Sketch of the Analytical Engine invented by Charles Babbage, Esq.Menabrea, Luigi Federico
Science
Sketch of the Analytical Engine invented by Charles Babbage, Esq.
Menabrea, Luigi Federico
Babbage, Charles, 1791-1871; Numerical analysis
In order that all the indications contained in the diagram may be
completely understood, we shall now explain two or three points, not
hitherto touched on. When the value on any Variable is called into
use, one of two consequences may be made to result. Either the value
may return to the Variable after it has been used, in which
case it is ready for a second use if needed; or the Variable may be
made zero. (We are of course not considering a third case, of not
unfrequent occurrence, in which the same Variable is destined to
receive the result of the very operation which it has just
supplied with a number.) Now the ordinary rule is, that the value
returns to the Variable; unless it has been foreseen that no
use for that value can recur, in which case zero is substituted. At
[Pg 42]
the end of a calculation, therefore, every column ought as a
general rule to be zero, excepting those for results. Thus it will be
seen by the diagram, that when , the value on ,
is used for the second time by Operation 5, becomes
0, since is not again needed; that similarly, when (),
on , is used for the third time by Operation
11, becomes zero, since () is not again
needed. In order to provide for the one or the other of the courses
above indicated, there are two varieties of the Supplying
Variable-cards. One of these varieties has provisions which cause the
number given off from any Variable to return to that Variable
after doing its duty in the mill. The other variety has provisions
which cause zero to be substituted on the Variable, for the number
given off. These two varieties are distinguished, when needful, by the
respective appellations of the Retaining Supply-cards and the
Zero Supply-cards. We see that the primary office (see
Note B.) of both these varieties of cards is the same; they only differ
in their secondary office.
Every Variable thus has belonging to it one class of Receiving
Variable-cards and two classes of Supplying
Variable-cards. It is plain however that only the one or the
other of these two latter classes can be used by any one
Variable for one operation; never both simultaneously;
their respective functions being mutually incompatible.
It should be understood that the Variable-cards are not placed in
immediate contiguity with the columns. Each card is connected by
means of wires with the column it is intended to act upon.
Our diagram ought in reality to be placed side by side with M.
Menabrea’s corresponding table, so as to be compared with it, line for
line belonging to each operation. But it was unfortunately inconvenient
to print them in this desirable form. The diagram is, in the main,
merely another manner of indicating the various relations denoted in M.
Menabrea’s table. Each mode has some advantages and some disadvantages.
Combined, they form a complete and accurate method of registering every
step and sequence in all calculations performed by the engine.
Public-domain text, read in full here on John Shaqi.
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