less and less resisting gaseous water
of the lower temperatures. Hence, when the stopped flask has been
allowed to cool, the air rushes in with great violence if it is opened.
38. =The Evaporation of Water at ordinary Temperatures.=
If some water is poured into a saucer and is allowed to stand even in a
cool room or in the open air, you know that it sooner or later
disappears. Wet clothes hung on a line soon dry—that is to say, the
water clinging to them disappears or =evaporates=. The disappearance of
the water under these circumstances results from the property just
mentioned. In fact, it becomes gaseous water of the density appropriate
to the temperature, and as such mixes with the air as any other gas
would do. And as the sea, lakes, and rivers, are constantly giving off
gaseous water into the air in proportion to the temperature, it is not
wonderful that the atmosphere always contains gaseous water.
Air is said to be moist when the weight of water in a given quantity,
say 100 cubic inches, is as much, or nearly as much, as can exist in the
state of gas at the temperature. Under these circumstances, if the
temperature is lowered even a very little, some of the gaseous water is
converted into liquid water. We see this in hot moist weather, when the
outside of a tumbler of fresh drawn cold spring water immediately
becomes bedewed. The gaseous water in immediate contact with the
tumbler, in fact, is cooled down below the point at which it can all
exist as gas, and the superfluity is deposited as dew. In such days wet
clothes do not dry well, because there is, already, nearly as much
gaseous water in the atmosphere as the amount of heat marked by the
thermometer can maintain in that state.
39. =When Hot Water is cooled, it Contracts to begin with, but after a
time Expands.=
We have now seen what a wonderful change is brought about by heating
water. At first, it expands gradually and slightly; but, when it reaches
the boiling-point, it suddenly expands enormously, and is no longer a
liquid, but a gas.
Public-domain text, read in full here on John Shaqi.
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