Earlier quoted context omitted.
The goal of physics isn't to produce video games -- that a video game can generate a frame using unphysical formulae and unphysical processes (eg., rasterisation) does not invalidate physics. There's linguistics which produces descriptive theories of the practice of language. There's "computational linguistics" which aims to build discrete algorithmic models of language. Both of these are interested in explanations o…
That's like saying that it's not astronomy if I'm using a radio telescope, only optical telescopes are real astronomy. It makes zero sense. The tools are irrelevant. We don't have physics with and without ml journals. It's like saying AlphaFold isn't biology because it uses ml. It's absurd One goal of linguistics is to produce an account of how language works. If you understand how something works you can reproduce i…
But insofar as we're talking about LLMs, and most products you can use, we're talking about an engineering use. Engineers build systems that "perform" as you say explanatory accuracy is not a kind of engineering performance.
It would equally well be said that, for a video game studio, "the more physicists I fired, the more the games perform better" -- for, of course, physicists have never studied 'making a video-game image convincing', and their techniques are best run on supercomputers, since they'd build explanatory simulations with explanatory accuracy. Video game developers do not do this. I have developed video games also, so I know.
Convincingly placing pixels on a screen as-if governed by the laws of physics does not require actually simulating them. It requires generating frames from a "point of view" that never expose the absense of real physics, or approximations thereof. The world isnt made of triangles, and you cannot clip thru solid objects.
The goal of a person making an LLM is similar to the goal of a video game developer, these are engineering goals: to give a user an experience which they will pay for. Now, a 2d 80s video-game has more actual physics in it than an LLM has models of language use, but still, this is irrelevant to the goals of these creators.
A linguist could analyse an LLM as the conditional probability structure of the english language, as captured largely recent electronic texts -- but this structure is partly what precisely linguists and others are trying to explain.
This is why all curve-fitting to historical data isn't in itself science: it is a restatement of the very target of explanation, the data. The job of scientific fields is to explain that curve.
Its explotation by engineers is explanation-free. It isnt a science, and replaces no science.