Science in Short ChaptersWilliams, W. Mattieu (William Mattieu)
Science
Science in Short Chapters
Williams, W. Mattieu (William Mattieu)
Science
But I must now refrain from the further discussion of these and other
collateral details, but hope to return to them in another paper.
In “Through Norway with Ladies” I have touched lightly upon some
of these, and have more particularly described some curious and
very extensive evidences of secondary glaciation that quite escaped
my attention on my first visit, and which, too, have been equally
overlooked by other observers. In the above I have endeavored to keep
as nearly as possible to the main subject of the origin of the till and
the character of the ancient ice-sheet.
THE BAROMETER AND THE WEATHER.
The barometer was invented by Torricelli, an Italian philosopher of
the seventeenth century. It consists essentially of a long tube open
at one end and closed at the other, and partly filled with mercury;
but instead of being filled like ordinary vessels, with the open
end or mouth upwards and the closed end or bottom downwards, the
barometer-tube is inverted, and has its open mouth downwards. This open
mouth is either dipped into a little cup of mercury or bent a little
upwards.
Why does not the mercury run out of this lower open end and overflow
the little cup when it is inverted after being filled?
The answer to this question includes the whole mystery and principle
of the barometer. The mercury does not fall down because something
pushes it up and supports it with a certain degree of pressure, and
that something is the atmosphere which extends all round the world,
and presses downwards and sideways and upwards—in every direction, in
fact—with a force equal to its weight, _i.e._, with a pressure equal
to about 15 lbs. on every square inch. A column or perpendicular square
stick of air one inch thick each way, and extending from the surface
of the sea up to the top of the atmosphere, weighs about 15 lbs.;
other columns or sticks next to it on all sides weigh the same, and so
on with every portion; and all these are for ever squeezing down and
against each other, and, being fluid, transmit their pressure in every
direction, and against the earth and everything upon it, and therefore
upon the mercury of the barometer-tube.
We have supposed the air to be made up of columns or sticks of air one
inch each way, but might have taken any other size, and the weight
and pressure would be proportionate. Now mercury, bulk for bulk, is
so much heavier than air, that a stick or column of this liquid metal
about 30 inches high weighs as much as a stick or column of air of
same thickness reaching from the surface of the earth to the top of
the atmosphere; therefore, the 30-inch stick of mercury balances the
pressure of the many miles of atmosphere, and is supported by it. Thus
the column of mercury may be used to counterbalance the atmosphere and
show us its weight; and such a column of mercury is a barometer, or
“weight measure.” The word _barometer_ is compounded of the two Greek
words—_baros_, weight, and _metron_, a measure.
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