Earlier quoted context omitted.
There's a distinction between "mathematical proof" and "empirical proof". Physicists are certainly good at empirical proof, but I think the 'appeal to intuition' complaint was aimed at the mathematical side (ie. the Maths in Physics isn't very rigorous). As a former Physicist and current Computer Scientist, I would agree with that complaint (although our use of empirical evidence is FAR below that in Physics). For ex…
That "intuition" is what brought us Special and General Relativity "the Maths in Physics isn't very rigorous" Well, of course it isn't, because of the physical limitations. You can't expect to get Newton's second law and make it work with any kind of mathematical object. (if that's what you mean) > In Physics, there's just "=" Scalar equality? Vector equality? Magnitude equality? Also leptons are 'equal' following th…
Yes. Intuition is a good thing. It just shouldn't be relied on for proofs. To compare, Mathematicians followed their intuitions to bring us all kinds of results (eg. ). It's a good thing. It just shouldn't be used to prone to making mistakes when but shouldn't be relied on for (Mathematical) proof.
> You can't expect to get Newton's second law and make it work with any kind of mathematical object.
That's not rigour, that's generality. For an example of rigour, compare the treatment of (infinitesimal) calculus in Physics and in pure Mathematics (eg. see http://en.wikipedia.org/wiki/Calculus#Foundations ).
>> In Physics, there's just "="
> Scalar equality? Vector equality? Magnitude equality?
I would say the first two are "instances" of the same principle (in the same way that, for example, intensional equality can be "instantiated" for integers, arrays, matrices, etc.). Magnitude equality composes the absolute value operation with "the" equality operation, so I would call it a shorthand rather than a distinct equality principle.
> Also leptons are 'equal' following the Pauli exclusion principle?
What an excellent example of a non-rigorous statement ;) (ie. what is your model of leptons?)
For reference, some of the examples I mentioned are described at http://ncatlab.org/nlab/show/equality