![SOLVED: Starting with the canonical commutation relations for position and momentum [ri, Pi] = ih̄δij and [ri, rj] = [Pi, Pj] = 0, work out the following commutators: [Lz, x] = iħy; [ SOLVED: Starting with the canonical commutation relations for position and momentum [ri, Pi] = ih̄δij and [ri, rj] = [Pi, Pj] = 0, work out the following commutators: [Lz, x] = iħy; [](https://cdn.numerade.com/ask_images/91200537a43b4ed99f8cc82b5ab63cf7.jpg)
SOLVED: Starting with the canonical commutation relations for position and momentum [ri, Pi] = ih̄δij and [ri, rj] = [Pi, Pj] = 0, work out the following commutators: [Lz, x] = iħy; [
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PPT - Chapitre II : Les outils Mathématiques et le formalisme de la PowerPoint Presentation - ID:4738132
![Graphical representation of the commutation relation (10), where we... | Download Scientific Diagram Graphical representation of the commutation relation (10), where we... | Download Scientific Diagram](https://www.researchgate.net/publication/299412630/figure/fig1/AS:669495416877068@1536631554591/Graphical-representation-of-the-commutation-relation-10-where-we-used-100-points-and.png)
Graphical representation of the commutation relation (10), where we... | Download Scientific Diagram
![homework and exercises - Commutation relation for Hamiltonian for fermion and boson - Physics Stack Exchange homework and exercises - Commutation relation for Hamiltonian for fermion and boson - Physics Stack Exchange](https://i.stack.imgur.com/hTV3i.png)
homework and exercises - Commutation relation for Hamiltonian for fermion and boson - Physics Stack Exchange
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