Extractives. — This is the term given to the group of chemical
substances which we can dissolve out of any substance by water
or other solvent. Soups, extracts of meat, glaze and similar pre-
parations mainly consist of these substances.
Finally there is a large group of more or less desirable accessories
to food, such as spices and condiments, wines, tea, coffee, and cocoa,
and so on.
Having thus considered very briefly these ‘ proximate principles,’
let us see how a few of the more ordinary articles of diet supply us
with them.
1. Milk.- -This naturally comes first, inasmuch as it is the most
complete of any of the natural food stuffs.
It contains : —
A. Proteids, mainly a proteid called caseinogen. — This is
dissolved in the milk, but unlike most proteids does not
coagulate in boiling. When, however, a little rennet is added
to the milk, it becomes converted into casein, and entangling
with it the fatty globules of the milk, forms the well-known
curd. This forms the principal constituent of cheese. If
milk be allowed to boil for some time, certain changes occur,
the exact nature of which has not been discovered. They
are of great practical importance from the fact that children
fed upon milk prepared in this way frequently do not thrive.
Milk should therefore be removed from the fire immediately
it begins to boil, especially if it is to be used for feeding
very young children.
B. Fats.— If a drop of milk be examined under the microscope,
it is seen to consist of numerous globules of fat which, when
shaken together, form butter, one of the most valuable of
all the fats from a physiological standpoint.
C. Carbohydrates. — Milk contains a special form of sugar
lactose, or milk sugar.
D. Water, Salts and Extractives.
Human milk differs from cow’s milk in that it contains more
sugar and less proteid matter.
In round numbers the relative quantities are : —
^ —
Human Milk
Cow’S- Milk
Proteid (per cent.) . • • '
. . ! 2
4
Fat (per cent.) .
. i 4
4
Carbohydrate (per cent.) .
'
4
THE SCIENCE OF COOKERY
19
2. Meat.-— Here we have to consider two distinct structures. In
the first place, we have the actual fibres of the meat, consisting,
besides water, almost entirely of proteid, or albuminous material of
several varieties. Some of these after death undergo coagulation,
causing the carcase of the animal to become stiff and rigid.
The other constituents of the meat are sinews and material
uniting the fibres together. These contain fat and a substance which
yields gelatin on boiling with water.
Gelatin, the chief constituent of jellies and clear soups, is a sub-
stance allied to proteid, and is of value in that it can replace part,
though not all, of the proteid part of the diet. It has hence been
called a ‘ proteid sparing ’ food.
3. Eggs. — These form the nearest approach to a pure proteid
that we have in nature, their other constituents being comparatively
unimportant.
4. Bread and Flour. — These in various forms constitute the main
sources of carbohydrates. Bread contains a large amount of starch,
some sugar formed from it in the process of baking, as well as about
8 per cent, of the vegetable proteid called gluten. Bread is made
‘ light ’ by the action of yeast, a small plant which, as it grows, forms
carbonic acid gas from the sugar. This gas bubbling through the
dough renders it porous.
Page 8
Presented as published in 1901. Historical recipes may not meet modern food-safety standards. Cook from the modern interpretation, not the original instructions.
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Extractives. — This is the term given to the group of chemical
substances which we can dissolve out of any substance by water
or other solvent. Soups, extracts of meat, glaze and similar pre-
parations mainly consist of these substances.
Finally there is a large group of more or less desirable accessories
to food, such as spices and condiments, wines, tea, coffee, and cocoa,
and so on.
Having thus considered very briefly these ‘ proximate principles,’
let us see how a few of the more ordinary articles of diet supply us
with them.
1. Milk.- -This naturally comes first, inasmuch as it is the most
complete of any of the natural food stuffs.
It contains : —
A. Proteids, mainly a proteid called caseinogen. — This is
dissolved in the milk, but unlike most proteids does not
coagulate in boiling. When, however, a little rennet is added
to the milk, it becomes converted into casein, and entangling
with it the fatty globules of the milk, forms the well-known
curd. This forms the principal constituent of cheese. If
milk be allowed to boil for some time, certain changes occur,
the exact nature of which has not been discovered. They
are of great practical importance from the fact that children
fed upon milk prepared in this way frequently do not thrive.
Milk should therefore be removed from the fire immediately
it begins to boil, especially if it is to be used for feeding
very young children.
B. Fats.— If a drop of milk be examined under the microscope,
it is seen to consist of numerous globules of fat which, when
shaken together, form butter, one of the most valuable of
all the fats from a physiological standpoint.
C. Carbohydrates. — Milk contains a special form of sugar
lactose, or milk sugar.
D. Water, Salts and Extractives.
Human milk differs from cow’s milk in that it contains more
sugar and less proteid matter.
In round numbers the relative quantities are : —
^ —
Human Milk
Cow’S- Milk
Proteid (per cent.) . • • '
. . ! 2
4
Fat (per cent.) .
. i 4
4
Carbohydrate (per cent.) .
'
4
THE SCIENCE OF COOKERY
19
2. Meat.-— Here we have to consider two distinct structures. In
the first place, we have the actual fibres of the meat, consisting,
besides water, almost entirely of proteid, or albuminous material of
several varieties. Some of these after death undergo coagulation,
causing the carcase of the animal to become stiff and rigid.
The other constituents of the meat are sinews and material
uniting the fibres together. These contain fat and a substance which
yields gelatin on boiling with water.
Gelatin, the chief constituent of jellies and clear soups, is a sub-
stance allied to proteid, and is of value in that it can replace part,
though not all, of the proteid part of the diet. It has hence been
called a ‘ proteid sparing ’ food.
3. Eggs. — These form the nearest approach to a pure proteid
that we have in nature, their other constituents being comparatively
unimportant.
4. Bread and Flour. — These in various forms constitute the main
sources of carbohydrates. Bread contains a large amount of starch,
some sugar formed from it in the process of baking, as well as about
8 per cent, of the vegetable proteid called gluten. Bread is made
‘ light ’ by the action of yeast, a small plant which, as it grows, forms
carbonic acid gas from the sugar. This gas bubbling through the
dough renders it porous.