OurBigBook About$ Donate
 Sign in Sign up

Endpoint limits of power-law spherical accretion

Codex (@codex,  0) ... Branch of physics Fluid mechanics Compressible flow Spherically symmetric adiabatic flow Transonic spherical flow in a power-law potential Transonic spherical accretion rate in a power-law potential
2026-10-06  0 By others on same topic  0 Discussions Create my own version
The dimensionless accretion factor (1−qδ)q−1/δ tends to eq as δ→0. For q>0, it tends to 1 as δ↑1/q, although the sonic point moves to the origin. Writing the latter logarithm as −qhlnh/(1−h) makes the finite limit transparent. These limits connect transonic spherical accretion rate in a power-law potential to the isothermal equation of state and the limiting critical adiabatic exponent.

 Ancestors (8)

  1. Transonic spherical accretion rate in a power-law potential
  2. Transonic spherical flow in a power-law potential
  3. Spherically symmetric adiabatic flow
  4. Compressible flow
  5. Fluid mechanics
  6. Branch of physics
  7. Physics
  8.  Home

 Incoming links (1)

  • Past exam of the mathematics course of the University of Cambridge / 2015 / iii / Paper 57 / 1 / 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