Ian Miles
- revised April 2000, originally prepared in 1989 -
This essay seeks to bring to wider attention a very interesting but neglected study in the early history of Information Technology. I also want to make some points about the relation between technology, markets, and rhetoric. The essay was originally prepared in response to a paper by Bruce Berman entitled "The Computer Metaphor", published in Science as Culture no 7 (1989); however I never got around to publishing it at that time, because of getting caught up in the move from SPRU to PREST. I have revised it slightly, and knocked out the footnotes (which HTML publishing via Word seems to lose).
I had met Bruce in the mid-1980s, when he was visiting SPRU (where I was then based). Bruce drew my attention to the remarkable fact that Charles Babbage is known both as an early theorist of both the division of labour in manufacturing and as a pioneer in the development of the computer. In
Babbage's machine was a solution in search of a problem. The Difference Engine was actually built, though this history has been neglected. While technical problems rendered it rather less effective than its designers had hoped, the more serious problems were a lack of markets for automated forms of mental labour (of specific sorts of mental labour, to be precise) at that point in history.
- The Origins of Babbage's Project
"one of the consequences that have resulted from the Calculating Engine, the construction of which I have been so long superintending. Having been induced, during the last ten years, to visit a considerable number of workshops and factories, both in England and on the Continent, for the purposes of endeavouring to make myself acquainted with the various resources of mechanical art, I was insensibly led to apply to them those principles of generalisation to which my other pursuits had naturally given rise.....Several of the principles which I have proposed, appear to me to have been unnoticed before...particularly...the explanation I have given of the division of labour." (no pagination in the Preface.)
Babbage thus himself claims that he was driven to study (and then to enunciate his conclusions about) the division of manual labour by needing to understand manufacturing processes. He claims, furthermore, that this necessity was imposed by his desire to construct a computer.
"when the completion of a calculating engine shall have produced a substitute for the whole of the third section of computers, the attention of analysts will naturally be directed to simplifying its application, by a discussion of the methods of converting analytical formulae into numbers" (p195).
machines(!). But this an expositional device: while it is quite likely that his study of manufacturing division of labour had some influence upon the analysis of the mental division of labour, and the mechanisation of certain parts of intellectual work, the evidence is strong that his account in the preface is correct. In other words, the theorist of the division of manual labour was born out of the would-be divider of mental labour. Babbage already had conceptualised the division of intellectual labour before he went on to study manual labour.
Furthermore, his conceptualisation of the division of intellectual labour was also founded on earlier practice. And it too had an impact on subsequent social action, as we shall see – if not the impact he expected in the quotation above.
- 5 or 6 eminent mathematicians, whose job was to select among alternative analytical expressions of functions, choosing those most easily adaptable to a high division of labour in their calculation (incidentally, this involved a form of human parallel processing!);
- 7 people of high mathematical knowledge who would convert these formulae into numbers - a big job - and verify the calculations by "certain means" other than checking them all;
- 60 to 80 calculators, who used only simple addition and subtraction to calculate interim and final results.
Thus it appears that the division of both mental and manual labour in practice led Babbage first to theorise the former - and then, as a result of his efforts to mechanise the former, to theorise the latter. No doubt history was vastly complex than this summary account suggests. For example, there were calculating machines before Babbage's Engine, and it requires detailed study to specify what was new in his device, and to identify (as far as possible) where the notions came from. In
Babbage drew explicit analogies between the automation of, and division of labour in, "mechanical and mental operations". The division of labour in both cases:
"enables us to purchase and apply to each process precisely that quantity of skill and knowledge which is required for it."(p201)
Interestingly, he goes on to rephrase Smith's well-known comment about the division of labour being limited by the size of the market: "division of labour cannot be successfully applied unless there exists a great demand for its produce; and it requires a large capital to be employed in those arts in which it is used."(p201) This statement throws a great deal of light onto what was to become the fate of the Difference Engine in practice.
Babbage's book is well worth reading, not least because of its futurological elements, and the author's unembarassed statement of his ideology. (It also contains a splenetic early
account of the "British Disease", as he complains about the Presidency of the Royal Society being taken by a member of the aristocracy rather than by a member of the "nobility of science"; and a discussion of energy crises!)
Babbage sees science as key to technical progress, and mathematics as the ultimate science:
"the further we advance from the origin of our knowledge, the larger it becomes, and the greater power it bestows upon its cultivators, to add new fields to its domains. Yet...the whole, already gained, bears a constantly diminishing ratio to that which is contained within the still more rapidly expanding horizon of our knowledge... another and a higher science, itself still more boundless, is also advancing with a giant's stride, and having grasped the mightier masses of the universe, and reduced their wanderings to laws, has given us in its own condensed language, expressions, which are to the past as history, to the future as prophecy. It is the same science which is now preparing its fetters for the minutest atoms which nature has created.... It is the science of...calculation which becomes continually more necessary at each step of our progress, and which must ultimately govern the whole of the applications of science to the arts of life." (pp387-8)4
These laws of mathematics must have been designed, according to Babbage, who sees this as evidence of a creator: in a manner resonant of some recent commentators, for example Rudy Rucker, the Universe is seen as a vast programmed system.
- The Difference Engine in Practice
themes, but here I concentrate on points concerning the origins and fate of the Difference Engine. (Page references from here on are to this book.)
the name "Difference Engine" was chosen. "Difference" comes from the calculation procedures followed: the method of differences. But it was unusual at the time to find "engine" applied to machinery, notes Lindgren, and it was new to apply it to calculating machinery. Hoiwever, the use of the term "steam engine" was widespread, and a technological revolution was underway through the use of steam power at the time Babbage was writing. Babbage had envisaged the Difference Engine being steam-powered. The steam power would not only drive the calculating unit, but also a printing unit, achieving mechanised typesetting of the tables, so they could be reproduced reliably. Lindgren comments that this latter feature was in many respects the most radical aspect of the Engine: at that time newspapers were being printed by steam, but not set. However, Lindgren (pp39-41) also plausibly suggests that Babbage was hoping that the term would highlight the technologically revolutionary implications of his idea. Parallels with present-day "hyping" of products are readily apparent.
halted work in 1834, turning his attention to the Analytical Engine. And this is where the story usually ends: the failure of the Difference Engine was a technical or personality problem. If it could have been constructed, the implication goes, it would have found wide application. This theme is pursued in a highly interesting and well-informed alternate-history novel, The Difference Engine by William Gibson and Bruce Sterling, pioneers of the "cyberpunk" genre of science fiction. This book explores the implications of an IT revolution happening simultaneously with the industrial revolution. For my review of this – and why its founding assumptions are shown by Lindgren’s work to be wrong, see Miles (1991.)
"the known talent of bringing...goods to the market, which the foreigner usually possesses to a high degree and which we...almost despise" (p91).
Scheutz described
"in England a special class of industrialists, who made their money from other people's inventions...tirelessly read foreign journals, reports, etc... special agents who studied the patent offices and workshops in foreign countries" (p134).
Babbage's writings on the Difference Engine. Concluding that there were flaws in Babbage's design, he interested his son Edvard in the project - and Edvard eventually produced a hand-driven Difference Engine cheaply, initially as a hobby, at home. Does this remind you of the garage computer industry of
"even if the larger and more complete engine should later on remain the only example of its kind, it would suffice for the needs of the whole world". (p272)
In other words, all the needed tables could be produced by one machine and sold in bulk. This sounds very reminiscent of suggestions made in the early days of electronic computers that probably one or two would suffice for all the computing requirements of a country; and these requirements were naturally more numerous and varied than those envisaged for the difference engine. But later, he was won to the idea of a small and portable machine, and in 1857 wrote to a mailing list of 400 arguing that the Engine would be:
"a necessity wherever there is an observatory, a university, or a press dealing with mathematical works... it will not take so many years for this to be the case" (p209).
Lindgren's analysis suggests that the earlier judgement was the more accurate - and that, since the needed tables had already largely been calculated to the number of digits which were the limit of the machine, the outlook was even less promising. (Still, there was the matter - which Babbage considered rather important - of avoiding the introduction of new errors in the reprinting of tables.)
General Register Office: the agreement was made in 1857 and the Engine completed in 1859. Life Tables were published from this Engine's work. But its
- Conclusions
Many themes could be extracted from the early history of the Difference Engine. It could be read, for instance, in terms of an innovation research framework: supply-side enthusiasm taking precedence over proper analysis of user requirements, for
instance. It could be read in terms of the evolving nature of demand for arithmetical calculations and mental labour of related types, and related to the changing nature of the so-called "information economy". The story of Babbage himself is often told in terms of a classical scientific hero-figure (or in more demonological terms in a left-wing version, perhaps), but it too can be reworked in terms of a treatment of science as culture.
exceeded its actual achievements, bears a dramatic similarity to certain more recent technological developments - for instance nuclear power and weapons (consider Walter Marshall and Edward Teller). Even the way in which he deploys arguments about the
fundamental role of mathematics, to bolster his invention, is echoed in, for instance, the rhetoric about unlocking the power of the basic building blocks of matter. The symbolic and practical dimensions of science and technology appear to be inextricably intertwined, at least when it comes to forging support for new products and programmes.
Bibliography

