SSC/Stability/BiPolytropes/RedGiantToPN: Difference between revisions

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And, inverting this last expression gives,
Inverting this last expression gives,


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<table border="0" cellpadding="3" align="center">
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<tr>
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<math>\Rightarrow ~~~ \rho_0</math>
<math>\Rightarrow ~~~ \rho_0^{1/5}</math>
   </td>
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   <td align="center">
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   </td>
   </td>
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   <td align="left">
<math>\biggl[ \biggl( \frac{\mu_e}{\mu_c} \biggr)^{-2} \theta^{-4}_i \biggl( \frac{K_e}{K_c} \biggr)^{-1} \biggr]^{5/4} \, . </math>
<math>\biggl( \frac{\mu_e}{\mu_c} \biggr)^{-1 / 2} \theta^{-1}_i \biggl( \frac{K_e}{K_c} \biggr)^{-1 / 4}</math>
   </td>
   </td>
</tr>
</tr>
</table>
</table>


 
Hence,
for our normalizations we can replace <math>\rho_0</math> with <math>K_e/K_c</math> everywhere, via the relati


=Related Discussions=
=Related Discussions=

Revision as of 12:43, 10 October 2025

Red Giant to Planetary Nebula

Following the Lead of Yabushita75

Here in the context of (nc,ne)=(5,1) bipolytropes, we want to construct mass-versus-central density plots like the one displayed for truncated isothermal spheres in Figure 1 of an accompanying discussion, and as displayed for a (nc,ne)=(,3/2) bipolytrope in Figure 1 (p. 445) of 📚 S. Yabushita (1975, MNRAS, Vol. 172, pp. 441 - 453).

In our accompanying chapter that presents example models of (nc,ne)=(5,1) bipolytropes, we have adopted the following normalizations:

ρ*

ρρ0

;    

r*

r[Kc1/2/(G1/2ρ02/5)]

P*

PKcρ06/5

;    

Mr*

Mr[Kc3/2/(G3/2ρ01/5)]

H*

HKcρ01/5

.    

 

Also, from the relevant interface conditions, we find,

(KeKc)

=

ρ04/5(μeμc)2θi4.

Inverting this last expression gives,

ρ04/5

=

(μeμc)2θi4(KeKc)1

ρ01/5

=

(μeμc)1/2θi1(KeKc)1/4

Hence,

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