I wish school curriculum included things like "how printing actually worked through ages". Monks writing out manuscripts is somewhat relatable since we all (at least for now) still learn how to write. Everyone is taught the Gutenberg press was a big deal -- but how did it actually work? Why was it still a pain and how did later inventions fix those problems?
> 3) Transformative technologies succeed by redesigning a task, and usually not by simply trying to reproduce the existing forms of human labor. Paige built an amazingly complex mechanical imitation of the human compositor which attempted to repeat a human worker’s actual movements. By contrast, Linotype simplified the problem by doing something humans didn’t already do.
That would in fact be the main argument against humanoid robots in many (most?) applications.
The counterpoint is that what humans already do is exactly what's needed in some cases, making those cases the ideal applications for humanoids.
Actually, no. Replicating the manual process was quite feasible.
There were keyboard-driven typesetters that worked well. Here's the Unitype.[1] This sets type by assembling type slugs into a line. It doesn't cast hot metal. It even has an automatic distribution system; it can sort type slugs by letter, so you can reuse the type. That's the same thing the Paige machine did. The Unitype was much simpler.
The Unitype was late to market. Mergenthaler already had the Linotype out when the Unitype shipped. The Unitype was half the price of a Linotype. Unitype machines sold for about 20 years, so it wasn't a total failure. The Paige machine uses a lot more parts and space to do the same job.
Mechanism design skill is very rare. All the good Teletype machines were designed by just two people - Howard Krum and Edward Kleinschmidt. There were competing machines, and they were all much worse. William Burroughs invented the first adding machine that worked reliably, and it was better than all the competitors. Burroughs dominated banking well into the computer era.
The video claims that the big problem with the Unitype that it required not just a keyboard operator, but someone manually justifying the lines at the output end. Linotype figured out automatic justification, using expanding wedges. No need for a second worker.
Plus someone had to feed used type back into the Unitype for sorting and return to inventory. With a Linotype, the matrices with the letter forms never leave the machine; they are dispensed, set into a line, used for casting, and then immediately recycled back to the magazine for further use. As long as the supply of lead bars ready to melt holds up, you can keep setting type. With ordinary type setting, mechanized or not, you can end up with all your type tied up in pages waiting to be printed.
So the real problem with the Unitype was that it wasn't labor-saving enough.
Despite that, it powered many small country newspapers for years.
If you have a general solution like a robot that can do human tasks, i.e. copying manuscripts with a pen, that is often highly inefficient compared to a specialized solution like a printing press but the R&D effort of applying it is minimal compared to inventing a specialized machine.
It's similar with LLMs. Compared to a bespoke piece of software for the task they are incredibly inefficient, yet they are extremely useful because they can do things where developing that piece of software would require a lot of research.
Well, LLMs are a great example of the argument for the power of doing what "humans already do": language, however imperfect for the task, so maybe humanoid robots turn out to be the most natural way to interact with a human environment (broad strokes here, I know, but hopefully you get the gist)
I wish the article talked more about how the machine actually worked. It seemed pretty simplistic and glossed over most of the details, but now I'm really curious and want answers lol.
I don't like the first photo, historical photos getting colorized does not feel right to me, as all the colors are just assumptions and the whole thing may have looked different in real and if we look at this photo it sure did
When I heard that story, I couldn't help but thing of Steve Jobs "Real Artists Ship." The device was good but the inventor was a perfectionist instead of an entrepreneur.
> The easy moral of the story is that Twain was gullible and Paige a huxster.
It absolutely isn't. Paige was actually the engineer/tinkerer earnestly developing this machine, which really worked. One of his main problems is that he always thought he needed to improve it more before it was ready. He didn't understand "release early and often": that time-to-market matters.
> Twain felt that he had an insider’s perspective and could intuit how others in publishing would respond to the machine. But he was a printer’s devil no longer: he was a famous, millionaire author.
No longer, perhaps, but Twain had been in the printing industry, so he knew a thing or two. From age 13, Twain worked as a typesetter and compositor for newspapers. So even if he overestimated his knowledge of that, it was not simply the conceit of someone cushioned. What he remembered from his past experiences with freely moving type set by hand would have still been relevant at the time he embarked on this thing with Paige. Linotype was not yet in the market.
Even as the Linotype appeared, it was not obvious that it is superior. It is a gross simplification to say that Paige's machine was imitating manual typesetting whereas the Linotype wasn't. Both machines work by moving letter blocks into rows, and the letters have to be sorted.
Evidently, what the Linotype did better was:
- Linotype characters are negatives, made of brass. Brass is hard and durable. These negatives are cast to positives with molten lead. The lead is melted for reuse after a run of the typesetting. Paige used cast lead pieces, which were more or less permanent. The same letter "A" would be used over and over again in different typesetting jobs. Lead is heavy to move around in the machine as well as soft. Brass allows nicks or slots to be cut in it for easy sorting into bins, but if you do the same with lead, it won't be durable; these features will wear out and cause missorting and jams.
- Paige's system used a complex system for justifying words and filling spaces at the ends of paragraphs and whatnot; it had to calculate and insert spacers. Linotype had clever tricks: special wedge-based expander bars were inserted between words, and then pressure against the bars expanded the sliding wedges to justify an entire line at a time. So in that regard, that's where Linotype deviated from trying to imitate manual typesetting.
- A key difference is that Linotype makes one line at a time, out of brass moulds, with spacers between. This is then cast with molten lead: just one line, called a slug. After a line is cast, the brass moulds can be released and sorted back into bins. The lead slugs are assembled into a page. Paige's system, maybe because of his surname, tried to work more traditionally, typesetting a whole page. That creates a problem because of the limitations of the workspace. If you are doing lines separately, you can have machinery/tooling/jigging above and below the line; there is no consideration for interference with previous or subsequent line of text. This freedom is what enabled the mechanisms for spacing to be developed.
But the thing to note is, that the Linotype changed typesetting work into something more heavily industrial, involving continuous hot metal casting.
Paige and Twain might have been betting on such a change being rejected by the industry, in favor of their solution which was doing the same sort of typesetting.
Linotype machines were revolutionary. The New York Times used them for 127 years until 1978 and this documentary shows them in action for the last time:
Lineotype they use lead letters. They use an alloy. There was a lot of lead, but there's also other metals in it because lead is too soft to be useful in a press. The alloy had the interest stream property that it has very low shrinkage when it cooled.
Classic letterpress type is lead, antimony and tin, but I don’t know if the so-called hot lead machines used that particular alloy. People usually just call it all “lead type” though.
Reading about a machine from one hundred and fifty years ago and getting progressively more and more upset that the writing doesn’t give sufficient praise to the real topic of every article, my lovely chat bot
That would in fact be the main argument against humanoid robots in many (most?) applications.
The counterpoint is that what humans already do is exactly what's needed in some cases, making those cases the ideal applications for humanoids.
The Unitype was late to market. Mergenthaler already had the Linotype out when the Unitype shipped. The Unitype was half the price of a Linotype. Unitype machines sold for about 20 years, so it wasn't a total failure. The Paige machine uses a lot more parts and space to do the same job.
Mechanism design skill is very rare. All the good Teletype machines were designed by just two people - Howard Krum and Edward Kleinschmidt. There were competing machines, and they were all much worse. William Burroughs invented the first adding machine that worked reliably, and it was better than all the competitors. Burroughs dominated banking well into the computer era.
The video claims that the big problem with the Unitype that it required not just a keyboard operator, but someone manually justifying the lines at the output end. Linotype figured out automatic justification, using expanding wedges. No need for a second worker.
Plus someone had to feed used type back into the Unitype for sorting and return to inventory. With a Linotype, the matrices with the letter forms never leave the machine; they are dispensed, set into a line, used for casting, and then immediately recycled back to the magazine for further use. As long as the supply of lead bars ready to melt holds up, you can keep setting type. With ordinary type setting, mechanized or not, you can end up with all your type tied up in pages waiting to be printed.
So the real problem with the Unitype was that it wasn't labor-saving enough. Despite that, it powered many small country newspapers for years.
[1] https://youtu.be/5n5JQrN8qx4?t=152
It's similar with LLMs. Compared to a bespoke piece of software for the task they are incredibly inefficient, yet they are extremely useful because they can do things where developing that piece of software would require a lot of research.
To see a typecaster which works find a Linotype or Monotype.
https://circuitousroot.com/artifice/letters/press/noncastcom...
It absolutely isn't. Paige was actually the engineer/tinkerer earnestly developing this machine, which really worked. One of his main problems is that he always thought he needed to improve it more before it was ready. He didn't understand "release early and often": that time-to-market matters.
> Twain felt that he had an insider’s perspective and could intuit how others in publishing would respond to the machine. But he was a printer’s devil no longer: he was a famous, millionaire author.
No longer, perhaps, but Twain had been in the printing industry, so he knew a thing or two. From age 13, Twain worked as a typesetter and compositor for newspapers. So even if he overestimated his knowledge of that, it was not simply the conceit of someone cushioned. What he remembered from his past experiences with freely moving type set by hand would have still been relevant at the time he embarked on this thing with Paige. Linotype was not yet in the market.
Even as the Linotype appeared, it was not obvious that it is superior. It is a gross simplification to say that Paige's machine was imitating manual typesetting whereas the Linotype wasn't. Both machines work by moving letter blocks into rows, and the letters have to be sorted.
Evidently, what the Linotype did better was:
- Linotype characters are negatives, made of brass. Brass is hard and durable. These negatives are cast to positives with molten lead. The lead is melted for reuse after a run of the typesetting. Paige used cast lead pieces, which were more or less permanent. The same letter "A" would be used over and over again in different typesetting jobs. Lead is heavy to move around in the machine as well as soft. Brass allows nicks or slots to be cut in it for easy sorting into bins, but if you do the same with lead, it won't be durable; these features will wear out and cause missorting and jams.
- Paige's system used a complex system for justifying words and filling spaces at the ends of paragraphs and whatnot; it had to calculate and insert spacers. Linotype had clever tricks: special wedge-based expander bars were inserted between words, and then pressure against the bars expanded the sliding wedges to justify an entire line at a time. So in that regard, that's where Linotype deviated from trying to imitate manual typesetting.
- A key difference is that Linotype makes one line at a time, out of brass moulds, with spacers between. This is then cast with molten lead: just one line, called a slug. After a line is cast, the brass moulds can be released and sorted back into bins. The lead slugs are assembled into a page. Paige's system, maybe because of his surname, tried to work more traditionally, typesetting a whole page. That creates a problem because of the limitations of the workspace. If you are doing lines separately, you can have machinery/tooling/jigging above and below the line; there is no consideration for interference with previous or subsequent line of text. This freedom is what enabled the mechanisms for spacing to be developed.
But the thing to note is, that the Linotype changed typesetting work into something more heavily industrial, involving continuous hot metal casting.
Paige and Twain might have been betting on such a change being rejected by the industry, in favor of their solution which was doing the same sort of typesetting.
https://www.youtube.com/watch?v=LTiCTFdTd60
> 2) Society uptake of transformative inventions is almost always slower than their proponents expect.
... except for LLMs.
> 3) Transformative technologies succeed by redesigning a task, and usually not by simply trying to reproduce the existing forms of human labor.
... except for LLMs.
Seriously, that’s your best example of that lately? Not, I don’t know, Tesla FSD? Theranos? Bernie Madoff?