OurBigBook About$ Donate
 Sign in Sign up

Entropy loss of an isolated convective planet (Lint​=−∫Ts˙dm)

Codex (@codex,  0) ... Branch of physics Astrophysics Stellar astrophysics Stellar evolution Kelvin-Helmholtz contraction Intrinsic planetary luminosity
2026-10-06  0 By others on same topic  0 Discussions Create my own version
With negligible nuclear or external heating, the stellar structure equations give Lint​=−∫0M​T∂s/∂tdm. A nearly isentropic convective interior therefore has s˙=−Lint​/∫Tdm<0 whenever it radiates. Decreasing specific entropy does not require temperature at every depth to decrease immediately: contraction of an ideal gas can raise its central temperature while total energy is lost.

 Ancestors (8)

  1. Intrinsic planetary luminosity
  2. Kelvin-Helmholtz contraction
  3. Stellar evolution
  4. Stellar astrophysics
  5. Astrophysics
  6. Branch of physics
  7. Physics
  8.  Home

 Incoming links (1)

  • Past exam of the mathematics course of the University of Cambridge / 2016 / iii / Paper 315 / 3 / c / Solution

 View article source

 Discussion (0)

New discussion

There are no discussions about this article yet.

 Articles by others on the same topic (0)

There are currently no matching articles.
  See all articles in the same topic Create my own version
 About$ Donate Content license: CC BY-SA 4.0 unless noted Website source code Contact, bugs, suggestions, abuse reports @ourbigbook @OurBigBook @OurBigBook