Boiled with an acid the starch is changed to dextrin, a sub-
stance resembling a gum, and the mixture becomes thin;
and this process continued changes the dextrin to dextrose.
With intense " dry " heat, as in toasting, the granule
expands and opens, and the contents change to dextrin.
Continued heat reduces the starch to pure carbon. The
brown color and pleasant flavor in toast are a stage on the
road to carbon.
Sitgar. — Sugar first melts with heat, then begins to de-
compose, giving off water. This is also a stage on the road
to pure carbon. Caramel, a familiar flavor, is sugar in the
brown stage, with the water partly driven off.
The art in applying intense heat to fat, starch, and sugar
is to know the stopping point, — to reach the " brown taste "
and stop short of the " burnt taste."
56 FOODS AND HOUSEHOLD MANAGEMENT
Mineral matter. — The " ash " remains for the most part
unchanged by heat, but may be lost in the water in which
vegetables and meat are cooked if the water is thrown
away.
Vegetable fiber is softened by heat and moisture, and the
protein, starch, fat, and sugar are freed, making them avail-
able for our digestion and nutrition.
Meat fiber softens at a low temperature, that is, below the
boiling point of water, with moisture; continued intense
heat shrinks and hardens it. A tender steak fried with fat
in a hot pan will soon resemble sole leather.
The technique of food preparation. — From the moment
the food materials enter the kitchen until the unusable
portions are destroyed or carried away, there is a best way
of working with them at each step, and the smn of these may
be said to make a good technique. This technique will
include cleanliness first and foremost, then skill in the use of
tools, judgment in managing cooking apparatus and in ap-
plying heat in cooking processes, and accuracy and rapidity
of execution. It will also include or add to itself the aesthetic
element, the fine art of flavoring, the dainty garnishing of a
dish. Moreover, this technique is the method of putting
into practice some basic, scientific principle. To illustrate :
The principle that underlies toast-making is threefold, —
Heat evaporates moisture throughout the slice of bread.
Intense heat changes the content of the starch granules on the
surface of the slice of bread to dextrin.
Intense heat, long continued, will change first the surface starch,
and then all, to carbon (charcoal).
A good technique will secure the first two, and avoid the third and
includes, —
The selection of bread already partially dry.
The cutting of bread into slices of uniform thickness.
Regulating the source of heat.
FOOD PREPARATION 57
Placing the sKees firmly in a toaster, or on a fork, or evenly on a
rack when toasting by gas.
Keeping the toast at a distance from the source of heat that in-
sures a steady but not too rapid change.
Turning the toaster or the slices to cook each siurface in turn
and thus to make the process slower.
Stopping the process before carbon is formed and the toast
" burned." (A good technique does not include scraping the toast !)
Page 30
Presented as published in 1914. Historical recipes may not meet modern food-safety standards. Cook from the modern interpretation, not the original instructions.
AI-modernized reading of the original text
Boiled with an acid the starch is changed to dextrin, a substance resembling a gum, and the mixture becomes thin; and this process continued changes the dextrin to dextrose.
With intense " dry " heat, as in toasting, the granule expands and opens, and the contents change to dextrin. Continued heat reduces the starch to pure carbon. The brown color and pleasant flavor in toast are a stage on the road to carbon.
Sugar. — Sugar first melts with heat, then begins to decompose, giving off water. This is also a stage on the road to pure carbon. Caramel, a familiar flavor, is sugar in the brown stage, with the water partly driven off.
The art in applying intense heat to fat, starch, and sugar is to know the stopping point, — to reach the " brown taste " and stop short of the " burnt taste."
Mineral matter. — The " ash " remains for the most part unchanged by heat, but may be lost in the water in which vegetables and meat are cooked if the water is thrown away.
Vegetable fiber is softened by heat and moisture, and the protein, starch, fat, and sugar are freed, making them available for our digestion and nutrition.
Meat fiber softens at a low temperature, that is, below the boiling point of water, with moisture; continued intense heat shrinks and hardens it. A tender steak fried with fat in a hot pan will soon resemble sole leather.
The technique of food preparation. — From the moment the food materials enter the kitchen until the unusable portions are destroyed or carried away, there is a best way of working with them at each step, and the sum of these may be said to make a good technique. This technique will include cleanliness first and foremost, then skill in the use of tools, judgment in managing cooking apparatus and in applying heat in cooking processes, and accuracy and rapidity of execution. It will also include or add to itself the aesthetic element, the fine art of flavoring, the dainty garnishing of a dish. Moreover, this technique is the method of putting into practice some basic, scientific principle. To illustrate :
The principle that underlies toast-making is threefold, —
Heat evaporates moisture throughout the slice of bread.
Intense heat changes the content of the starch granules on the surface of the slice of bread to dextrin.
Intense heat, long continued, will change first the surface starch, and then all, to carbon (charcoal).
A good technique will secure the first two, and avoid the third and includes, —
The selection of bread already partially dry.
The cutting of bread into slices of uniform thickness.
Regulating the source of heat.
Placing the slices firmly in a toaster, or on a fork, or evenly on a rack when toasting by gas.
Keeping the toast at a distance from the source of heat that insures a steady but not too rapid change.
Turning the toaster or the slices to cook each surface in turn and thus to make the process slower.
Stopping the process before carbon is formed and the toast " burned." (A good technique does not include scraping the toast !)