equation 52.2 eq:stellar-hydrostatic

open in the book · parts/05-general-relativity-cosmology/11-stellar-structure-nucleosynthesis.tex:50

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equation 52.2: eq:stellar-hydrostatic52.2phenomenon 52.12: The mass–luminosity relation52.12theorem 52.6: Lane–Emden equation52.6theorem 52.10: Schwarzschild criterion52.10theorem 52.2: Virial theorem for a self-gravitating sphere52.2equation 52.17: eq:stellar-radiative-gradient52.17proposition 52.1: Hydrostatic equilibrium of a self-gravitating sphere52.1proposition 52.9: Radiative diffusion52.9phenomenon 52.17: The Hertzsprung–Russell diagram52.17proof : ch:11-stellar-structure-nucleosynthesis@proof-8proofequation 52.1: eq:stellar-mass-continuity52.1equation 52.7: eq:stellar-polytrope-eos52.7proposition 49.3: Lane–Emden form of hydrostatic equilibrium; restated from the stellar-structure chapter49.3proposition 52.19: The Hayashi track is nearly vertical52.19proposition 52.7: Exact solutions52.7proof : ch:11-stellar-structure-nucleosynthesis@proof-4proofproof : ch:11-stellar-structure-nucleosynthesis@proof-7proofphenomenon 52.4: The Sun has shone for billions of years52.4proposition 52.18: Schönberg–Chandrasekhar limit52.18proof : ch:11-stellar-structure-nucleosynthesis@proof-2proof

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depends_on Lane–Emden equation declared parts/05-general-relativity-cosmology/11-stellar-structure-nucleosynthesis.tex:249
depends_on Schwarzschild criterion declared parts/05-general-relativity-cosmology/11-stellar-structure-nucleosynthesis.tex:515
depends_on Virial theorem for a self-gravitating sphere declared parts/05-general-relativity-cosmology/11-stellar-structure-nucleosynthesis.tex:100