The book of wonders : $b gives plain and simple answers to the thousands of everyday questions that are asked and which all should be able to, but cannot answer...
Science
The book of wonders : $b gives plain and simple answers to the thousands of everyday questions that are asked and which all should be able to, but cannot answer...
Curiosities and wonders; Encyclopedias and dictionaries; Questions and answers; Science -- Miscellanea; Technology -- Miscellanea
Another very powerful explosive, which is closely related to guncotton,
is nitroglycerine. This compound is made by treating glycerine with the
same sort of acid mixture that is used in making guncotton. It explodes
in the same way that guncotton does and yields the same products. It is
an oily liquid of yellow color, and on account of its liquid form it is
difficult to handle and use. The difficulty in handling nitroglycerine
led to the plan of mixing it with a quantity of very fine sand called
infusorial earth. When mixed with this a solid mass called dynamite is
formed, which is easier to handle and more difficult to explode, but
which has almost as much explosive force as nitroglycerine.
A more powerful explosive than either nitroglycerine or guncotton is
obtained by mixing them together. When this is done the guncotton
swells up by absorbing the nitroglycerine and becomes a brownish,
jelly-like substance that is known as blasting gelatin. This is
generally considered the most powerful explosive obtainable.
What Makes Nitroglycerine and Guncotton Explode So Readily?
Let us now consider for the moment what it is that makes guncotton,
nitroglycerine, and blasting gelatin explode so readily. The
explanation is found in the presence in them of nitrogen. As you
remember from what you learned about air, nitrogen is an extremely
inactive element. It has no strong tendency to combine with other
elements, and when it does enter into combination with them the
compounds formed are almost always easily decomposed. In the compounds
that have just been described a shock causes a loosening of the bonds
that hold the nitrogen, and the whole compound goes to pieces just as
an arch falls when the keystone is removed.
What Is Silver?
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