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Chapter 9 The Question of the Powders
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There remained for consideration merely the question of powders. The public awaited with interest its final decision. The size of the projectile2, the length of the cannon3 being settled, what would be the quantity of powder necessary to produce impulsion?

It is generally asserted that gunpowder4 was invented in the fourteenth century by the monk5 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 sulfur6 and saltpeter. Few persons are acquainted with the mechanical power of gunpowder. Now this is precisely7 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 combustion8 it produces 400 litres of gas. This gas, on being liberated9 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 distinguished10 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.

“Quite certain,” replied the major. “The Armstrong cannon employs only seventy-five pounds of powder for a projectile of eight hundred pounds, and the Rodman Columbiad uses only one hundred and sixty pounds of powder to send its half ton shot a distance of six miles. These facts cannot be called in question, for I myself raised the point during the depositions11 taken before the committee of artillery12.”

“Quite true,” said the general.

“Well,” replied the major, “these figures go to prove that the quantity of powder is not increased with the weight of the shot; that is to say, if a 24-pounder shot requires sixteen pounds of powder;— in other words, if in ordinary guns we employ a quantity of powder equal to two-thirds of the weight of the projectile, this proportion is not constant. Calculate, and you will see that in place of three hundred and thirty-three pounds of powder, the quantity is reduced to no more than one hundred and sixty pounds.”

“What are you aiming at?” asked the president.

“If you push your theory to extremes, my dear major,” said J. T. Maston, “you will get to this, that as soon as your shot becomes sufficiently13 heavy you will not require any powder at all.”

“Our friend Maston is always at his jokes, even in serious matters,” cried the major; “but let him make his mind easy, I am going presently to propose gunpowder enough to satisfy his artillerist’s propensities14. I only keep to statistical15 facts when I say that, during the war, and for the very largest guns, the weight of the powder was reduced, as the result of experience, to a tenth part of the weight of the shot.”

“Perfectly correct,” said Morgan; “but before deciding the quantity of powder necessary to give the impulse, I think it would be as well ——”

“We shall have to employ a large-grained powder,” continued the major; “its combustion is more rapid than that of the small.”

“No doubt about that,” replied Morgan; “but it is very destructive, and ends by enlarging the bore of the pieces.”

“Granted; but that which is injurious to a gun destined16 to perform long service is not so to our Columbiad. We shall run no danger of an explosion; and it is necessary that our powder should take fire instantaneously in order that its mechanical effect may be complete.”

“We must have,” said Maston, “several touch-holes, so as to fire it at different points at the same time.”

“Certainly,” replied Elphinstone; “but that will render the working of the piece more difficult. I return then to my large-grained powder, which removes those difficulties. In his Columbiad charges Rodman employed a powder as large as chestnuts17, made of willow18 charcoal19, simply dried in cast- iron pans. This powder was hard and glittering, left no trace upon the hand, contained hydrogen and oxygen in large proportion, took fire instantaneously, and, though very destructive, did not sensibly injure the mouth-piece.”

Up to this point Barbicane had kept aloof20 from the discussion; he left the others to speak while he himself listened; he had evidently got an idea. He now simply said, “Well, my friends, what quantity of powder do you propose?”

The three members looked at one another.

“Two hundred thousand pounds.” at last said Morgan.

“Five hundred thousand,” added the major.

“Eight hundred thousand,” screamed Maston.

A moment of silence followed this triple proposal; it was at last broken by the president.

“Gentlemen,” he quietly said, “I start from this principle, that the resistance of a gun, constructed under the given conditions, is unlimited21. I shall surprise our friend Maston, then, by stigmatizing22 his calculations as timid; and I propose to double his 800,000 pounds of powder.”

“Sixteen hundred thousand pounds?” shouted Maston, leaping from his seat.

“Just so.”

“We shall have to come then to my ideal of a cannon half a mile long; for you see 1,600,000 pounds will occupy a space of about 20,000 cubic feet; and since the contents of your cannon do not exceed 54,000 cubic feet, it would be half full; and the bore will not be more than long enough for the gas to communicate to the projectile sufficient impulse.”

“Nevertheless,” said the president, “I hold to that quantity of powder. Now, 1,600,000 pounds of powder will create 6,000,000,000 litres of gas. Six thousand millions! You quite understand?”

“What is to be done then?” said the general.

“The thing is very simple; we must reduce this enormous quantity of powder, while preserving to it its mechanical power.”

“Good; but by what means?”

“I am going to tell you,” replied Barbicane quietly.

“Nothing is more easy than to reduce this mass to one quarter of its bulk. You know that curious cellular23 matter which constitutes the elementary tissues of vegetable? This substance is found quite pure in many bodies, especially in cotton, which is nothing more than the down of the seeds of the cotton plant. Now cotton, combined with cold nitric acid, become transformed into a substance eminently24 insoluble, combustible25, and explosive. It was first discovered in 1832, by Braconnot, a French chemist, who called it xyloidine. In 1838 another Frenchman, Pelouze, investigated its different properties, and finally, in 1846, Schonbein, professor of chemistry at Bale, proposed its employment for purposes of war. This powder, now called pyroxyle, or fulminating cotton, is prepared with great facility by simply plunging26 cotton for fifteen minutes in nitric acid, then washing it in water, then drying it, and it is ready for use.”

“Nothing could be more simple,” said Morgan.

“Moreover, pyroxyle is unaltered by moisture — a valuable property to us, inasmuch as it would take several days to charge the cannon. It ignites at 170 degrees in place of 240, and its combustion is so rapid that one may set light to it on the top of the ordinary powder, without the latter having time to ignite.”

“Perfect!” exclaimed the major.

“Only it is more expensive.”

“What matter?” cried J. T. Maston.

“Finally, it imparts to projectiles27 a velocity28 four times superior to that of gunpowder. I will even add, that if we mix it with one-eighth of its own weight of nitrate of potassium, its expansive force is again considerably29 augmented30.”

“Will that be necessary?” asked the major.

“I think not,” replied Barbicane. “So, then, in place of 1,600,000 pounds of powder, we shall have but 400,000 pounds of fulminating cotton; and since we can, without danger, compress 500 pounds of cotton into twenty-seven cubic feet, the whole quantity will not occupy a height of more than 180 feet within the bore of the Columbiad. In this way the shot will have more than 700 feet of bore to traverse under a force of 6,000,000,000 litres of gas before taking its flight toward the moon.”

At this juncture31 J. T. Maston could not repress his emotion; he flung himself into the arms of his friend with the violence of a projectile, and Barbicane would have been stove in if he had not been boom-proof.

This incident terminated the third meeting of the committee.

Barbicane and his bold colleagues, to whom nothing seemed impossible, had succeeding in solving the complex problems of projectile, cannon, and powder. Their plan was drawn32 up, and it only remained to put it into execution.

“A mere1 matter of detail, a bagatelle,” said J. T. Maston.


点击收听单词发音收听单词发音  

1 mere rC1xE     
adj.纯粹的;仅仅,只不过
参考例句:
  • That is a mere repetition of what you said before.那不过是重复了你以前讲的话。
  • It's a mere waste of time waiting any longer.再等下去纯粹是浪费时间。
2 projectile XRlxv     
n.投射物,发射体;adj.向前开进的;推进的;抛掷的
参考例句:
  • The vertical and horizontal motions of a projectile can be treated independently.抛射体的竖直方向和水平方向的运动能够分开来处理。
  • Have you altered the plans of the projectile as the telegram suggests?你已经按照电报的要求修改炮弹图样了吗?
3 cannon 3T8yc     
n.大炮,火炮;飞机上的机关炮
参考例句:
  • The soldiers fired the cannon.士兵们开炮。
  • The cannon thundered in the hills.大炮在山间轰鸣。
4 gunpowder oerxm     
n.火药
参考例句:
  • Gunpowder was introduced into Europe during the first half of the 14th century.在14世纪上半叶,火药传入欧洲。
  • This statement has a strong smell of gunpowder.这是一篇充满火药味的声明。
5 monk 5EDx8     
n.和尚,僧侣,修道士
参考例句:
  • The man was a monk from Emei Mountain.那人是峨眉山下来的和尚。
  • Buddhist monk sat with folded palms.和尚合掌打坐。
6 sulfur ps4wC     
n.硫,硫磺(=sulphur)
参考例句:
  • Sulfur emissions from steel mills become acid rain.炼钢厂排放出的硫形成了酸雨。
  • Burning may produce sulfur oxides.燃烧可能会产生硫氧化物。
7 precisely zlWzUb     
adv.恰好,正好,精确地,细致地
参考例句:
  • It's precisely that sort of slick sales-talk that I mistrust.我不相信的正是那种油腔滑调的推销宣传。
  • The man adjusted very precisely.那个人调得很准。
8 combustion 4qKzS     
n.燃烧;氧化;骚动
参考例句:
  • We might be tempted to think of combustion.我们也许会联想到氧化。
  • The smoke formed by their combustion is negligible.由它燃烧所生成的烟是可忽略的。
9 liberated YpRzMi     
a.无拘束的,放纵的
参考例句:
  • The city was liberated by the advancing army. 军队向前挺进,解放了那座城市。
  • The heat brings about a chemical reaction, and oxygen is liberated. 热量引起化学反应,释放出氧气。
10 distinguished wu9z3v     
adj.卓越的,杰出的,著名的
参考例句:
  • Elephants are distinguished from other animals by their long noses.大象以其长长的鼻子显示出与其他动物的不同。
  • A banquet was given in honor of the distinguished guests.宴会是为了向贵宾们致敬而举行的。
11 depositions 501b5f2c22877a7ee308222b01cb47b5     
沉积(物)( deposition的名词复数 ); (在法庭上的)宣誓作证; 处置; 罢免
参考例句:
  • The safety problems are more severe for low-pressure depositions because the processes often use concentrated gases. 对于低压淀积来说安全性问题更为突出,因为这种工艺通常使用高浓度的气体。
  • The chief method is to take depositions of parties and witnesses. 主要的方法是录取当事人和证人的宣誓证言。 来自口语例句
12 artillery 5vmzA     
n.(军)火炮,大炮;炮兵(部队)
参考例句:
  • This is a heavy artillery piece.这是一门重炮。
  • The artillery has more firepower than the infantry.炮兵火力比步兵大。
13 sufficiently 0htzMB     
adv.足够地,充分地
参考例句:
  • It turned out he had not insured the house sufficiently.原来他没有给房屋投足保险。
  • The new policy was sufficiently elastic to accommodate both views.新政策充分灵活地适用两种观点。
14 propensities db21cf5e8e107956850789513a53d25f     
n.倾向,习性( propensity的名词复数 )
参考例句:
  • This paper regarded AFT as a criterion to estimate slagging propensities. 文中以灰熔点作为判断煤灰结渣倾向的标准。 来自互联网
  • Our results demonstrate that different types of authoritarian regime face different propensities to develop toward democracy. 本文研究结果显示,不同的威权主义政体所面对的民主发展倾向是不同的。 来自互联网
15 statistical bu3wa     
adj.统计的,统计学的
参考例句:
  • He showed the price fluctuations in a statistical table.他用统计表显示价格的波动。
  • They're making detailed statistical analysis.他们正在做具体的统计分析。
16 destined Dunznz     
adj.命中注定的;(for)以…为目的地的
参考例句:
  • It was destined that they would marry.他们结婚是缘分。
  • The shipment is destined for America.这批货物将运往美国。
17 chestnuts 113df5be30e3a4f5c5526c2a218b352f     
n.栗子( chestnut的名词复数 );栗色;栗树;栗色马
参考例句:
  • A man in the street was selling bags of hot chestnuts. 街上有个男人在卖一包包热栗子。 来自《简明英汉词典》
  • Talk of chestnuts loosened the tongue of this inarticulate young man. 因为栗子,正苦无话可说的年青人,得到同情他的人了。 来自汉英文学 - 中国现代小说
18 willow bMFz6     
n.柳树
参考例句:
  • The river was sparsely lined with willow trees.河边疏疏落落有几棵柳树。
  • The willow's shadow falls on the lake.垂柳的影子倒映在湖面上。
19 charcoal prgzJ     
n.炭,木炭,生物炭
参考例句:
  • We need to get some more charcoal for the barbecue.我们烧烤需要更多的碳。
  • Charcoal is used to filter water.木炭是用来过滤水的。
20 aloof wxpzN     
adj.远离的;冷淡的,漠不关心的
参考例句:
  • Never stand aloof from the masses.千万不可脱离群众。
  • On the evening the girl kept herself timidly aloof from the crowd.这小女孩在晚会上一直胆怯地远离人群。
21 unlimited MKbzB     
adj.无限的,不受控制的,无条件的
参考例句:
  • They flew over the unlimited reaches of the Arctic.他们飞过了茫茫无边的北极上空。
  • There is no safety in unlimited technological hubris.在技术方面自以为是会很危险。
22 stigmatizing a439a524b86cf0ed076d1e37e322db08     
v.使受耻辱,指责,污辱( stigmatize的现在分词 )
参考例句:
  • Laing regards the concept of mental illness as both unscientific and stigmatizing. 菜恩认为精神病的概念是不科学的和诬蔑性的。 来自辞典例句
  • The existing social benefits are considered to be stigmatizing and repressive. 现存的社会福利被指责为是无价值的、残暴的。 来自互联网
23 cellular aU1yo     
adj.移动的;细胞的,由细胞组成的
参考例句:
  • She has a cellular telephone in her car.她的汽车里有一部无线通讯电话机。
  • Many people use cellular materials as sensitive elements in hygrometers.很多人用蜂窝状的材料作为测量温度的传感元件。
24 eminently c442c1e3a4b0ad4160feece6feb0aabf     
adv.突出地;显著地;不寻常地
参考例句:
  • She seems eminently suitable for the job. 她看来非常适合这个工作。
  • It was an eminently respectable boarding school. 这是所非常好的寄宿学校。 来自《简明英汉词典》
25 combustible yqizS     
a. 易燃的,可燃的; n. 易燃物,可燃物
参考例句:
  • Don't smoke near combustible materials. 别在易燃的材料附近吸烟。
  • We mustn't take combustible goods aboard. 我们不可带易燃品上车。
26 plunging 5fe12477bea00d74cd494313d62da074     
adj.跳进的,突进的v.颠簸( plunge的现在分词 );暴跌;骤降;突降
参考例句:
  • War broke out again, plunging the people into misery and suffering. 战祸复发,生灵涂炭。 来自《现代汉英综合大词典》
  • He is plunging into an abyss of despair. 他陷入了绝望的深渊。 来自《简明英汉词典》
27 projectiles 4aa229cb02c56b1e854fb2e940e731c5     
n.抛射体( projectile的名词复数 );(炮弹、子弹等)射弹,(火箭等)自动推进的武器
参考例句:
  • These differences are connected with the strong absorption of the composite projectiles. 这些差别与复杂的入射粒子的强烈吸收有关。 来自辞典例句
  • Projectiles became more important because cannons could now fire balls over hundreds or yards. 抛射体变得更加重要,因为人们已能用大炮把炮弹射到几百码的距离之外。 来自辞典例句
28 velocity rLYzx     
n.速度,速率
参考例句:
  • Einstein's theory links energy with mass and velocity of light.爱因斯坦的理论把能量同质量和光速联系起来。
  • The velocity of light is about 300000 kilometres per second.光速约为每秒300000公里。
29 considerably 0YWyQ     
adv.极大地;相当大地;在很大程度上
参考例句:
  • The economic situation has changed considerably.经济形势已发生了相当大的变化。
  • The gap has narrowed considerably.分歧大大缩小了。
30 Augmented b45f39670f767b2c62c8d6b211cbcb1a     
adj.增音的 动词augment的过去式和过去分词形式
参考例句:
  • 'scientists won't be replaced," he claims, "but they will be augmented." 他宣称:“科学家不会被取代;相反,他们会被拓展。” 来自英汉非文学 - 科学史
  • The impact of the report was augmented by its timing. 由于发表的时间选得好,这篇报导的影响更大了。
31 juncture e3exI     
n.时刻,关键时刻,紧要关头
参考例句:
  • The project is situated at the juncture of the new and old urban districts.该项目位于新老城区交界处。
  • It is very difficult at this juncture to predict the company's future.此时很难预料公司的前景。
32 drawn MuXzIi     
v.拖,拉,拔出;adj.憔悴的,紧张的
参考例句:
  • All the characters in the story are drawn from life.故事中的所有人物都取材于生活。
  • Her gaze was drawn irresistibly to the scene outside.她的目光禁不住被外面的风景所吸引。


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