postulate 44.3 Einstein field equations

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postulate 44.3: Einstein field equations44.3definition 44.2: Einstein tensor44.2corollary 44.24: Conservation is an integrability condition44.24phenomenon 49.18: Orbital decay of a binary pulsar49.18phenomenon 46.1: phen:gravitational-waves46.1proposition 44.29: Linearized field equations44.29proposition 44.4: Trace-reversed form44.4theorem 49.9: Tolman–Oppenheimer–Volkoff equations49.9theorem 48.5: The Friedmann equations48.5theorem 44.42: The constraint equations44.42definition 13.153: Contractions13.153theorem 44.23: Contracted Bianchi identity44.23theorem 44.33: Lovelock's uniqueness theorem; imported44.33proof : ch:03-einstein-field-equations@proof-13proofequation A.83: eq:app-quad-pbdotA.83proof : ch:08-compact-stars@proof-13proofproof : ch:05-gravitational-wave-theory@prooflink-1proofexperiment : GW150914experime…experiment : The Hulse–Taylor Binary Pulsar (PSR B1913+16)experime…theorem 44.27: Newtonian correspondence of the field equations44.27proof : ch:03-einstein-field-equations@prooflink-1proofproposition 44.39: SEC is the attraction condition44.39proof : ch:03-einstein-field-equations@proof-1proofdefinition 44.16: Perfect fluid44.16equation 49.14: eq:compact-efe49.14equation 49.16: eq:compact-perfect-fluid49.16example 49.11: The uniform-density star49.11phenomenon 49.19: Neutron stars reach two solar masses49.19proof : ch:08-compact-stars@proof-8proofequation 48.3: eq:cosmo-flrw-metric48.3equation 48.5: eq:cosmo-perfect-fluid48.5phenomenon 48.17: The expansion is accelerating48.17phenomenon 48.10: A primordial floor of light elements48.10phenomenon 51.6: Acoustic peaks, and a spatially flat universe51.6theorem 48.14: Linear growth of density perturbations48.14proof : ch:07-cosmology@proof-4prooflemma A.630: Codazzi equationA.630lemma A.628: Gauss equation, arbitrary signatureA.628theorem 44.45: Local existence and uniqueness; Choquet-Bruhat; imported44.45theorem 44.46: Maximal globally hyperbolic development; Choquet-Bruhat and Geroch; imported44.46neighborhood truncated

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cites Die Feldgleichungen der Gravitation derived parts/05-general-relativity-cosmology/03-einstein-field-equations.tex:155
depends_on Einstein tensor declared parts/05-general-relativity-cosmology/03-einstein-field-equations.tex:158
depends_on Conservation is an integrability condition declared parts/05-general-relativity-cosmology/03-einstein-field-equations.tex:1058
depends_on Orbital decay of a binary pulsar declared parts/05-general-relativity-cosmology/08-compact-stars.tex:1222
depends_on phen:gravitational-waves declared parts/05-general-relativity-cosmology/05-gravitational-wave-theory.tex:85
depends_on Linearized field equations declared parts/05-general-relativity-cosmology/03-einstein-field-equations.tex:1265
depends_on Trace-reversed form declared parts/05-general-relativity-cosmology/03-einstein-field-equations.tex:179
depends_on Tolman–Oppenheimer–Volkoff equations declared parts/05-general-relativity-cosmology/08-compact-stars.tex:679
depends_on The Friedmann equations declared parts/05-general-relativity-cosmology/07-cosmology.tex:382
depends_on The constraint equations declared parts/05-general-relativity-cosmology/03-einstein-field-equations.tex:1724