On the various forces of nature and their relations to each otherFaraday, Michael
Science
On the various forces of nature and their relations to each other
Faraday, Michael
Physics
Now if I put some of this ice into the metal
dish, and then proceed to make it liquid by any of the various means
we have at our command, it still must take the necessary quantity of
heat from something, and in this case it will take the heat from the
tray, and from the water underneath, and from the other things round
about. Well, a little salt added to the ice has the power of causing it
to melt, and we shall very shortly see the mixture become quite fluid,
and you will then find that the water beneath will be frozen--frozen,
because it has been forced to give up that heat which is necessary to
keep it in the liquid state, to the ice on becoming liquid. I remember
once, when I was a boy, hearing of a trick in a country alehouse; the
point was how to melt ice in a quart-pot by the fire, and freeze it to
the stool. Well, the way they did it was this: they put some pounded
ice in a pewter pot and added some salt to it, and the consequence was,
that when the salt was mixed with it, the ice in the pot melted (they
did not tell me anything about the salt, and they set the pot by the
fire, just to make the result more mysterious), and in a short time the
pot and the stool were frozen together, as we shall very shortly find
it to be the case here. And all because salt has the power of lessening
the attraction between the particles of ice. Here you see the tin dish
is frozen to the board--I can even lift this little stool up by it.
[Illustration: Fig. 21.]
This experiment cannot, I think, fail to impress upon your minds the
fact, that whenever a solid body loses some of that force of attraction
by means of which it remains solid, heat is absorbed; and if, on the
other hand, we convert a liquid into a solid, _e.g._, water into ice,
a corresponding amount of heat is given out. I have an experiment
shewing this to be the case. Here (fig. 21) is a bulb, A, filled with
air, the tube from which dips into some coloured liquid in the vessel
B. And I dare say you know that if I put my hand on the bulb A, and
warm it, the coloured liquid which is now standing in the tube at C
will travel forward. Now we have discovered a means, by great care and
research into the properties of various bodies, of preparing a solution
of a salt[15] which, if shaken or disturbed, will at once become a
solid; and as I explained to you just now (for what is true of water
is true of every other liquid), by reason of its becoming solid, heat
is evolved, and I can make this evident to you by pouring it over this
bulb;--there! it is becoming solid, and look at the coloured liquid,
how it is being driven down the tube, and how it is bubbling out
through the water at the end; and so we learn this beautiful law of our
philosophy, that whenever we diminish the attraction of cohesion, we
absorb heat--and whenever we increase that attraction, heat is evolved.
This, then, is a great step in advance, for you have learned a great
Public-domain text, read in full here on John Shaqi.
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