lemma A.708 The disturbance flux vanishes

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lemma A.708: The disturbance flux vanishesA.708equation A.1149: eq:app-fluid-dalembert-general-splitA.1149theorem 7.133: Gauss7.133corollary A.711: The disturbance is a dipole at leading orderA.711proof : app:A-long-proofs@proof-415proofdefinition 7.127: Simple regions7.127remark 7.128: What the derivations below take as given7.128theorem 7.43: Fundamental theorem of calculus, II7.43lemma A.712: The force is a far-field integralA.712lemma A.117: Laplacian in orthogonal coordinatesA.117lemma 44.10: Divergence theorem on (M,g)44.10lemma 31.11: Transport theorem for a material volume31.11lemma 106.86: A shift of a divergent integral leaves a surface term106.86lemma 10.44: Green's identities10.44lemma 10.58: Darboux's equation for spherical means10.58proposition 23.54: The geometrical amplitude diverges23.54proposition 10.57: Energy in a backward cone10.57theorem 16.36: Euler–Lagrange equations for several independent variables16.36theorem 32.6: Evolution of phase volume32.6theorem 30.21: Cauchy's equation of motion30.21proof : ch:05-real-analysis@proof-79prooftheorem A.709: Exterior expansion in solid harmonics; quotedA.709proof : app:A-long-proofs@proof-416proof

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typedirectionnode provenancewhere
depends_on eq:app-fluid-dalembert-general-split declared appendices/A-long-proofs.tex:34295
depends_on Gauss declared appendices/A-long-proofs.tex:34295
depends_on The disturbance is a dipole at leading order declared appendices/A-long-proofs.tex:34370
proves app:A-long-proofs@proof-415 declared appendices/A-long-proofs.tex:34298