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   <li><font color="pink">&clubs;</font> [[PGE/FirstLawOfThermodynamics|1<sup>st</sup> Law of Thermodynamics]]
   <li><font color="pink">&clubs;</font> [[PGE/FirstLawOfThermodynamics|1<sup>st</sup> Law of Thermodynamics]]
   <ol type="A">
   <ol type="A">
     <li>[[Appendix/Ramblings/Radiation/RadHydro|Radiation-Hydrodynamcis]]; Nonadiabatic (optically thick) environments  
     <li><font color="pink">&clubs;</font> [[Appendix/Ramblings/Radiation/RadHydro|Radiation-Hydrodynamcis]]; Nonadiabatic (optically thick) environments  
     </li>
     </li>
   </ol>
   </ol>
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   <ol type="A">
   <ol type="A">
     <li>[[2DStructure/AxisymmetricInstabilities|Axisymmetric Instabilities to Avoid]]; Poincar&eacute;-Wavre theorem</li>
     <li>[[2DStructure/AxisymmetricInstabilities|Axisymmetric Instabilities to Avoid]]; Poincar&eacute;-Wavre theorem</li>
     <li>[[SSC/Structure/BiPolytropes/Analytic1.53|BiPolytrope with <math>(n_c, n_e) = (\tfrac{3}{2}, 3)</math>]]; The parameter, &beta;</li>
     <li>[[SSC/Structure/BiPolytropes/Analytic1.53#BetaDefinition|BiPolytrope with <math>(n_c, n_e) = (\tfrac{3}{2}, 3)</math>]]; The parameter, &beta; &nbsp; &nbsp; &nbsp; <font color="orange">[Chapter has been segmented into 3 Parts]</font></li>
   </ol>
   </ol>
   </li>
   </li>
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   <li><font color="pink">&clubs;</font> [[Apps/SMS|Bond, Arnett, &amp; Carr (1984)]]
   <li><font color="pink">&clubs;</font> [[Apps/SMS|Bond, Arnett, &amp; Carr (1984)]]
   <ol type="A">
   <ol type="A">
     <li>[[SSC/Perturbations|Spherically Symmetric Configurations (Stability &#8212; Part II)]]; Brief summary of Ledoux and Pekeris (1941)
     <li>[[SSC/Perturbations|Spherically Symmetric Configurations (Stability &#8212; Part II)]]; Brief summary of Ledoux and Pekeris (1941) &nbsp; &nbsp; &nbsp; <font color="orange">[Chapter needs to be segmented &hellip;]</font>
     </li>
     </li>
   </ol>
   </ol>
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   <li>[[SSC/Index|SSC Index]]</li>
   <li>[[SSC/Index|SSC Index]]</li>
   <li>[[SphericallySymmetricConfigurations/IndexFreeEnergy|Index to Free-Energy and Virial Analyses]]</li>
   <li>[[SphericallySymmetricConfigurations/IndexFreeEnergy|Index to Free-Energy and Virial Analyses]]</li>
   <li>[[SSCpt1/Virial/PolytropesEmbeddedOutline|Virial Equilibrium of Embedded Polytropic Spheres]] &nbsp; &lArr; &nbsp; Image of free-energy surface</li>
 
   <li>[[SSCpt1/Virial/FormFactors|Structural Form Factors]]</li>
<li>SSCpt1/Virial/&hellip;
  <ol type="A">
   <li>[[SSCpt1/Virial/PolytropesEmbeddedOutline|Virial Equilibrium of Embedded Polytropic Spheres]] &nbsp; &lArr; &nbsp; Tiled menu contains image of free-energy surface</li>
   <li>[[SSCpt1/Virial/FormFactors#Structural_Form_Factors|Structural Form Factors]] &nbsp; &nbsp; &nbsp; <font color="orange">[Chapter has been segmented into 3 Parts]</font> &nbsp; &nbsp; &rArr; &nbsp; &nbsp; See also [[SSC/FreeEnergy/PolytropesEmbedded/Pt2#PTtable|here]]; or [[SSCpt1/Virial#Structural_Form_Factors|original definition]] &nbsp; &nbsp; &rArr; &nbsp; &nbsp; or [[SSC/FreeEnergy/Powerpoint#Structural_Form_Factors|Best]] &nbsp; &nbsp; <b><font color="red">&lArr; &nbsp; &nbsp; Structural Form Factors</font></b></li>
   <li>[[SSCpt1/Virial|Free-Energy of Spherical Systems]]</li>
   <li>[[SSCpt1/Virial|Free-Energy of Spherical Systems]]</li>
  </ol>
</li>
</ol>
</ol>


===Equilibrium Structures===
===Equilibrium Structures===
<ol type="I">
<ol type="I">
   <li>[[SSCpt2/IntroductorySummary|Hydrostatic Balance Equation]]</li>
   <li>SSCpt2 &hellip;
  <ol type="A">
    <li>[[SSCpt2/IntroductorySummary|Hydrostatic Balance Equation]]</li>
   <li><font color="pink">&clubs;</font> [[SSCpt2/SolutionStrategies|Solution Strategies]]</li>
   <li><font color="pink">&clubs;</font> [[SSCpt2/SolutionStrategies|Solution Strategies]]</li>
  </ol>
   <li>[[SSC/SynopsisStyleSheet|Spherical Structures Synopsis]] &nbsp; &lArr; &nbsp; Image of 1<sup>st</sup> page of synopsis</li>
   <li>[[SSC/SynopsisStyleSheet|Spherical Structures Synopsis]] &nbsp; &lArr; &nbsp; Image of 1<sup>st</sup> page of synopsis</li>
   <li><font color="pink">&clubs;</font> <b>Scalar Virial Theorem</b>; subsection of ''Context'' - &sect;VI [[VE#Scalar_Virial_Theorem|(Global Energy Considerations)]]</li>
   <li><font color="pink">&clubs;</font> <b>Scalar Virial Theorem</b>; subsection of ''Context'' - &sect;VI [[VE#Scalar_Virial_Theorem|(Global Energy Considerations)]]</li>
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   <li>[[SSC/Structure/IsothermalSphere|Isothermal Sphere]]</li>
   <li>[[SSC/Structure/IsothermalSphere|Isothermal Sphere]]</li>
   <li><b>Via Direct Numerical Integration</b>; subsection of ''Equilibrium Structures'' - &sect;VI [[SSC/Structure/IsothermalSphere#Our_Numerical_Integration|(Isothermal Sphere)]]</li>
   <li><b>Via Direct Numerical Integration</b>; subsection of ''Equilibrium Structures'' - &sect;VI [[SSC/Structure/IsothermalSphere#Our_Numerical_Integration|(Isothermal Sphere)]]</li>
   <li>[[SSC/Structure/Polytropes|Isolated Polytropes]]</li>
   <li>Polytropic Spheres
  <li><b>Known Analytic Solutions</b>; subsection of ''Equilibrium Structures'' - &sect;VIII [[SSC/Structure/Polytropes#Known_Analytic_Solutions|(Isolated Polytropes)]]</li>
  <ol type="A">
   <li><b>Via Direct Numerical Integration</b>; subsection of ''Equilibrium Structures'' - &sect;VIII [[SSC/Structure/Polytropes#Straight_Numerical_Integration|(Isolated Polytropes)]]</li>
    <li>[[SSC/Structure/Polytropes|Isolated Polytropes]]</li>
   <li><b>Via Self-Consistent Field (SCF) Technique</b>; subsection of ''Equilibrium Structures'' - &sect;VIII [[SSC/Structure/Polytropes#HSCF_Technique|(Isolated Polytropes)]]</li>
    <li>[[SSC/Structure/Lane1870|Lane (1870)]]</li>
    <li>[[SSC/Structure/Polytropes/Analytic|Known Analytic Solutions]] &nbsp; &nbsp; &lArr; &nbsp; &nbsp; See also, [[SSC/Structure/PowerLawDensity|Power-Law Density Distribution]]</li>
    <li>[[SSC/Structure/Polytropes/Numerical#Straight_Numerical_Integration|Via Direct Numerical Integration]]</li>
    <li>[[SSC/Structure/Polytropes/Numerical#HSCF_Technique|Via Self-Consistent Field (SCF) Technique]]</li>
  </ol>
  </li>
  <li>[[SSC/Structure/WhiteDwarfs|Chandrasekhar Limiting Mass (1935)]]</li>
   <li>Pressure-Truncated Configurations
  <ol type="A">
    <li>[[SSC/Structure/BonnorEbert|Bonnor-Ebert (Isothermal) Spheres (1955 - 56)]]</li>
    <li>Embedded Polytropes
      <ol type="1">
        <li>[[SSC/Structure/PolytropesEmbedded|General Properties]]</li>
        <li>[[SSC/Structure/PolytropesEmbedded/n1|Truncated Configurations with n = 1]]</li>
        <li>[[SSC/Structure/PolytropesEmbedded/n5|Truncated Configurations with n = 5]]</li>
        <li>[[SSC/Structure/PolytropesEmbedded/Other|Other]]</li>
      </ol>
    </li>
    <li>[[SSC/Stability/InstabilityOnsetOverview|Equilibrium Sequence Turning-Points]]</li>
    <li>[[SSC/Stability/InstabilityOnsetOverview#Turning_Points_along_Sequences_of_Pressure-Truncated_Polytropes|Equilibrium Sequences of Pressure-Truncated Polytropes]] &nbsp; &lArr; &nbsp; Image of sequences with turning points</li>
    <li>[[Appendix/Ramblings/TurningPoints#Turning_Points|Turning-Points (Broader Context)]]</li>
    <li>[[SSC/Structure/Polytropes/VirialSummary|Virial Equilibrium of Pressure-Truncated Polytropes]] (Summary)
      <ol type="1">
        <li>Free Energy
          <ol type="a">
            <li>[[SSC/FreeEnergy/PolytropesEmbedded|Free Energy Synopsis]]</li>
            <li>[[SSC/FreeEnergy/Powerpoint|Supporting Free-Energy PowerPoint Presentation]]&nbsp; &nbsp; <b><font color="red">&lArr; &nbsp; &nbsp; Excellent Overview!</font></b></li>
          </ol>
        </li>
        <li>Virial Equilibrium of Adiabatic Spheres
          <ol type="a">
            <li>[[SSC/Virial/Isothermal|SSC/Virial/Isothermal]]</li>
            <li>SSC/Virial/Polytropes
              <ol type="i">
<li>[[SSC/Virial/Polytropes/Pt1|Isolated Polytropes]]</li>
<li>[[SSC/Virial/Polytropes/Pt2|Polytropes Embedded in an External Medium]]</li>
              </ol>
            </li>
            <li>SSC/Virial/PolytropesEmbedded/FirstEffortAgain
              <ol type="i">
<li>[[SSC/Virial/PolytropesEmbedded/FirstEffortAgain/Pt1|Isolated Configurations]]</li>
<li>[[SSC/Virial/PolytropesEmbedded/FirstEffortAgain/Pt2|Configurations Embedded in an External Medium]]</li>
              </ol>
            </li>
            <li>SSC/Virial/PolytropesEmbedded/SecondEffortAgain
              <ol type="i">
<li>[[SSC/Virial/PolytropesEmbedded/SecondEffortAgain/Pt1|Force Balance, Free Energy, &amp; Virial]]</li>
<li>[[SSC/Virial/PolytropesEmbedded/SecondEffortAgain/Pt2|Mass-Radius Relation]]</li>
<li>[[SSC/Virial/PolytropesEmbedded/SecondEffortAgain/Pt3|Discussion &amp; Other Model Sequences]]</li>
              </ol>
            </li>
          </ol>
          </li>
      </ol>
    </li>
  </ol>
  </li>
   <li>[[SSC/Structure/BiPolytropes|Composite Polytropes]] (Bipolytropes)
    <ol type="A">
      <li><font color="pink">&clubs;</font> [[SSC/Structure/BiPolytropes/Analytic1.53#BiPolytrope_with_(nc,_ne)_=_(3/2,_3)|Milne (1930)]]</li>
      <li>[[SSC/Structure/LimitingMasses#Sch.C3.B6nberg-Chandrasekhar_Mass|Sch&ouml;nberg-Chandrasekhar Mass (1942)]] &nbsp; &nbsp; &nbsp; &lArr; &nbsp; &nbsp; Includes broader discussion of ''Limiting Masses''</li>
      <li>[[SSC/Structure/BiPolytropes/Analytic15#BiPolytrope_with_nc_.3D_1_and_ne_.3D_5|Murphy (1983) Analytic (n<sub>c</sub>, n<sub>e</sub>) = (1, 5)]]</li>
      <li>[[SSC/Structure/BiPolytropes/Analytic51#BiPolytrope_with_nc_=_5_and_ne_=_1_(Pt_1)|Eggleton, Faulkner &amp; Cannon (1998) Analytic (n<sub>c</sub>, n<sub>e</sub>) = (5, 1)]]</li>
      <li>[[SSC/Stability/BiPolytropes#Organizational_Index|Search for Marginally Unstable (n<sub>c</sub>, n<sub>e</sub>) = (5, 1) Bipolytropes]] &nbsp; &lArr; &nbsp; Image of sequences with turning points</li>
      <li>[[SSC/Structure/BiiPolytropes/FreeEnergy51|Free Energy of (n<sub>c</sub>, n<sub>e</sub>) = (5, 1) Bipolytropes]] &nbsp; &nbsp; &nbsp; <font color="orange">[Chapter has been segmented into 3 Parts]</font> </li>
  </ol>
  </li>
</ol>
</ol>


=See Also=
=See Also=

Latest revision as of 15:10, 18 January 2024

Primary (Tiled Menu) Chapters[edit]

NOTE:   means templates and references to other chapters have been checked for completeness.

Context[edit]

  1. Principal Governing Equations (PGEs)
    1. Equations Cast in Cylindrical Coordinates
  2. Continuity
  3. Euler
    1. Axisymmetric Configurations (Solution Strategies); Double check vector identities   ⇐   also includes "Simple Rotation Profiles"
    2. Rotating Reference Frame; Euler equation viewed from a rotating frame of reference
      1. Compressible Analogs of Riemann S-Type Ellipsoids; Nonlinear velocity cross-product
      2. Korycansky and Papaloizou (1996); Nonlinear velocity cross-product   ⇐   bottom displays Andalib velocity maps
    3. Euler Equation (Conserving Momentum); Earlier draft of "Euler" presentation
  4. 1st Law of Thermodynamics
    1. Radiation-Hydrodynamcis; Nonadiabatic (optically thick) environments
  5. Poisson
  6. Global Energy Considerations
  7. Equation of State (EOS)
    1. Axisymmetric Instabilities to Avoid; Poincaré-Wavre theorem
    2. BiPolytrope with (nc,ne)=(32,3); The parameter, β       [Chapter has been segmented into 3 Parts]
  8. Ideal Gas
  9. Total Pressure
    1. Determining Temperature from Density & Pressure; A solution to quartic equation
  10. Bond, Arnett, & Carr (1984)
    1. Spherically Symmetric Configurations (Stability — Part II); Brief summary of Ledoux and Pekeris (1941)       [Chapter needs to be segmented …]

Spherically Symmetric Configurations[edit]

  1. One-Dimensional PGEs
  2. SSC Index
  3. Index to Free-Energy and Virial Analyses
  4. SSCpt1/Virial/…
    1. Virial Equilibrium of Embedded Polytropic Spheres   ⇐   Tiled menu contains image of free-energy surface
    2. Structural Form Factors       [Chapter has been segmented into 3 Parts]     ⇒     See also here; or original definition     ⇒     or Best     ⇐     Structural Form Factors
    3. Free-Energy of Spherical Systems

Equilibrium Structures[edit]

  1. SSCpt2 …
    1. Hydrostatic Balance Equation
    2. Solution Strategies
  2. Spherical Structures Synopsis   ⇐   Image of 1st page of synopsis
  3. Scalar Virial Theorem; subsection of Context - §VI (Global Energy Considerations)
  4. Uniform-Density Sphere
  5. Isothermal Sphere
  6. Via Direct Numerical Integration; subsection of Equilibrium Structures - §VI (Isothermal Sphere)
  7. Polytropic Spheres
    1. Isolated Polytropes
    2. Lane (1870)
    3. Known Analytic Solutions     ⇐     See also, Power-Law Density Distribution
    4. Via Direct Numerical Integration
    5. Via Self-Consistent Field (SCF) Technique
  8. Chandrasekhar Limiting Mass (1935)
  9. Pressure-Truncated Configurations
    1. Bonnor-Ebert (Isothermal) Spheres (1955 - 56)
    2. Embedded Polytropes
      1. General Properties
      2. Truncated Configurations with n = 1
      3. Truncated Configurations with n = 5
      4. Other
    3. Equilibrium Sequence Turning-Points
    4. Equilibrium Sequences of Pressure-Truncated Polytropes   ⇐   Image of sequences with turning points
    5. Turning-Points (Broader Context)
    6. Virial Equilibrium of Pressure-Truncated Polytropes (Summary)
      1. Free Energy
        1. Free Energy Synopsis
        2. Supporting Free-Energy PowerPoint Presentation    ⇐     Excellent Overview!
      2. Virial Equilibrium of Adiabatic Spheres
        1. SSC/Virial/Isothermal
        2. SSC/Virial/Polytropes
          1. Isolated Polytropes
          2. Polytropes Embedded in an External Medium
        3. SSC/Virial/PolytropesEmbedded/FirstEffortAgain
          1. Isolated Configurations
          2. Configurations Embedded in an External Medium
        4. SSC/Virial/PolytropesEmbedded/SecondEffortAgain
          1. Force Balance, Free Energy, & Virial
          2. Mass-Radius Relation
          3. Discussion & Other Model Sequences
  10. Composite Polytropes (Bipolytropes)
    1. Milne (1930)
    2. Schönberg-Chandrasekhar Mass (1942)       ⇐     Includes broader discussion of Limiting Masses
    3. Murphy (1983) Analytic (nc, ne) = (1, 5)
    4. Eggleton, Faulkner & Cannon (1998) Analytic (nc, ne) = (5, 1)
    5. Search for Marginally Unstable (nc, ne) = (5, 1) Bipolytropes   ⇐   Image of sequences with turning points
    6. Free Energy of (nc, ne) = (5, 1) Bipolytropes       [Chapter has been segmented into 3 Parts]

See Also[edit]