Chandrasekhar limit

E9076

The Chandrasekhar limit is the maximum mass a white dwarf star can have before collapsing under its own gravity, playing a crucial role in determining its ultimate fate as a neutron star or black hole.

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AI-generated illustration of Chandrasekhar limit

This AI-generated illustration was produced by black-forest-labs/FLUX.2-dev (1024x1024) from a prompt written by openai/gpt-oss-120b from the entity's label + description.

Prompt

Generate an image of the Chandrasekhar limit (The Chandrasekhar limit is the maximum mass a white dwarf star can have before collapsing under its own gravity, playing a crucial role in determining its ultimate fate as a neutron star or black hole.)

All labels observed (2)

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Statements (48)

Predicate Object
instanceOf astrophysical concept ⓘ
physical limit ⓘ
appliesTo white dwarf ⓘ
appliesUnderAssumption cold white dwarf ⓘ
no significant magnetic field ⓘ
non-rotating white dwarf ⓘ
basedOn Fermi–Dirac statistics ⓘ
quantum mechanics ⓘ
special relativity ⓘ
contrastsWith Oppenheimer–Volkoff limit ⓘ
Tolman–Oppenheimer–Volkoff limit ⓘ
dependsOn electron degeneracy pressure ⓘ
gravitational self-attraction ⓘ
mean molecular weight per electron ⓘ
describes maximum mass of a stable white dwarf ⓘ
determines stability of a white dwarf ⓘ
field astrophysics ⓘ
relativistic astrophysics ⓘ
stellar astrophysics ⓘ
hasApproximateRange 1.38–1.44 solar masses ⓘ
hasApproximateValue 1.4 solar masses ⓘ
hasConsequence gravitational collapse to a neutron star ⓘ
onset of thermonuclear runaway in Type Ia supernovae ⓘ
possible direct collapse to a black hole ⓘ
hasFormula M_ch ≈ 5.83 / μ_e^2 solar masses ⓘ
hasTheoreticalDerivationBy Subrahmanyan Chandrasekhar ⓘ
influences formation of neutron stars ⓘ
formation of stellar-mass black holes ⓘ
isUpperBoundFor mass of carbon–oxygen white dwarfs ⓘ
mass of helium white dwarfs ⓘ
mass of oxygen–neon–magnesium white dwarfs ⓘ
measuredIn solar mass ⓘ
namedAfter Subrahmanyan Chandrasekhar ⓘ
publishedIn Astrophysical Journal ⓘ
relatedConcept Eddington limit ⓘ
Jeans mass ⓘ
Oppenheimer–Volkoff limit ⓘ
relatedTo Pauli exclusion principle ⓘ
relatesTo degenerate matter ⓘ
equation of state of electron-degenerate matter ⓘ
relevantTo Type Ia supernova ⓘ
accreting white dwarfs ⓘ
binary star evolution ⓘ
thresholdFor collapse of a white dwarf ⓘ
usedIn cosmological distance measurements via Type Ia supernovae ⓘ
models of stellar evolution ⓘ
supernova explosion models ⓘ
yearProposed 1930 ⓘ

How these facts were elicited

Referenced by (6)

Full triples — surface form annotated when it differs from this entity's canonical label.

Subrahmanyan Chandrasekhar → knownFor → Chandrasekhar limit ⓘ
Oppenheimer–Volkoff limit → relatedTo → Chandrasekhar limit ⓘ
Oppenheimer–Volkoff limit → distinguishedFrom → Chandrasekhar limit ⓘ
Oppenheimer–Volkoff limit → greaterThan → Chandrasekhar limit for white dwarfs ⓘ
linked to: Chandrasekhar limit
neutron star hypothesis → relatedTo → Chandrasekhar limit ⓘ