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Some good examples?Vanadium 50 said:Commutators first.
Some good examples?Vanadium 50 said:Commutators first.
Demystifier said:Some good examples?
dextercioby said:I would take out the Heisenberg microscope and the sound wave analogy from any textbook.
Of course, this means "symmetries first", and that's anyway the right approach to a consistent narrative of all of theoretical physics. If there is one methodological breakthrough of 20th-century physics then it's Emmy Noether's invariant-theoretical approach to physics!Vanadium 50 said:Commutators first.
The irony is that Heisenberg's historical argument is indeed wrong, and it took Bohr several days of hard persuasion to correct it! We've discussed this several times in the forum.atyy said:Maybe https://books.google.com.sg/books?id=Bn7MaT3X8fkC&source=gbs_navlinks_s
In a way also https://www.amazon.com/dp/0470026790/?tag=pfamazon01-20 which mentions the uncertainty principle in chapter 1, and then derives the uncertainty principle from commutation relations in chapter 2.
Of course it's a bit unfortunate that Heisenberg's historical argument doesn't have that much to do with the usual uncertainty principle, and many textbooks motivate the latter from the former.
fluidistic said:Here's a rather harsh critics of the above mentioned Zettili's book - and also Ballentine's - http://www.famaf.unc.edu.ar/~raggio/QM2/bzt.pdf in the way they treat irreducible spherical tensor operators.
The only reason I see is a somewhat old-fashioned notation.martinbn said:Why not Dirac's book for a first book in QM?