Earlier quoted context omitted.
I don't know much about chess engines; do they still use hand-tuned algorithms, or are they more like AlphaZero, where they learn through self-play to beat any/all possible human contenders? I don't believe DeepBlue was automated to that extent, but it may have been. In the latter case, the chess example would tend to support the Bitter Lesson, rather than refute it. I would also be VERY slow to claim that general-pu…
DeepBlue beat Kasparov with essentially raw compute thrown at alpha-beta search. That does support the premise of the bitter lesson in general. But that does not mean the bitter lesson is correctly being applied here . The point is that even if throwing raw compute at a task is better than careful human-crafted algorithms, it's still task-dependent . The current trend with the people blowing hundreds of billions of d…
I see arguments like this all of the time in ML. There is a large branch of statistical theory that can cast some doubt on this.
Stein's paradox: when three or more parameters are estimated simultaneously, there exist combined estimators more accurate on average (that is, having lower expected mean squared error) than any method that handles the parameters separately.
This goes deeply against "common sense", but is mathematically proven, empirically proven, etc.
If you are just taking a chess model vs. an LLM, you are right.
But if you want a chess model, a medical diagnosis model, and customer service chat model, at a high level the intuition of Stein's paradox is that one combined model will get you better performance than three task-specific models.
Most practitioners don't get this because what amounts to graduate-level stats theory is often brushed aside, and we keep relearning it the hard way.