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* R.D. Mattuck: A Guide to Feynman Diagrams in the Many-body Problem | * R.D. Mattuck: A Guide to Feynman Diagrams in the Many-body Problem | ||
* For the derivation of the Feynman rules for a given theory see section 2 of [[http://cds.cern.ch/record/186259/|Diagrammar]] by Veltman and 'tHooft | * For the derivation of the Feynman rules for a given theory see section 2 of [[http://cds.cern.ch/record/186259/|Diagrammar]] by Veltman and 'tHooft | ||
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+ | Take note that the usage of Feynman diagrams is not limited to Quantum Mechanics. See: | ||
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+ | * A. Thorndike, “Using Feynman diagrams to solve the classical harmonic oscillator,” Am. J. Phys. 68 (2), 155-159 (2000) | ||
+ | * R. Penco and D. Mauro, “Perturbation theory via Feynman diagrams in classical mechanics,” hep-th/0605061. | ||
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<tabbox Abstract> | <tabbox Abstract> | ||
- | <note tip> | + | * [[https://arxiv.org/abs/math/0406251|Feynman Diagrams for Pedestrians and Mathematicians]] by M. Polyak |
- | The motto in this section is: //the higher the level of abstraction, the better//. | + | |
- | </note> | + | |
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