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{| class="Chap5A" style="margin-right: auto; margin-left: 230px; border-style: solid; border-width: 3px; border-color: black" | {| class="Chap5A" style="margin-right: auto; margin-left: 230px; border-style: solid; border-width: 3px; border-color: black" | ||
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! style="height: 150px; width: 150px; background-color:#ffeeee; border-right:2px dotted black; " |[[ | ! style="height: 150px; width: 150px; background-color:#ffeeee; border-right:2px dotted black; " |[[SSC/Stability/InstabilityOnsetOverview#Yabushita.27s_Insight_Regarding_Stability|Yabushita's<br />Analytic Sol'n<br />for<br />Marginally Unstable<br />Configurations<br />(1974)]] | ||
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! style="height: 150px; width: 310px;"|<table border="0" cellpadding="2" align="center"> | ! style="height: 150px; width: 310px;"|<table border="0" cellpadding="2" align="center"> | ||
<tr> | <tr> | ||
<td align="center"> | <td align="center"> | ||
<math> | <math>\sigma_c^2 = 0 \, , ~~~~\gamma_\mathrm{g} = 1</math> | ||
</td> | </td> | ||
</tr> | </tr> | ||
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<math> | <math>x = 1 - \biggl( \frac{1}{\xi e^{-\psi}}\biggr) \frac{d\psi}{d\xi} </math> | ||
</td> | </td> | ||
</tr> | </tr> | ||
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{| class="Chap5B" style="margin-right: auto; margin-left: 75px; border-style: solid; border-width: 3px; border-color: black" | {| class="Chap5B" style="margin-right: auto; margin-left: 75px; border-style: solid; border-width: 3px; border-color: black" | ||
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! style="height: 150px; width: 150px; background-color:#ffff99; border-right:2px solid black;" |[[ | ! style="height: 150px; width: 150px; background-color:#ffff99; border-right:2px solid black;" |[[SSC/Stability/Polytropes#Radial_Oscillations_of_Polytropic_Spheres|<b>Polytropes</b>]] | ||
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! style="height: 150px; width: 620px; text-align:center; border-right:2px dashed black;" |<div align="center">{{ | ! style="height: 150px; width: 620px; text-align:center; border-right:2px dashed black;" |<div align="center">{{ Math/EQ_RadialPulsation02 }}</div> | ||
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! style="height: 150px; width: 150px; border-right:2px dotted black;" |[[ | ! style="height: 150px; width: 150px; border-right:2px dotted black;" |[[SSC/Stability/n3PolytropeLAWE#Radial_Oscillations_of_n_.3D_3_Polytropic_Spheres|Isolated<br />n = 3<br />Polytrope]] | ||
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! style="height: 150px; width: 150px; border-right:2px dashed black;" |[[File:Schwarzschild1941movie.gif|140px|link= | ! style="height: 150px; width: 150px; border-right:2px dashed black;" |[[File:Schwarzschild1941movie.gif|140px|link=SSC/Stability/n3PolytropeLAWE#SchwarzschildMovie|Schwarzschild's Modal Analysis]] | ||
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! style="height: 150px; width: 150px;" |[[ | ! style="height: 150px; width: 150px;" |[[SSC/Stability/n5PolytropeLAWE#Radial_Oscillations_of_n_.3D_5_Polytropic_Spheres|Pressure-Truncated<br />n = 5<br />Configurations]] | ||
|} | |} | ||
<br /> | <br /> | ||
{| class="Chap5C" style="float:right; margin-left: 150px; border-style: solid; border-width: 3px; border-color:black;" | {| class="Chap5C" style="float:right; margin-left: 150px; border-style: solid; border-width: 3px; border-color:black;" | ||
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! style="height: 150px; width: 150px;"|[[ | ! style="height: 150px; width: 150px;"|[[Appendix/Ramblings/NonlinarOscillation#Radial_Oscillations_in_Pressure-Truncated_n_.3D_5_Polytropes|''Exact''<br />Demonstration<br />of<br />B-KB74<br />Conjecture]] | ||
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! style="height: 150px; width: 150px; border-left:2px dashed black;"|[[ | ! style="height: 150px; width: 150px; border-left:2px dashed black;"|[[SSC/VariationalPrinciple#Directly_to_n_.3D_5_Polytropic_Configurations|''Exact''<br />Demonstration<br />of<br />Variational<br />Principle]] | ||
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! style="height: 150px; width: 150px; background-color:#ffff99; border-left:2px solid black;"|Pressure-Truncated<br />n = 5<br />Polytropes | ! style="height: 150px; width: 150px; background-color:#ffff99; border-left:2px solid black;"|Pressure-Truncated<br />n = 5<br />Polytropes | ||
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{| class="Chap5D" style="margin-right: auto; margin-left: 230px; border-style: solid; border-width: 3px; border-color: black" | {| class="Chap5D" style="margin-right: auto; margin-left: 230px; border-style: solid; border-width: 3px; border-color: black" | ||
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! style="height: 150px; width: 150px; background-color:#ffeeee; border-right:2px dotted black; " |[[ | ! style="height: 150px; width: 150px; background-color:#ffeeee; border-right:2px dotted black; " |[[SSC/Stability/InstabilityOnsetOverview#Analyses_of_Radial_Oscillations|Our Analytic Sol'n<br />for<br />Marginally Unstable<br />Configurations<br />(2017)<br /><font color="green" size="+2">♥</font>]] | ||
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! style="height: 150px; width: 465px;"|<table border="0" cellpadding="2" align="center"> | ! style="height: 150px; width: 465px;"|<table border="0" cellpadding="2" align="center"> | ||
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! style="height: 150px; width: 150px; background-color:#ffff99; border-right:2px solid black; " |<b>BiPolytropes</b> | ! style="height: 150px; width: 150px; background-color:#ffff99; border-right:2px solid black; " |<b>BiPolytropes</b> | ||
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! style="height: 150px; width: 150px; background-color:#ffeeee; border-right:2px dashed black; " |[[ | ! style="height: 150px; width: 150px; background-color:#ffeeee; border-right:2px dashed black; " |[[SSC/Stability/MurphyFiedler85|Murphy & Fiedler<br />(1985b)]]<br /><br />(n<sub>c</sub>, n<sub>e</sub>) = (1,5) | ||
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! style="height: 150px; width: 150px; " |[[ | ! style="height: 150px; width: 150px; " |[[SSC/Stability/BiPolytropes#Marginally_Unstable_Bipolytropes|Our<br />Broader<br />Analysis]] | ||
|} | |} | ||
Revision as of 16:27, 31 July 2021
Tiled Menu
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Context
| Global Energy Considerations |
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| Principal Governing Equations (PGEs) |
Continuity | Euler | 1st Law of Thermodynamics |
Poisson |
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| Equation of State (EOS) |
Ideal Gas | Total Pressure Bond, Arnett, & Carr (1984) |
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Spherically Symmetric Configurations
| (Initially) Spherically Symmetric Configurations |
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| Structural Form Factors |
Free-Energy of Spherical Systems |
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| One-Dimensional PGEs |
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Equilibrium Structures
| 1D STRUCTURE |
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| Scalar Virial Theorem |
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| Hydrostatic Balance Equation |
Solution Strategies |
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| Uniform-Density Sphere |
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| Isothermal Sphere |
via Direct Numerical Integration |
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| Isolated Polytropes |
Lane (1870) |
Known Analytic Solutions |
via Direct Numerical Integration |
via Self-Consistent Field (SCF) Technique |
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| Zero-Temperature White Dwarf |
Chandrasekhar Limiting Mass (1935) |
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| Virial Equilibrium of Pressure-Truncated Polytropes |
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| Pressure-Truncated Configurations |
Bonnor-Ebert (Isothermal) Spheres (1955 - 56) |
Embedded Polytropes |
Equilibrium Sequence Turning-Points ♥ |
Turning-Points (Broader Context) |
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| Free Energy of Bipolytropes (nc, ne) = (5, 1) |
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| Composite Polytropes (Bipolytropes) |
Milne (1930) |
Schönberg- Chandrasekhar Mass (1942) |
Murphy (1983) Analytic (nc, ne) = (1, 5) |
Eggleton, Faulkner & Cannon (1998) Analytic (nc, ne) = (5, 1) |
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Stability Analysis
| 1D STABILITY |
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| Variational Principle |
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| Radial Pulsation Equation |
Example Derivations & Statement of Eigenvalue Problem |
(poor attempt at) Reconciliation |
Relationship to Sound Waves |
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| Uniform-Density Configurations |
Sterne's Analytic Sol'n of Eigenvalue Problem (1937) |
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| Pressure-Truncated Isothermal Spheres |
via Direct Numerical Integration |
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| Yabushita's Analytic Sol'n for Marginally Unstable Configurations (1974) |
|
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| Polytropes | Isolated n = 3 Polytrope |
Pressure-Truncated n = 5 Configurations |
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| Exact Demonstration of B-KB74 Conjecture |
Exact Demonstration of Variational Principle |
Pressure-Truncated n = 5 Polytropes |
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| Our Analytic Sol'n for Marginally Unstable Configurations (2017) ♥ |
|
|---|
| BiPolytropes | Murphy & Fiedler (1985b) (nc, ne) = (1,5) |
Our Broader Analysis |
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See Also
|
Appendices: | VisTrailsEquations | VisTrailsVariables | References | Ramblings | VisTrailsImages | myphys.lsu | ADS | |


