Can I Couple Angular Momenta Into One Big One?

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I have three angular momenta l_1,l_2,l_3 which I want to couple into one big one:

L\equiv l_1+l_2+l_3.

Can I just do this by coupling l_1,l_2 into L' and then couple L',l_3 into L?

I would guess that I could equally couple l_2,l_3 into L' and then couple l_1,L' into L and this would give the same result. Correct?
My reason to assume this: the different l_i work on different parts of the system.
 
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That is the correct way to do it, couple two of the angular momenta then couple the third. If memory serves me correctly, this was done by Wigner and also by Racah...Look in Wigners book or Tinkhams book on Group Theory and Quantum Mechanics, it is all there.
 
I've been doing a lot of reading on this subject lately. You are completley correct in stating that you can first add j1 and j2, and then add this to j3. Likewise you can first add j2 and j3 and add this to j1. These product eigenstates are related through the wigner 6J coefficients.
 
Thanks for answering, all! I was quite sure that I was right, but I thought it never hurts to ask. After all, there are no stupid questions (only stupid people )
 
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If we release an electron around a positively charged sphere, the initial state of electron is a linear combination of Hydrogen-like states. According to quantum mechanics, evolution of time would not change this initial state because the potential is time independent. However, classically we expect the electron to collide with the sphere. So, it seems that the quantum and classics predict different behaviours!

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