Anyone who has spent some time with ChatGPT knows that the 'show your work' (plan, outline, draft, etc.) argument is moot, because AI can retroactively produce all of these earlier drafts and plans.
Anyone who has spent some time with ChatGPT knows that the 'show your work' (plan, outline, draft, etc.) argument is moot, because AI can retroactively produce all of these earlier drafts and plans.
Similar to today, when grades are a proxy for ability, but private tutoring puts an average student in the 2% (Bloom's 2σ problem) for that stage, but doesn't boost the student's general intelligence for the next stage. Also, hard work, self-discipline, and focus will increase grades but not GI. (Of course, stidents do learn that specific stage, necessary for the next stage, so this criticism is just for use as a proxy).
We might say what is really be evaluated is the ability to get good grades (duh) - whether through wealth or work.
The same argument can be applied to LLMs. Using they is an important ability... so let's test that. This is the future. Similar to calculators and open-book exams.
I use salt to season my food but I have no idea how salt is mined. I have used log tables books in the past to do math work. Back when I first used these lookup books, I had a shaky understanding of logarithms.
Culinary counterpoint: I recently came across a very entertaining subreddit [0] which collects screenshots of scathing reviews of online recipes in which the reviewer admits having made changes in the recipe which are often clearly the reason for their bad results.
What I'm getting at is that you may not know how salt is mined, but you are certainly aware that sugar and flour are never substitutes for salt, however white and powdery they all may be. You also know that skipping the salt will completely ruin the recipe, but skipping the nutmeg will not. You probably safely assume that you can replace table salt with kosher salt, or table salt with coarse rock salt (provided it will dissolve in cooking). However, you hopefully know that if the recipe calls for kosher salt you may not be able to use iodised table salt instead (if doing a fermentation), and that table salt is not a happy substitute for coarse salt for finishing.
You absolutely do need some sort of basic understanding of a process to carry it out successfully, even when you have the full instructions available or a helper tool, because reality is never fully reflected in theoretical descriptions. That's why you must know the very basics of cooking before following a recipe, the basics of arithmetic before using a calculator, and yes, the basics of critical thinking and background knowledge before productively using an LLM.
[0] https://old.reddit.com/r/ididnthaveeggs/top/?sort=top&t=all
Hopefully he'd also know that 99% of recipes that use kosher salt (presumably because it sounds fancier) will work just fine with with table salt (iodised or not). For most uses the grain size will not make any difference at all and for the remaining ones it is still not essential.
> when I first used these lookup books, I had a shaky understanding of logarithms.
this implies that now you do have an understanding of logarithms. how did you acquire this understanding?
The fear that many here share is that LLMs will make too many people get by without learning anything substantial from the ground up. Take away their LLM access and they're completely useless - at least that's what people are afraid of. Myself I'm on the fence - it was always the case that a certain type of people seek to understand how thinks actually work, and others who just want to apply recipies. These trends will likely make the recipy-appliers at first more powerful. I'm afraid though that soon enough they will be driven out by further automation coming on top.
Not knowing logarithms (a) didn't prevent me from successfully using the log tables books and (b) using the log tables books didn't prevent me from developing a better understanding of logarithms. I expect something similar with happen with GPT based education.
I acquired a deeper understanding of logarithms through a bit of reflection and thought.
The math lessons and teachers didn't help illuminate logarithms in any significant way. They simply rattled off the theory of logarithms and moved on to teaching us how to use them. I had to go out of my way to understand it myself.
Is this any different from a GPT giving you a superficial, regurgitated level of knowledge which you then have to deepen through some effort on your part?
Someone should teach you how logarithms work before giving you a log table. Someone at some point should show you a trigonometric circle before telling you to press the cos button in the calculator to calculate a cosine.
That said, some"one" could be a GPT chatbot. The problem is that you might not know the right question to ask.
ChatGPT might tell you how much salt to use but you'll be screwed when it tells you to use 5 tablespoons for a small steak and you don't have the fundamentals to question it or figure out where it went wrong.
llms are not a source of reliable knowledge as a result. they are knowledge augmented in knowledge cases. So really you are arguing students should read the knowledge base, the "augment" is just a thin conversational summarizing veneer.
Perhaps the experience of symbolic calculators (like mathematica) is informing, since surely, for many years now, students have been able to have it do their homework for them. How do teachers handle that?
\aside Some exams allow calculators and textbooks, and are really hard. Consider: what would an exam assess, where LLMs were allowed?
University would just ban them for maths.
I certainly don't oppose reforming contemporary education, but at the same time, letting it be replaced by something else by default because that thing has exponentially more engagement power invokes Chesterton's Fence. I'm not sure we even know what we're giving up.
Chesterton could certainly not predict the exponential growth in access to tooling and knowledge. And we're only at the start of the curve.
In my opinion we should go back to absolute basics. Forget grades. Focus on health, language, critical thinking, tool usage, and creativity. Skills that are intrinsic to humans.
Make sure education is fun with lots of play. The main advantage humans have over computers is empathy and creativity. I'm not sure AI will ever "get it".
Provide each student to the extent possible a path to follow their own curiosity and talents. Advanced maths, programming, writing, chemistry, physics, etc available for those interested, even at a young age.
But the baseline education should focus on learning the absolute minimum to survive and otherwise maximize fun, creativity, and empathy.
Writing forces me to organize my thoughts, summarize, elaborate, reference other parts of the text, iterate until the pure essence is clear, remove redundancies, and this cements the concepts in my mind.
Merely reading, or worse, hearing, or worse copy/pasting something is only the first part of learning.
It's similar with programming but I would take it even further. I never really understand complicated code until I've written tests and run the debugger and been very close to it.
An AI chat bot is a powerful tool, but if you just use it to generate assignments you won't learn much. Inevitably it will be used both well and poorly and the results will be mixed.
How do you get to that conclusion? I find that if I have a text editor, I can write my thoughts down and then visually put them in order or encase them in a more general concept with ease, which I couldn't do when writing on paper.
But I've noticed that many many many people report the same effect, that there's something about pen-and-paper writing that's more effective for thought-lubrication. I resisted for a long time, but now I too am a convert to this school of thought.
Similarly almost everyone notices the downside: it's easier to reorder, reorganize, cross-link, etc, those thoughts, in a text editor (to say nothing of more sophisticated software tools). Some people have systems for doing complicated things with paper that they say mitigates this downside, but I am not currently one of them.
I guess it's possible that your brain just doesn't have this pattern in it. (That is, the pattern of finding pen-and-paper more effective for getting the thoughts to flow.) I mean, for all I know, maybe the huge silent majority doesn't have this pattern.
In my personal experience, a helpful feature of pen and paper is that it is less effective than keyboards, it takes me more time and focus to write things down. Maybe this gives the rest of my brain more time to catch up and understand the things that I am writing.
Written text is also less efficient when it comes to searching. This forces me to organize my thoughts better because I know I won't be able to CTRL+F random keywords later.
But writing enables arrows, lines, crossing-out, small-text notes, circling, variable pressure, colour, etc. Richer than ordering/indenting text. Also higher contrast.
Some of it may be just ... overload your brain so it cannot think of anything else ..so you stay focussed for lack of choice.
I don't write code on paper for (probably) obvious reasons, and I tend to write essays in a text editor although I also enjoy the act of writing on paper in that situation.
Personally, I find while the computer provides powerful writing tools, it also provides powerful distractions.
Maybe you get notifications you just quickly want to check, that slack message from the boss could be urgent. Maybe you decide to just check you're using that obscure word right, or to research a detail for your writing and an hour you haven't written the number of pages you set as your goal. Or maybe sitting in your netflix-watching chair looking at your netflix-watching screen just doesn't put you in the right mindset.
I remember my mother once doing the opposite: she wrote a long letter on the computer, so she could edit and re-write until she was happy with it, then printed it out and copied it by hand, for the personal touch of a hand-written letter (a peacemaking letter to a relative).
If you cannot organize your thoughts, explain your reasoning, etc. then you’re not going to get very far leveraging an LLM. Sure, it’ll spit out a book report, but unless you can explain — in well-structured writing - what you’re looking for, you’re not going to get what you need for the vast majority of writing assignments.
I suffered through writing classes for years and it made me hate writing.
It was only when I started journaling that I started liking it, and liking that I got better at it.
Is it worth making students better at writing if it means as adults they'll not want to write again?
Organizing and arguing your own thought would be a good test. I think an assisting tool could still be reasonable - choosing between different organizations. Though it's unclear how to assess for original thought - the only such "essays" I know of are PhD theses.
People said similar about log tables and slide rules. And they were right - something was lost (e.g. the sense of nearby solutions). Yet here we are.
There is one legal problem with the AI-student pair: the student doesn't own the copyright on what was produced with the AI. Meaning, any work submitted by the student that was at least partially generated by an AI is legally not 100% produced by the student.
So the comparison with an open-book exam or using a calculator doesn't hold: if I search for information in a book, or use a calculator to compute a number, and make my own report in the end, I own the resulting product. I'm the sole author of that product. If I use ChatGPT, ChatGPT is the co-author of my work.
So, using ChatGPT is the equivalent of calling your dad during the exam and ask him to answer the questions for you. Is that really what we want to evaluate?
Still, learning to calculate without using a calculator and learning to write without using an LLM are in themselves useful skills that can improve the thinking process, so both should be taught.
If I ask ChatGPT "i need to compute 12 * 55. Can you help me?" I get the following result:
"To compute 12 multiplied by 55, you simply multiply the two numbers together:
12 * 55 = 660
So, 12 multiplied by 55 equals 660."
I don't own the copyright on that paragraph. Nobody does. It's public domain. Meaning, I'm legally not the author of that work. If I give that to my teacher, I submit something I'm not the author of. It's legally the same as copy-pasting a block of text from a book or from the web and pretending I wrote it. That's not something teachers want to evaluate. In fact, not only will I fail my exam, but I'm also legally in trouble.
Now, if I take ChatGPT's output and make my own content out of it, for instance rephrasing it as "according to ChatGPT, the result of 12 multiplied by 55 is 660", then it's my own work again, and ChatGPT was just a source.
As a teacher, I cannot accept answers that are not produced by students. Whether they are produced by dad, by a domain expert who wrote a book, by wikipedia authors or by ChatGPT. But I can accept personal works that were inspired by those sources. Big, big difference.
And nobody is ever in "legal trouble" for a copyright violation in a typical school assignment... because unless the student work is publically published, the owner of the copyright is never going to know what you turned into your teacher. It's a tree falling in the forest, with nobody present to hear it.
If I'm asking you "write a program that solves this problem", or "write an essay about that topic", you can certainly find a solution online that has a very permissive licence letting you use it any way you want. Good for you, but that's still not your own work and will potentially put you in deep trouble if you use it. Ditto with anything produced by ChatGPT: not your work. You don't own that. You can write "according to ChatGPT, ..." (although you probably won't impress the teacher with that), or you can get inspiration from the output to produce your own work, but not use it as is and pretend you did it.
> And nobody is ever in "legal trouble" for a copyright violation in a typical school assignment... because unless the student work is publically published, the owner of the copyright is never going to know what you turned into your teacher.
Many univs automatically runs a plagiarism-checker on anything submitted by students. Sometimes one of them gets caught. In France, that's enough to be, worse case scenario (although that rarely happens), banned from taking any public exam or work for the government, for your whole life.
Consider a film student who uses a modern pop song without permission in their student film, which they credit in the movie credits. No plagiarism has occurred-- but they did violate the copyright of the band's publisher.
Consider a student who finds an essay written in 1893 and passes the words in the essay off as their own- plagiarism has occurred but there is no copyright violation as works from 1893 are public domain.
Isn't that a good thing? Grades shouldn't be an IQ test. It's pretty much meaningless if you're not significantly below average or using it for super specialized tasks. Getting good grades means you can sit your ass in a seat (be it at a public library or a private tutor) and learn enough to do well on some task.
Yes, good grades doesn't mean you would be necessarily be good at some task. But it shows you can succeed in something that requires effort.
If you become an expert in performing via LLM, the LLM capabilities and underlying data represent the limits of knowledge creation.
To your point about calculators and open-book exams, part of the challenge is for educators to rethink learning objectives and assessments in terms of outcomes that are outside the scope of LLMs.
We need kids to know how to write, and how to elaborate their thoughts, for when they will need to do so in life.
The LLMs can't guess what points you want to make to your boss or to your colleagues about the complex professional context you are in.
The problem is that they have none of the general knowledge themselves and their brain is exclusively optimised to seek out openAI interfaces for guidance. They'll be a drone, an AI zombie.
Can you fake it with an LLM for a while? Sure. But you hit a point where you need to know the right things to prompt with, and how to evaluate its output.
If it is reasonable, then the problem is likely the form of evidence and not its requirement se de
Ruining public schooling by under funding and having expensive private education for those that can afford it is just the neoliberal agenda. If there were no private schools, if they were illegal, along with home schooling -- not saying they should be, but if they were -- the wealthy would pump funds into the public schooling system before you can say "fuck you got mine". (Kinda like no private bunkers would mean a sudden interest in mitigating climate change globally and for everyone, hah)
I only meant to acknowledge the societal investment, not imply private education
LLM's, the internet, even physical books all tend to deal primarily with subjective matters that can be plagiarized. They're not fundamentally different from each other; the more advanced technologies like search engines or LLM's simply make it easier to find relevant content that can be copied. They actually remove the need for students to think for themselves in a way calculators never did. LLM's just make it so easy to commit plagiarism that the system is starting to break down. Plagiarism was always a problem, but it used to be rare enough that the education system could sort-of tolerate it.
It pains me (though that's my problem) to see people pull out a calculator (worse, a phone) to solve e.g., a multiplication of two single digit numbers.
Synthesizing an original thesis, like what people are supposed to do in writing essays, is totally different. It's a fundamental life skill people will need in all sorts of contexts, and using an LLM to do it for you takes away your intellectual agency in a way that using a calculator doesn't.
Arithmetic is the "write one sentence" of composition. The ability to think through a series of calculations with real-world context and consequences is the 5-paragraph essay. If you're not competent with the basics, you won't be able to accomplish the more advanced skill. Being tied to a calculator (not merely using, but being unable to not use) takes away intellectual agency in the same way as an LLM-generated essay (though, I'll agree, to a lesser degree).
Sure, once you know how to multiply you don't care about it. But try learning first year CS math without being able to multiply without perfect command of the multiplication table
Fluency in arithmetic isn't something drilled into kids just to be obnoxious, it's foundational to almost all future math skills.
Generally I agree (because the content of modern mathematics is largely abstract), but to nitpick a bit, number theory is part of mathematics too!
Ramanujan and Euler, for example, certainly cared a lot about 'arithmetic', and historically, many parts of mathematics have been just as 'empirical' in terms of calculating things as they've been based on abstract proof.
Copyright protects specific expression, which reproducing is specifically a non goal with LLMs
Once they're done, they submit a one-pager on 3 to 5 subtle / smaller / things they find the most interesting or counter intuitive. At the end of the semester, I intend to share all their one-pagers among all of their classmates and keep an open-book test on it. Let's see how that pans out.
This is a solution (evidently imperfect and arguably obsolete) the education system uses to address the problem of proving the fact a student has gained desirable knowedge and experience. It can and should be deprecated altogether once we come up with a better solution to this. And we certainly can. For example, we can invent ana AI which would interview a student/candidate a way, proven (by numerous comparisions to their actual performance measured with other methods) to estimate their level of expertise and capability with sufficient degree of precision.
In case such a new way proves reliable and efficient we can even decouple expertise measurement and actual education on a mass scale then - let people gain knowledge whatever an alternative way they want and can, then just come and pass the test to receive an accredited degree. This way we can automate production of unlimited stream of certified experts.