Encyclopedia of Diet: A Treatise on the Food Question, Vol. 1 — John Shaqi
Encyclopedia of Diet: A Treatise on the Food Question, Vol. 1Christian, Eugene
Science
Encyclopedia of Diet: A Treatise on the Food Question, Vol. 1
Christian, Eugene
Diet; Diet in disease; Food
From such facts we know that not only the amount of heat, but the amount
of work or energy that food or fuel will yield can be determined with
reasonable accuracy. Many conditions obtain in the body, however, that
do not occur in the laboratory, hence we must study these conditions
before we can fully understand the natural laws that govern the
production of heat, and energy or work, by oxidation in the living body.
HYDROGEN AND WATER
[Sidenote: Distribution and production of hydrogen]
HYDROGEN--Hydrogen is found in nature very widely distributed and
in large quantities. It forms one-ninth of the weight of water, and
is contained in all the principal substances which enter into the
composition of plants and animals. It may be obtained by decomposition
of water by means of the electric current, or by the action of
substances known as acids on metals. The latter method is more commonly
used in the laboratory. Acids contain hydrogen, give it off easily, and
take up other elements in its place. Among the common acids found in
every laboratory are hydrochloric, sulfuric, and nitric.
[Sidenote: Physical properties of hydrogen]
Pure hydrogen is a colorless, odorless, tasteless gas. It is not
poisonous, and may therefore be inhaled without harm. It is the lightest
known substance, being about 14.4 times lighter than air, 16 times
lighter than oxygen, and 11,000 times lighter than water.
[Sidenote: Chemical properties of hydrogen]
Hydrogen does not unite with oxygen at ordinary temperatures, but,
like wood and most other fuel substances, needs to be heated up to the
kindling temperature before it will burn. Hydrogen burns if a lighted
match be applied to it. The flame is colorless, or very slightly blue.
[Sidenote: Decomposition of water]
WATER--Water is a compound and not an element, as can be shown by
passing an electric current through it. If the ends of two wires, each
connected with an electric battery, be put a short distance apart, in
acidulated water, it will be noticed that bubbles of gas rise from each
wire. As these gases cannot come from, or through the wires, they must
be formed from the water. If they be analyzed, we will find that oxygen
gas comes from one wire and hydrogen from the other.
[Sidenote: Proportion of hydrogen and oxygen in water]
This experiment shows that when an electric current is passed through
water, hydrogen and oxygen are obtained, and also that there is obtained
twice as much hydrogen as oxygen by volume. This proves that water is
not an element, but a compound of two atoms of hydrogen and one of
oxygen. The chemist therefore writes the symbol for water H₂O.
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