From the Earth to the moon; and, round the moonVerne, Jules
Science
From the Earth to the moon; and, round the moon
Verne, Jules
Manned space flight -- Fiction; Moon -- Fiction; Science fiction; Space flight to the moon -- Fiction; Space ships -- Fiction
“Cast iron is very brittle, though,” replied Morgan.
“Yes, but it possesses great resistance. I will now ask our worthy
secretary to calculate the weight of a cast-iron gun with a bore of
nine feet and a thickness of six feet of metal.”
“In a moment,” replied Maston. Then, dashing off some algebraical
formulae with marvelous facility, in a minute or two he declared the
following result:
“The cannon will weigh 68,040 tons. And, at two cents a pound, it will
cost—”
“Two million five hundred and ten thousand seven hundred and one
dollars.”
Maston, the major, and the general regarded Barbicane with uneasy
looks.
“Well, gentlemen,” replied the president, “I repeat what I said
yesterday. Make yourselves easy; the millions will not be wanting.”
With this assurance of their president the committee separated, after
having fixed their third meeting for the following evening.
CHAPTER IX.
THE QUESTION OF THE POWDERS
There remained for consideration merely the question of powders. The
public awaited with interest its final decision. The size of the
projectile, the length of the cannon being settled, what would be the
quantity of powder necessary to produce impulsion?
It is generally asserted that gunpowder was invented in the fourteenth
century by the monk Schwartz, who paid for his grand discovery with his
life. It is, however, pretty well proved that this story ought to be
ranked among the legends of the middle ages. Gunpowder was not invented
by any one; it was the lineal successor of the Greek fire, which, like
itself, was composed of sulfur and saltpeter. Few persons are
acquainted with the mechanical power of gunpowder. Now this is
precisely what is necessary to be understood in order to comprehend the
importance of the question submitted to the committee.
A litre of gunpowder weighs about two pounds; during combustion it
produces 400 litres of gas. This gas, on being liberated and acted upon
by temperature raised to 2,400 degrees, occupies a space of 4,000
litres: consequently the volume of powder is to the volume of gas
produced by its combustion as 1 to 4,000. One may judge, therefore, of
the tremendous pressure on this gas when compressed within a space
4,000 times too confined. All this was, of course, well known to the
members of the committee when they met on the following evening.
The first speaker on this occasion was Major Elphinstone, who had been
the director of the gunpowder factories during the war.
“Gentlemen,” said this distinguished chemist, “I begin with some
figures which will serve as the basis of our calculation. The old
24-pounder shot required for its discharge sixteen pounds of powder.”
“You are certain of this amount?” broke in Barbicane.
Public-domain text, read in full here on John Shaqi.
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