equation 27.47 eq:cfs-conic

open in the book · parts/03-classical-mechanics/10-central-forces-statics.tex:1091

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equation 27.47: eq:cfs-conic27.47phenomenon 27.35: Kepler's third law27.35proposition A.666: Both exceptional laws close every bounded orbitA.666proposition 27.34: Eccentricity, energy and semi-major axis27.34proposition 27.39: The Laplace–Runge–Lenz vector is the orbit27.39theorem 27.41: Bertrand27.41equation 27.22: eq:cfs-kepler-second27.22theorem 27.30: Reduction of the two-body problem27.30phenomenon 50.5: Black-hole masses from gravitational waves50.5phenomenon 50.1: Dark companions too massive to be neutron stars50.1phenomenon 50.2: Four million solar masses inside the orbit of a single star50.2proof : ch:10-central-forces-statics@proof-21proofequation A.1053: eq:app-bertrand-indexA.1053proof : app:A-long-proofs@proof-400proofequation 27.32: eq:cfs-effective-potential27.32equation 27.31: eq:cfs-energy27.31proof : ch:10-central-forces-statics@proof-20proofequation 27.48: eq:cfs-eccentricity27.48equation 27.54: eq:cfs-lrl27.54proof : ch:10-central-forces-statics@proof-23proofequation 27.39: eq:cfs-apsidal-angle27.39phenomenon 27.42: Planetary orbits do not close exactly27.42proof : ch:10-central-forces-statics@prooflink-1proof

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typedirectionnode provenancewhere
depends_on Kepler's third law declared parts/03-classical-mechanics/10-central-forces-statics.tex:1215
depends_on Both exceptional laws close every bounded orbit declared appendices/A-long-proofs.tex:32506
depends_on Eccentricity, energy and semi-major axis declared parts/03-classical-mechanics/10-central-forces-statics.tex:1135
depends_on The Laplace–Runge–Lenz vector is the orbit declared parts/03-classical-mechanics/10-central-forces-statics.tex:1436
depends_on Bertrand declared parts/03-classical-mechanics/10-central-forces-statics.tex:1498