The title should probably be: "So you want to learn theoretical physics". While generally little known and appreciated among modern theorists and mathematical physicists, physics is actually an empirical science. In other words, every single section of that reading list is based directly or indirectly on a diverse and sophisticated set of devices and measurement configurations (aka experiments). Also, most progress i…
So you want to learn physics (2021)
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Re: So you want to learn physics (2021)
#72It’s a decent list but thermodynamics is introduced way too late in the list (after modern and quantum wtf) and fluid dynamics and fluid mechanics including aerodynamics is entirely missing. If you have a physics education (I have an engineering education) can you tell me if you can really get a physics degree without bumping into Bernoulli or Navier-Stokes? At least just to see the lay of the land.
Re: So you want to learn physics (2021)
#73Earlier quoted context omitted.
Yes, and I'd take it further. What I'd like to see more of in physics texts is presenting a problem before offering the solution. Too often you get what amounts to a laundry list of techniques and ideas, which are the components to the answers to hard problems, but the student isn't motivated to learn them. If you present the hard problem first, the student may flail around and realize: I need something to help with…
> What I'd like to see more of in physics texts is presenting a problem before offering the solution. Yes. > If you present the hard problem first, the student may flail around and realize: I need something to help with this! Now that they know they need it, and why, you can give them the tool that fits the bill. No. If an instructor deliberately gives a student a problem that they know the student _cannot_ solve, th…
Re: So you want to learn physics (2021)
#74Previous posts, if you want to take a look at the comments there: https://news.ycombinator.com/from?site=susanrigetti.com
So You Want to Learn Physics (2016) - https://news.ycombinator.com/item?id=24088985 - Aug 2020 (124 comments)
So You Want to Learn Physics (2016) - https://news.ycombinator.com/item?id=18374994 - Nov 2018 (122 comments)
So You Want to Learn Physics - https://news.ycombinator.com/item?id=12691963 - Oct 2016 (129 comments)
Re: So you want to learn physics (2021)
#75However, I seem to be interested in a few particular questions about particle physics as a science rather than facts about particle physics. For instance, I am interested in the instruments and methods that physicists use to verify their theoretical claims empirically. I am also interested in how theorists are able to come up with theories so early on, such that they are confirmed by evidence many years later. What are the assumptions that they were able to make? I am curious about where they derived the creativity to be able to bring in so many assumptions together and the come up with their models. Now that I write this, I realize that before theories were validated there were probably competing models.
Therefore, I am not exactly sure I want to study particle physics per se, or whether a book on the history of particle physics will do. I am ok with having a popular understanding of the subject, I mostly want to gain inspiration from following the work of famous scientists.
Re: So you want to learn physics (2021)
#76It’s a decent list but thermodynamics is introduced way too late in the list (after modern and quantum wtf) and fluid dynamics and fluid mechanics including aerodynamics is entirely missing. If you have a physics education (I have an engineering education) can you tell me if you can really get a physics degree without bumping into Bernoulli or Navier-Stokes? At least just to see the lay of the land.
Former theoretical physicist here (quantum gravity). TBH I don't know what Navier-Stokes is.
Re: So you want to learn physics (2021)
#77It’s a decent list but thermodynamics is introduced way too late in the list (after modern and quantum wtf) and fluid dynamics and fluid mechanics including aerodynamics is entirely missing. If you have a physics education (I have an engineering education) can you tell me if you can really get a physics degree without bumping into Bernoulli or Navier-Stokes? At least just to see the lay of the land.
I've noticed before that "physics" as in what is taught for a physics degree has gaps which make little sense to me as a mechanical engineer. Continuum mechanics (including both fluid and solid mechanics) is unfortunately nearly entirely absent aside from some basic things like Hooke's law and Bernoulli's principle. In my view, what's taught for a physics degree is more of a historical accident than a selection of th…
And for that purpose of being an intermediate degree to becoming a physics PhD, Navier-Stokes isn't relevant. You don't use it in most fields that are generating physics PhDs in the 2000s and beyond.
There's only so much time to teach somebody in four years and there are significantly more important things that are also being left out (e.g. more thorough courses on group theory).
Re: So you want to learn physics (2021)
#78Re: So you want to learn physics (2021)
#79A point that's rightfully emphasized by the author: > Solving problems is the only way to understand physics. There's no way around it. This generalizes well to other fields. I don't want to discourage anybody from trying to educate themselves in a difficult field (be it physics or something else), but that's a very common and immediately visible problem with autodidacts. If you haven't worked through enough hard pro…
The reason is that you think you understand what you read, but as Richard Feynman said:
> The first principle is that you must not fool yourself, and you are the easiest person to fool.
You think you understand 90% of what you read, but in reality it's probably only 20-30%. By doing the exercises, at the very least you'll know that you don't know that much. And if you then reread the materials a few pages before, you'll realize that you have skimmed (or worse, skipped) some parts because you mistakenly thought you already understood it.
Another tips from my personal experience: When you're reading a textbook, keep asking in your mind questions with the types of "what if" and "how about," which are sometimes not yet explained in the section you're reading. Also, keep associating what you've recently learned with what you've already known (days ago, years ago).
Be curious and validate that you really understand what you think you understand.
Re: So you want to learn physics (2021)
#80Earlier quoted context omitted.
Totally 100% with this. When younger I thought I could read the material and say "Oh, okay that makes sense I understand this." Only to fail miserably when on a test or somewhere I had to apply what I "knew" and realizing I didn't actually know it. I lean strongly toward autodidacticism and learned that if I could solve problems with the technique then I knew it.
My calculus 1 professor gave the advice that the best way to study is to do every problem in the book, then go and get another book and do every problem in that book, and keep doing that until you look at a problem and know exactly every step to do immediately.