Earlier quoted context omitted.
Maxwell unified electromagnetism into a propagating wave. That was the big leap. Before that, things were disparate. Hertz proved it experimentally, and Heaviside turned it into an engineering discipline.
This is true of the mathematics, but it's worth noting that Faraday had already proposed EM waves ~30 years earlier based on his intuitive understanding.
Why is Maxwell's theory so hard to understand? (2007) [pdf]
71–80 of 130 posts
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#72Earlier quoted context omitted.
>"E&M is far from "simple". It contains special relativity, for starters." A theory (which is just a set of assumed first principles and rules of logic) can be simple but allow you to deduce vast complexity from it. In fact, it is ideal for a theory to be as simple as possible. The "game of life" is not really a theory, but it demonstrates that simple rules can lead to surprising complexity: https://en.wikipedia.org/…
I reflexively downvote the game of life. I have never heard of a single useful application or analogy of “finite automata.” Yes, there are speculations about extremely small Planck lengths, by no new physics has panned out. Finally I am sad that one of the greatest computer scientists and polymaths, Ed Fredkin, got sucked into this. We all have weaknesses.
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#73It's not until now, over 20 years later, that I realize what a magician my E&M prof was. After months of careful development of basic E&M, Maxwell's equations simply fell out. As I recall, it was capacitance that was the impetus. It was as though we had struggled in a dark tunnel for months and suddenly came around a turn and there was light. Not a little, but sheets of daylight and all the equations just fell togeth…
In what ways were they that important later in life?
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#74Interesting. And makes me wonder what else we are missing and misunderstanding, as we waste so much time trying to express the complexity of the world in spoken language rather than math. Not just physics but in sociology, psychology, economics etc. Faraday purely from experiments 30-40 years before Maxwell, intuitively understood electromagnetism. Nobody serious believed it because he didn't have the training to exp…
Spoken language has a lot going for it. I note the featured article and it's discussion are all words not maths. By the way looking at Maxwell's paper it seems awful complicated https://royalsocietypublishing.org/doi/pdf/10.1098/rstl.1865... compared to the modern form of the equations https://ethw.org/w/images/d/d6/Maxwell_image_02.jpg
Are the Geometric Algebra...
∇F = μ₀cJ
..and Differential Form... dF = 0
d⋆F = J
...equivalents post-modern?https://en.wikipedia.org/wiki/Mathematical_descriptions_of_t...
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#75It is unfortunate that Dyson neglects the role of Oliver Heaviside, again. This is in a long tradition of English neglect, ultimately traceable to Heaviside's status as a commoner. Heaviside invented the mathematical tools we still use to understand and teach Maxwell, and most of the important consequences of the theory, but Pupin, Hertz, Marconi, and deForest used his methods and took got the credit. Today Heaviside…
Exactly, one of the main reasons why maxwell is so hard to understand is that everything is expressed using quarternions unlike Heaviside who expressed the equations using the vector notation we see them expressed in today. In reality ‘Maxwell’s’ equations are in fact Heaviside’s.
It can be so much nicer. http://geocalc.clas.asu.edu/pdf/OerstedMedalLecture.pdf
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#76E&M is far from "simple". It contains special relativity, for starters. Also it is incompatible with thermodynamics: solving this problem is why Planck invented quantum mechanics. Also point charges have infinite energy: this problem leads to renormalization theory. Also it introduces gauge invariance, an essential but complex part of all modern theories. And lastly, the mathematics of E&M is a big step up from Newto…
E&M is simple in the sense that the equations that govern the relationship between the charge distribution and the electromagnetic field are quite simple. And the equations governing how charges move in an electromagnetic field are quite simple. I think this is what Dyson has in mind. Understanding the implications and limitations of those equations is not simple at all. An even more blatant difficulty with E&M, rela…
or are you referring to the fact that mathematically speaking the system of differential equations is indeterministic due to mathematically perfectly valid advanced potentials? in this case I agree that there may be much more to learn from the Maxwell equations, and I have no qualms with naming this feature (highly) schizophrenic.
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#77Earlier quoted context omitted.
> Quaternions are not a "model of vectors. I dont think I agree. Yes they are not the Gibbsian vector but they are a pretty damn good model of what we want to model as vectors. Its already a little closer to geometric algebra / calculus than Gibbsian vectors. Its a pity that Grassman and Clifford's work gained attention much later. Once javascript is out of the bag one cant do much about it. Thats how I feel about Gi…
I think geometric algebra is a very cool and elegant approach as well, but it has not yet proved useful or valuable to working engineers. If we want to compare to programming languages, perhaps Haskell vs. C. One is beautiful and elegant, the other is down to earth and conceptually simple for "normal" people. One is primarily used by academics and researchers, the other is used to build the world. Both are admirable.
The people who value it are those who must deal concretely with the details of the model on a daily basis: computer programmers working in graphics, computer vision, robotics, physical simulation, ...
It doesn’t do all that much for many pure mathematicians who are happy to hand-wave away the fine details content with the knowledge that the languages can be proven equivalent by someone else, just like it doesn’t do much for the type of engineers who just use someone else’s software for their work.
Of course, the current mess is a major point of pain/confusion for the generations of undergraduates studying vector calculus. But they should go through the same hazing ritual the rest of us did, right? It’s only fair.
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#78Earlier quoted context omitted.
Yes, they operate on the same objects. The main operations on differential forms are the exterior derivative d and the wedge product f /\ g. These are independent of the metric. If you add a metric you get one extra operation called the Hodge star ⋆, which is a prefix operator, so it operates as ⋆f. Alternatively, if you have a metric on your space you can define the geometric algebra derivative D and the geometric p…
Is it possible to work with geometric algebra effectively without a metric using some more complicated construction?
http://geocalc.clas.asu.edu/pdf-preAdobe8/PGwithCA.pdf
http://geocalc.clas.asu.edu/pdf-preAdobe8/DLAandG.pdf
etc.
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#79It is unfortunate that Dyson neglects the role of Oliver Heaviside, again. This is in a long tradition of English neglect, ultimately traceable to Heaviside's status as a commoner. Heaviside invented the mathematical tools we still use to understand and teach Maxwell, and most of the important consequences of the theory, but Pupin, Hertz, Marconi, and deForest used his methods and took got the credit. Today Heaviside…
Exactly, one of the main reasons why maxwell is so hard to understand is that everything is expressed using quarternions unlike Heaviside who expressed the equations using the vector notation we see them expressed in today. In reality ‘Maxwell’s’ equations are in fact Heaviside’s.
https://en.wikipedia.org/wiki/Nabla_symbol#History
Also curious, which of Maxwell's texts you are referencing?
Re: Why is Maxwell's theory so hard to understand? (2007) [pdf]
#80It is unfortunate that Dyson neglects the role of Oliver Heaviside, again. This is in a long tradition of English neglect, ultimately traceable to Heaviside's status as a commoner. Heaviside invented the mathematical tools we still use to understand and teach Maxwell, and most of the important consequences of the theory, but Pupin, Hertz, Marconi, and deForest used his methods and took got the credit. Today Heaviside…
Exactly, one of the main reasons why maxwell is so hard to understand is that everything is expressed using quarternions unlike Heaviside who expressed the equations using the vector notation we see them expressed in today. In reality ‘Maxwell’s’ equations are in fact Heaviside’s.